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Das Glioblastoma multiforme (GBM) ist der primäre maligne Hirntumor mit der höchsten Prävalenz bei Erwachsenen. Dieser astrozytäre Tumor ist durch ein besonders schnelles Wachstum und ein äußerst invasives Verhalten charakterisiert. Deshalb beträgt das mediane Überleben nach Diagnose trotz interdisziplinärer Therapie nur ungefähr 14,6 Monate.
Metastasis Associated in Colon Cancer-1 (MACC1) ist ein neuer prognostischer Marker für Metastasierung im kolorektalen Karzinom. Es ist ein transkriptioneller Regulator von Met, dem Rezeptor des Hepatocyte Growth Factor (HGF). Überexpression von MACC1 führt zur Induktion von Migration und Proliferation. Es wurde gezeigt, dass MACC1 auch in anderen Tumorentitäten wie dem Magenkarzinom, Bronchialkarzinom und hepatozellulärem Karzinom verstärkt exprimiert ist. Jedoch gab es bisher noch keine Daten über die Rolle von MACC1 in astrozytären Tumoren. Obwohl GBM nur selten metastasieren, ist ihr aggressives und invasives Verhalten mit dem von metastasierenden Tumoren vergleichbar. Deshalb war das Ziel dieser Arbeit zu zeigen, dass MACC1 auch eine wichtige Rolle in der Pathogenese von Glioblastomen spielen könnte.
Die MACC1-Expression von Glioblastomen wurde zunächst in silico mit frei zugänglichen Microarray-Platformen analysiert. Von Gewebeproben humaner niedergradiger Astozytome (LGA) und GBM wurde die MACC1- und Met-Expression mittels PCR bestimmt. Die Analyse der Expression auf Proteinebene wurde durch Immunhistochemie (IHC) von Patientengewebe durchgeführt. Funktionelle Analysen folgten in Form eines Sphäroidmigrationsassays von primären GBM Zellkulturen. Weiterhin wurde MACC1 in zwei GBM-Zelllinien stabil überexprimiert und deren Migration und Proliferation in Echtzeit gemessen. Komplettiert wurden die funktionellen Versuche durch einen Koloniebildungsassay.
Die Expression von MACC1 stieg mit zunehmendem WHO-Grad auf mRNA- und Proteinebene an. Die Analyse von MACC1 durch IHC erlaubte eine Differenzierung nicht nur zwischen ruhenden LGA und LGA welche später ein Rezidiv bildeten, bzw. Progress zeigten, sondern auch zwischen primären und sekundären GBM. Eine hohe MACC1-Expression war mit einer ungünstigen klinischen Prognose der Patienten assoziiert. Die endogene Expression von MACC1 korrelierte mit der Migrationsaktivität primärer GBM-Zellkulturen. Die Überexpression von MACC1 in GBM-Zelllinien induzierte Proliferation, Migration und Koloniebildung und korrelierte somit mit Schlüsseleigenschaften maligner Zellen.
Zusammenfassend zeigen die Ergebnisse dieser Arbeit zum ersten Mal eine essentielle Rolle von MACC1 für die Pathogenese von Glioblastomen. Deshalb könnte MACC1 ein potentielles neues therapeutisches Ziel für die Behandlung von Glioblastomen sein und eventuell sogar als neuer prognostischer Marker dienen.
Inflammation following ischaemic stroke attracts high priority in current research, particularly using human-like models and long-term observation periods considering translational aspects. The present study aimed on the spatio-temporal course of macrophage-like cell accumulation after experimental thromboembolic stroke and addressed microglial and astroglial reactions in the ischaemic border zone. Further, effects of tissue plasminogen activator (tPA) as currently best treatment for stroke and the potentially neuroprotective co-administration of hyperbaric oxygen (HBO) were investigated. Rats underwent middle cerebral artery occlusion and were assigned to control, tPA or tPA+HBO. Twenty-four hours, 7, 14 and 28 days were determined as observation time points. The accumulation of macrophage-like cells was semiquantitatively assessed by CD68 staining in the ischaemic area and ischaemic border zone, and linked to the clinical course. CD11b, ionized calcium binding adaptor molecule 1 (Iba), glial fibrillary acidic protein (GFAP) and Neuronal Nuclei (NeuN) were applied to reveal delayed glial and neuronal alterations. In all groups, the accumulation of macrophage-like cells increased distinctly from 24 hours to 7 days post ischaemia. tPA+HBO tended to decrease macrophage-like cell accumulation at day 14 and 28. Overall, a trend towards an association of increased accumulation and pronounced reduction of the neurological deficit was found. Concerning delayed inflammatory reactions, an activation of microglia and astrocytes with co-occurring neuronal loss was observed on day 28. Thereby, astrogliosis was found circularly in contrast to microglial activation directly in the ischaemic area. This study supports previous data on long-lasting inflammatory processes following experimental stroke, and additionally provides region-specific details on glial reactions. The tendency towards a decreasing macrophage-like cell accumulation after tPA+HBO needs to be discussed critically since neuroprotective properties were recently ascribed to long-term inflammatory processes.
Parent of origin imprints on the genome have been implicated in the regulation of neural cell type differentiation. The ability of human parthenogenetic (PG) embryonic stem cells (hpESCs) to undergo neural lineage and cell type-specific differentiation is undefined. We determined the potential of hpESCs to differentiate into various neural subtypes. Concurrently, we examined DNA methylation and expression status of imprinted genes. Under culture conditions promoting neural differentiation, hpESC-derived neural stem cells (hpNSCs) gave rise to glia and neuron-like cells that expressed subtype-specific markers and generated action potentials. Analysis of imprinting in hpESCs and in hpNSCs revealed that maternal-specific gene expression patterns and imprinting marks were generally maintained in PG cells upon differentiation. Our results demonstrate that despite the lack of a paternal genome, hpESCs generate proliferating NSCs that are capable of differentiation into physiologically functional neuron-like cells and maintain allele-specific expression of imprinted genes. Thus, hpESCs can serve as a model to study the role of maternal and paternal genomes in neural development and to better understand imprinting-associated brain diseases.
Owing to a high response rate, deep brain stimulation (DBS) of the ventral striatal area has been approved for treatment-refractory obsessive-compulsive disorder (tr-OCD). Many basic issues regarding DBS for tr-OCD are still not understood, in particular, the mechanisms of action and the origin of side effects. We measured prepulse inhibition (PPI) in treatment-refractory OCD patients undergoing DBS of the nucleus accumbens (NAcc) and matched controls. As PPI has been used in animal DBS studies, it is highly suitable for translational research. Eight patients receiving DBS, eight patients with pharmacological treatment and eight age-matched healthy controls participated in our study. PPI was measured twice in the DBS group: one session with the stimulator switched on and one session with the stimulator switched off. OCD patients in the pharmacologic group took part in a single session. Controls were tested twice, to ensure stability of data. Statistical analysis revealed significant differences between controls and (1) patients with pharmacological treatment and (2) OCD DBS patients when the stimulation was switched off. Switching the stimulator on led to an increase in PPI at a stimulus-onset asynchrony of 200 ms. There was no significant difference in PPI between OCD patients being stimulated and the control group. This study shows that NAcc-DBS leads to an increase in PPI in tr-OCD patients towards a level seen in healthy controls. Assuming that PPI impairments partially reflect the neurobiological substrates of OCD, our results show that DBS of the NAcc may improve sensorimotor gating via correction of dysfunctional neural substrates. Bearing in mind that PPI is based on a complex and multilayered network, our data confirm that DBS most likely takes effect via network modulation.
The two bradykinin receptors B1R and B2R are central components of the kallikrein–kinin system with different expression kinetics and binding characteristics. Activation of these receptors by kinins triggers inflammatory responses in the target organ and in most situations enhances tissue damage. We could recently show that blocking of B1R, but not B2R, protects from cortical cryolesion by reducing inflammation and edema formation. In the present study, we investigated the role of B1R and B2R in a closed head model of focal traumatic brain injury (TBI; weight drop). Increased expression of B1R in the injured hemispheres of wild-type mice was restricted to the later stages after brain trauma, i.e. day 7 (P<0.05), whereas no significant induction could be observed for the B2R (P>0.05). Mice lacking the B1R, but not the B2R, showed less functional deficits on day 3 (P<0.001) and day 7 (P<0.001) compared with controls. Pharmacological blocking of B1R in wild-type mice had similar effects. Reduced axonal injury and astroglia activation could be identified as underlying mechanisms, while inhibition of B1R had only little influence on the local inflammatory response in this model. Inhibition of B1R may become a novel strategy to counteract trauma-induced neurodegeneration.
Zusammenfassung
Dies ist die erste Studie, die geprüft hat, ob eine Myelographie und ein MCT die
Behandlungsstrategie bei Patienten mit degenerativen Erkrankungen der
Halswirbelsäule in einem Zeitalter qualitativ hochwertiger MRT-Geräte
verändert. Die in dieser Studie gewonnenen Daten zeigen, dass eine
Myelographie und ein MCT die therapeutische Strategie in einer signifikanten
Anzahl von Patienten mit komplexen degenerativen zervikalen Erkrankungen
verändert, insbesondere in Fällen von mehrsegmentalen Stenosen. Es handelt
sich nicht um eine prospektive Studie, sondern um die Analyse von bereits
vorhandenem Bild- und Datenmaterial. Deshalb folgten die nicht-invasiven
Untersuchungen auch nicht einem standardisierten Protokoll. Dies ist zwar
einerseits eine Schwäche der Studie. Genau diese Heterogenität ließ aber eine
Analyse von Untergruppen zu und zeigte, dass eine Komplettierung der nichtinvasiven
diagnostischen Maßnahmen – native Röntgenuntersuchungen und
native CT – bereits Informationen liefern kann, die ansonsten aus der
Myelographie und dem MCT gezogen werden. Aus den Ergebnissen dieser
Analyse ergibt sich deshalb unter anderem die Schlussfolgerung, dass
zunächst eine Komplettierung der nicht-invasiven Diagnostik erfolgen sollte,
bevor eine Myelographie indiziert wird. Eine prospektive Studie mit einem
standardisierten nicht-invasiven Protokoll, welches eine umfangreichere MRTUntersuchung,
CT und konventionelle Röntgendiagnostik vor der Durchführung
einer Myelographie und eines MCT enthält, könnte mehr Informationen über die
Bedeutung der Myelographie und des MCT im zeitgemäßen diagnostischen
Setup bei degenerativen Erkrankungen der Halswirbelsäule liefern.
Background
There is growing evidence that endothelial failure and subsequent blood brain barrier (BBB) breakdown initiate cerebral small vessel disease (CSVD) pathology. In spontaneously hypertensive stroke-prone rats (SHRSP) endothelial damage is indicated by intraluminal accumulations of erythrocytes (erythrocyte thrombi) that are not observed with current magnetic resonance imaging techniques. Two-photon microscopy (2 PM) offers the potential for real-time direct detection of the small vasculature. Thus, within this pilot study we investigated the sensitivity of 2 PM to detect erythrocyte thrombi expressing initiating CSVD phenomena in vivo.
Methods
Eight SHRSP and 13 Wistar controls were used for in vivo imaging and subsequent histology with haematoxylin-eosin (HE). For 2 PM, cerebral blood vessels were labeled by fluorescent Dextran (70 kDa) applied intraorbitally. The correlation between vascular erythrocyte thrombi observed by 2 PM and HE-staining was assessed. Artificial surgical damage and parenchymal Dextran distribution were analyzed postmortem.
Results
Dextran was distributed within the small vessel walls and co-localized with IgG.
Artificial surgical damage was comparable between SHRSP and Wistar controls and mainly affected the small vasculature. In fewer than 20% of animals there was correlation between erythrocyte thrombi as observed with 2 PM and histologically with HE.
Conclusions
Contrary to our initial expectations, there was little agreement between intravital 2 PM imaging and histology for the detection of erythrocyte thrombi. Two-photon microscopy is a valuable technique that complements but does not replace the value of conventional histology.
As recently reviewed, 1026 neuroprotective drug candidates in stroke research have all failed on their road towards validation and clinical translation, reasons being quality issues in preclinical research and publication bias. Quality control guidelines for preclinical stroke studies have now been established. However, sufficient understanding of the underlying mechanisms of neuronal death after stroke that could be possibly translated into new therapies is lacking. One exception is the hypothesis that cellular death is mediated by oxidative stress. Oxidative stress is defined as an excess of reactive oxygen species (ROS) derived from different possible enzymatic sources. Among these, NADPH oxidases (NOX1-5) stand out as they represent the only known enzyme family that has no other function than to produce ROS. Based on data from different NOX knockout mouse models in ischemic stroke, the most relevant isoform appears to be NOX4. Here we discuss the state-of-the-art of this target with respect to stroke and open questions that need to be addressed on the path towards clinical translation.
Glioblastomas are characterized by an aggressive local growth pattern, a marked degree of invasiveness and poor prognosis. Tumor invasiveness is facilitated by the increased activity of proteolytic enzymes which are involved in destruction of the extracellular matrix of the surrounding healthy brain tissue. Elevated levels of matrix metalloproteinases (MMPs) were found in glioblastoma (GBM) cell-lines, as well as in GBM biopsies as compared with low-grade astrocytoma (LGA) and normal brain samples, indicating a role in malignant progression. A careful review of the available literature revealed that both the expression and role of several of the 23 human MMP proteins is controversely discussed and for some there are no data available at all. We therefore screened a panel of 15 LGA and 15 GBM biopsy samples for those MMPs for which there is either no, very limited or even contradictory data available. Hence, this is the first complete compilation of the expression pattern of all 23 human MMPs in astrocytic tumors. This study will support a better understanding of the specific expression patterns and interaction of proteolytic enzymes in malignant human glioma and may provide additional starting points for targeted patient therapy.
Traumatic brain injury (TBI) induces a strong inflammatory response which includes blood-brain barrier damage, edema formation and infiltration of different immune cell subsets. More recently, microvascular thrombosis has been identified as another pathophysiological feature of TBI. The contact-kinin system represents an interface between inflammatory and thrombotic circuits and is activated in different neurological diseases. C1-Inhibitor counteracts activation of the contact-kinin system at multiple levels. We investigated the therapeutic potential of C1-Inhibitor in a model of TBI. Male and female C57BL/6 mice were subjected to cortical cryolesion and treated with C1-Inhibitor after 1 h. Lesion volumes were assessed between day 1 and day 5 and blood-brain barrier damage, thrombus formation as well as the local inflammatory response were determined post TBI. Treatment of male mice with 15.0 IU C1-Inhibitor, but not 7.5 IU, 1 h after cryolesion reduced lesion volumes by ~75% on day 1. This protective effect was preserved in female mice and at later stages of trauma. Mechanistically, C1-Inhibitor stabilized the blood-brain barrier and decreased the invasion of immune cells into the brain parenchyma. Moreover, C1-Inhibitor had strong antithrombotic effects. C1-Inhibitor represents a multifaceted anti-inflammatory and antithrombotic compound that prevents traumatic neurodegeneration in clinically meaningful settings.
Background: Depression and anxiety are common and independent outcome predictors in patients with chronic heart failure (CHF). However, it is unclear whether CHF causes depression. Thus, we investigated whether mice develop anxiety- and depression-like behavior after induction of ischemic CHF by myocardial infarction (MI).
Methods and Results: In order to assess depression-like behavior, anhedonia was investigated by repeatedly testing sucrose preference for 8 weeks after coronary artery ligation or sham operation. Mice with large MI and increased left ventricular dimensions on echocardiography (termed CHF mice) showed reduced preference for sucrose, indicating depression-like behavior. 6 weeks after MI, mice were tested for exploratory activity, anxiety-like behavior and cognitive function using the elevated plus maze (EPM), light-dark box (LDB), open field (OF), and object recognition (OR) tests. In the EPM and OF, CHF mice exhibited diminished exploratory behavior and motivation despite similar movement capability. In the OR, CHF mice had reduced preference for novelty and impaired short-term memory. On histology, CHF mice had unaltered overall cerebral morphology. However, analysis of gene expression by RNA-sequencing in prefrontal cortical, hippocampal, and left ventricular tissue revealed changes in genes related to inflammation and cofactors of neuronal signal transduction in CHF mice, with Nr4a1 being dysregulated both in prefrontal cortex and myocardium after MI.
Conclusions: After induction of ischemic CHF, mice exhibited anhedonic behavior, decreased exploratory activity and interest in novelty, and cognitive impairment. Thus, ischemic CHF leads to distinct behavioral changes in mice analogous to symptoms observed in humans with CHF and comorbid depression.
Traumatic brain injury (TBI) is a major cause of mortality and morbidity worldwide. Despite improvements in acute intensive care, there are currently no specific therapies to ameliorate the effects of TBI. Successful therapeutic strategies for TBI should target multiple pathophysiologic mechanisms that occur at different stages of brain injury. The kallikrein-kinin system is a promising therapeutic target for TBI as it mediates key pathologic events of traumatic brain damage, such as edema formation, inflammation, and thrombosis. Selective and specific kinin receptor antagonists and inhibitors of plasma kallikrein and coagulation factor XII have been developed, and have already shown therapeutic efficacy in animal models of stroke and TBI. However, conflicting preclinical evaluation, as well as limited and inconclusive data from clinical trials in TBI, suggests that caution should be taken before transferring observations made in animals to humans. This review summarizes current evidence on the pathologic significance of the kallikrein-kinin system during TBI in animal models and, where available, the experimental findings are compared with human data.
This article reviews experimental and clinical data on the use of various neuroprotective agents and therapeutic measures after aneurysmal subarachnoid hemorrhage (SAH). While calcium antagonists have been used in the past and are still part of the standard treatment regimen in most departments involved in the treatment of SAH, other classes of drugs and various other methods have been tested for their potential to inhibit delayed ischemia after SAH. This article reviews the literature about clinical studies about the efficacy of various neuroprotective agents and methods including statins, steroids and Endothelin-antagonists and other - alternative - methods like cisternal lavage, intrathecal drug delivery and hypercapnia, offering future perspectives for the treatment of this hazardous disease.
Background
Glioblastoma multiforme located in the posterior fossa is extremely rare with a frequency up to 3.4%. Compared with glioblastoma of the hemispheres the prognosis of infratentorial glioblastoma seems to be slightly better. Absence of brainstem invasion and low expression rates of epidermal growth factor receptor are described as factors for long-time survival due to the higher radiosensitivity of these tumors.
Case presentation
In this case study, we report a German female patient with an exophytic glioblastoma multiforme arising from the cerebellar tonsil and a secondary spinal manifestation. Furthermore, the tumor showed no O (6)-Methylguanine-DNA methyltransferase promotor-hypermethylation and no isocitrate dehydrogenase 1 mutations. All these signs are accompanied by significantly shorter median overall survival. A long-term tumor control of the spinal metastases was achieved by a combined temozolomide/bevacizumab and irradiation therapy, as part of a standard care administered by the treating physician team.
Conclusion
To our knowledge this is the first published case of a combined cerebellar exophytic glioblastoma with a subsequent solid spinal manifestation. Furthermore this case demonstrates a benefit undergoing this special adjuvant therapy regime in terms of overall survival. Due to the limited overall prognosis of the disease, spinal manifestations of glioma are rarely clinically relevant. The results of our instructive case, however, with a positive effect on both life quality and survival warrant treating future patients in the frame of a prospective clinical study.
Background
The human endogenous retrovirus K (HERV-K) has been acquired by the genome of human ancestors million years ago. It is the most complete of the HERVs with transcriptionally active gag, pol and env genes. Splice variants of env, which are rec, 1.5 kb transcript and Np9 have been suggested to be tumorigenic. Transcripts of HERV-K have been detected in a multitude of human cancers. However, no such reports are available concerning glioblastomas (GBM), the most common malignant brain tumor in adults. Patients have a limited prognosis of 14.6 months in median, despite standard treatment. Therefore, we elucidated whether HERV-K transcripts could be detected in these tumors and serve as new molecular target for treatment.
Findings
We analyzed human GBM cell lines, tissue samples from patients and primary cell cultures of different passages for HERV-K full length mRNA and env, rec and 1.5 kb transcripts. While the GBM cell lines U138, U251, U343 and GaMG displayed weak and U87 strong expression of the full length HERV-K, the splice products could not be detected, despite a weak expression of env mRNA in U87 cells. Very few tissue samples from patients showed weak expression of env mRNA, but none of the rec or 1.5 kb transcripts. Primary cells expressed the 1.5 kb transcript weakly in early passages, but lost HERV-K expression with extended culture time.
Conclusions
These data suggest that HERV-K splice products do not play a role in human malignant gliomas and therefore, are not suitable as targets for new therapy regimen.
Neurophysiologische Veränderungen der Hörbahn während und nach Vestibularisschwannom-Operationen
(2014)
Aufgrund von Fallberichten bei Patienten mit operativer Resektion eines Vestibularisschwannoms über verzögerte Ertaubung bei endoperativ erhaltenem Resthörvermögen, war es das Ziel dieser Arbeit die intraoperative und frühe postoperative Phase mittels ABR-Monitoring näher zu charakterisieren und prädiktive Faktoren für die postoperative Entwicklung und die resultierende Hörfunktion zu untersuchen.
Dabei zeigte sich, dass der ABR-Befund sowohl zu Beginn der Operation als auch postoperativ mit dem jeweiligen Hörbefund korreliert. Fälle mit erhaltenem ABR und sekundärer Ertaubung müssen am ehesten auf das Vorhandensein weniger noch leitender Fasern ohne funktionellen Nutzen oder eine Veränderung der Elektrophysiologie zurückgeführt werden.
Die detaillierte Betrachtung des intraoperativen Verlaufes ergab eine Untergliederung in sechs Gruppen:
- Gruppe 1: ABR-Verbesserung
- Gruppe 2: ABR kontinuierlich erhalten
- Gruppe 3: ABR temporär abweichend, letztlich erhalten
- Gruppe 4: ABR verschlechtert im Vergleich zum Ausgangsniveau
- Gruppe 5: ABR-Verlust intraoperativ bei fluktuierendem Verlauf
- Gruppe 6: klarer intraoperativer ABR-Verlust,
welche eine sinnvolle Korrelation mit dem Hörergebnis und der postoperativen Entwicklung zeigten. Im Gegensatz zur bisher verbreiteten Auffassung, dass die endoperative ABR-Qualität einen bleibenden Zustand nach den intraoperativen Veränderungen darstellt, wurde in dieser Studie erstmals nachgewiesen, dass in den ersten Stunden und mit weiteren Fluktuationen in der ersten Woche erhebliche Veränderungen auftreten mit erheblichen Auswirkungen auf das Endergebnis. Darüber hinaus konnten verschiedene Typen dieser veränderlichen physiologischen Funktionszustände identifiziert und hier erstmals beschrieben werden:
- Gruppe mit stabilem und erhaltenem ABR
- Gruppe mit fluktuierendem und erhaltenem ABR
- Gruppe mit fluktuierendem und verlorenem ABR
- Gruppe mit stabilem ABR-Verlust.
In der Analyse und Korrelation der intra- mit den postoperativen Entwicklungen wurde die ABR-Qualität nach 60% Tumorresektion als prognostisch signifikantes Merkmal erkannt. Ferner konnte nachgewiesen werden, dass Patienten mit postoperativem Erholungspotential als typisches Merkmal Tumore der Klasse T3A oder kleiner nach der Hannover Klassifikation zeigen.
Diese Studie deutet darauf hin, dass sich der intraoperative Verlauf postoperativ fortsetzt. Während bei intraoperativ instabilem Verlauf (Gruppen 3-5) sich postoperativ eine fluktuierende Entwicklung anschließt oder die ABR-Qualität sich sogar dauerhaft im Vergleich zum endoperativen Status ändert, behalten Patienten mit intraoperativ stabilem Verlauf (Gruppen 1 und 2) oder mit verlorenem ABR (Gruppe 6) diesen Status auch in der frühen postoperativen Phase in der Regel bei.
Im Hinblick auf mögliche Empfehlungen zur mikrochirurgischen Strategie stellten sich die Phase der knöchernen Eröffnung des IAC sowie die direkte Präparation der Tumor-Nerven-Grenze als besonders gefahrenträchtig heraus. Unter Kenntnis der zwar gegebenen aber begrenzten postoperativen Erholungschancen verschlechterter ABRs muss das chirurgische Vorgehen also in dieser Phase auf schonendste Präparation und rasche Reaktion auf kritisches Monitoring-Feedback ausgerichtet sein.
Die Ergebnisse dieser Studie legen nahe bei Patienten mit auffälligen intraoperativen ABR-Fluktuationen (intraoperative Gruppen 3, 4 und 5) postoperativ ein ABR-Monitoring bis zum 5. Tag nach Duraschluss durchzuführen. Auf der Grundlage der hier vorgelegten Studie ist ein postoperatives ABR-Monitoring gleichermaßen für Patienten mit erhaltenem oder erloschenem ABR jeweils nach Fluktuationen zu empfehlen, da sich intraoperative Fluktuationen fortsetzen und postoperativ sowohl ein ABR-Verlust als auch eine ABR-Erholung erfolgen kann. Dies ist besonders indiziert, wenn in Zukunft die medikamentösen Interventionsmöglichkeiten näher evaluiert und weiterentwickelt sind, aber auch mit den aktuellen Standardmedikamenten HAES, Nimodipin und Kortison ist eine Unterstützung der Regeneration bei Feststellung einer postoperativen Verschlechterung zu empfehlen.
Der M. Fabry ist eine X-chromosomal rezessiv vererbte lysosomale Lipid-speicherkrankheit, die sich am peripheren Nervensystem meist mit einer small fiber Neuropathie manifestiert, die mit typischen Fabry-assoziierten neuropathischen Schmerzen einhergeht. Diese können schon in der frühen Kindheit auftreten und sind ein wichtiges Erstsymptom der Erkrankung.
In dieser retrospektiven Analyse wurde eine detaillierte Charakterisierung von Schmerz und Schmerzmedikation in einer monozentrischen Fabry-Kohorte von 132 erwachsenen Patienten und sieben Kindern vorgenommen. Unsere Ergebnisse zeigen, dass Schmerz sowohl bei Männern als auch bei Frauen ein sehr häufiges Erstsymptoms ist, das bereits in früher Kindheit einsetzt. Fabry-assoziierte Schmerzen sind meist episodisch und manifestieren sich mit vier Schmerzformen: evozierte Schmerzen, Schmerzattacken, chronische Schmerzen und Schmerzkrisen. Die Schmerzen sind typischerweise durch körperliche Belastung, Wärme und Fieber auslösbar und sind meist an den Akren lokalisiert. Der Schmerzcharakter ist in der Regel brennend und die episodischen Schmerzen halten mehrere Stunden an. Diese Schmerzcharakteristika decken sich überwiegend mit den Ergebnissen bei Kindern mit M. Fabry. Die ERT scheint nur in seltenen Fällen analgetisch wirksam zu sein, während die meiste Linderung bei akut einsetzenden Schmerzen durch nicht-steroidale Antirheumatika bzw. Antikonvulsiva der älteren Generation erreicht wird. Aufgrund der Besonderheiten von Fabry-assoziierten Schmerzen sind die verfügbaren validierten Schmerzfragebögen für ihre Erfassung ungeeignet. Zur Verbesserung der Datenerfassung wäre in künftigen Studien ein spezifischer Schmerzfragebogen nützlich. Des Weiteren könnte durch den Einsatz von Schmerztagebüchern die Charakterisierung von Fabry-assoziierten Schmerzen ebenfalls verbessert werden.
The intercellular adhesion of circulating leukocytes to vascular endothellum ls a prerequisite for leukocyte emigration from the blood to extravascular tlssues. This process is facllltated by adhesion molecules on the surfaces of both the vascular endothelial cells and the leukocytes. The experiments presented here demonstrate for the first time that the leukocyte adhesion receptor, intercellular adhesion molecule-1, is constitutively expressed on cultured cerebromicrovascular endothelial cell lines derived from both spontaneously hypertensive (SHR) rats and normotensive WistarKyoto (WKY) rats. Both cultures contained simliar numbers of cells constitutively expressing this adhesion molecule (31.4% and 29.6%, respectlvely). Adhesion molecule expression was up-regulated by interleukin-1 ß, tumor necrosis factor-a, interferon-y and lipopolysaccharide in a dose- and time-dependent manner. Both cultures exhibited similar maximum levels of adhesion molecule up-regulation to optimal concentrations of all three cytokines. However, SHR endothelial cells were moresensitive to all three cytokines; significantly higher levels of intercellular adhesion molecule-1 expresslon were seen on SHR as opposed to WKY endothelial cells cultured with sub-optimal cytokine concentrations. It was also observed that lipopolysaccharide up-regulated intercellular adhesion molecule-1 expression on SHR endothelial cells to a greater extent than on WKY endothelial cells.
The findings that intercellular adhesion molecule-1 can be up-regulated to a greater degree on SHR endothelial cells may have important implications for in vivo perivascular leukocyte accumulation under hypertensive conditions. These observations indicate a possible mechanism by which hypertension may predispose to the development of disorders such as atherosclerosis and stroke.
The numbers of monocytes and macrophages in the walls of cerebral blood vessels were counted on perfusion-fixed frozen brain sections (16 JLffi) of spontaneously hypertensive rats (SHR), stroke-prone SHR (SHR-SP), normotensive Wistar-Kyoto (WKY) rats, and young (16-week-old) and old (2-year-old) normotensive Sprague-Dawley rats (SD-l6w and SD-2y, respectively) using monoclonal antiborlies against rat macrophages (ED2). The staining was visualized with fluoresceinlabeled second antiborlies. The ED2-specific staining in brain sections was restricted to macrophages in a perivascular location. The number of perivascular cells per square millimeter of high-power field was significantly greater in SHR-SP (8.6 ± 2.1; n = 4) and SHR (6. 7 ± 0.9; n = 6) than in normotensive WKY (4.0 ± 0.5; n = 6; p <0.01). The number of perivascular macrophages was also greater in SD-2y (7.5 ± 2.7; n = 9) than in SD-l6w (2.9 ± 1.8; n = 8; p < 0.01). No ED2 staining was found in the resident microglia or in the endothelial cells, which were identified by double staining with rhodamine-labeled anti-factor VIII-related antigen antiborlies. The results suggest that the stroke risk factors hypertension and advanced age are associated with increased subendothelial accumulation of monocytes and macrophages. This accumulation could increase the tendency for the endothelium to convert from an anticoagulant to a procoagulant surface in response to mediators released from these subendothelial cells.
Thyrotropin releasing hormone (TRH), 10 pmol kg-1 injected in the region of locus coeruleus, caused a rapid (within 1 min) rise of mean arterial pressure in the urethane- naesthetized rat. No clear-cut effects in heart rate or ventilation were observed. When TRH was injected into the lateral ventricle, a dose more than 10-fold higher was required to achieve a comparable rise in arterial pressure. It is concluded that TRH may have a physiological rote in centrat cardiovascular regulation.
Background
Suboccipital craniectomy is a conventional approach for exploring cerebellopontine angle lesions. A variety of techniques have been successfully employed to reconstruct a craniectomy. This is the first report about the histological findings after performing a cranioplasty by using a mixture of autologous bone chips and human allogenic fibrin glue.
Case presentation
A 53-year-old German woman underwent left lateral suboccipital retrosigmoidal craniectomy for treatment of trigeminal neuralgia in 2008. Cranioplasty was perfomed by using a mixture of autologous bone chips and human allogenic fibrin glue. Due to recurrent neuralgia, a second left lateral suboccipital craniectomy was performed in 2012. The intraoperative findings revealed a complete ossification of the former craniotomy including widely mature trabecular bone tissue in the histological examination.
Conclusion
A mixture of autologous bone chips and human allogenic fibrin glue seems to provide sufficient bone-regeneration revealed by histological and neuroradiological examinations.
Background/Aims: The association between postoperative infection and prolonged survival in high-grade glioma is still a matter of debate. Previously we demonstrated that the intracerebral (i.c.) injection of heat-inactivated staphylococcal epitopes (HISE) resulted in a well-defined infux of immunocompetent cells across the blood-brain barrier. The present study investigated the potential antitumoral effect of HISE-immunostimulation in an experimental glioma model. Methods: Wistar rats were intracerebrally implanted with 9L gliosarcoma cells (n=6), 9L cells mixed with HISE (n=12), or phosphate buffered saline (n=4). Tumor growth was measured by serial magnetic resonance imaging (MRI). After death due to the tumor burden, the brains were histopathologically assessed for inflammation and oncolysis. A toxicity assay was performed to quantify potential impairment of HISE on tumor cell growth in vitro. Results: Animals treated by HISE showed a significant increase in average survival and even complete regression of an already established mass in one case. Naïve 9L gliosarcomas failed to recruit significant numbers of systemic immune cells. In contrast, concomitant intracerebral HISE inoculation lead to a oncolysis and a distinct peri- and intratumoral infiltration of macrophages, CD8 and CD4 co-expressing T-lymphocytes in two thirds of the tumor-bearing animals. The toxicity screening showed HISE-mediated oncolysis to be ineffective ex vivo. Conclusion: This study describes a novel approach for combatting malignant glioma using inactivated staphylococci as potent immunomodulators. Our results provide an outline for investigating the strategic potential of bacteria as emerging future therapeutics.
Introduction
Structural plasticity with synapse formation and elimination is a key component of memory capacity and may be critical for functional recovery after brain injury. Here we describe in detail two surgical techniques to create a cranial window in mice and show crucial points in the procedure for long-term repeated in vivo imaging of synaptic structural plasticity in the mouse neocortex.
Methods
Transgenic Thy1-YFP(H) mice expressing yellow-fluorescent protein (YFP) in layer-5 pyramidal neurons were prepared under anesthesia for in vivo imaging of dendritic spines in the parietal cortex either with an open-skull glass or thinned skull window. After a recovery period of 14 days, imaging sessions of 45–60 min in duration were started under fluothane anesthesia. To reduce respiration-induced movement artifacts, the skull was glued to a stainless steel plate fixed to metal base. The animals were set under a two-photon microscope with multifocal scanhead splitter (TriMScope, LaVision BioTec) and the Ti-sapphire laser was tuned to the optimal excitation wavelength for YFP (890 nm). Images were acquired by using a 20×, 0.95 NA, water-immersion objective (Olympus) in imaging depth of 100–200 μm from the pial surface. Two-dimensional projections of three-dimensional image stacks containing dendritic segments of interest were saved for further analysis. At the end of the last imaging session, the mice were decapitated and the brains removed for histological analysis.
Results
Repeated in vivo imaging of dendritic spines of the layer-5 pyramidal neurons was successful using both open-skull glass and thinned skull windows. Both window techniques were associated with low phototoxicity after repeated sessions of imaging.
Conclusions
Repeated imaging of dendritic spines in vivo allows monitoring of long-term structural dynamics of synapses. When carefully controlled for influence of repeated anesthesia and phototoxicity, the method will be suitable to study changes in synaptic structural plasticity after brain injury.
This article reviews experimental and clinical data on the use of magnesium as a neuroprotective agent in various conditions of cerebral ischemia. Whereas magnesium has shown neuroprotective properties in animal models of global and focal cerebral ischemia, this effect could not be reproduced in a large human stroke trial. These conflicting results may be explained by the timing of treatment. While treatment can be started before or early after ischemia in experimental studies, there is an inevitable delay of treatment in human stroke. Magnesium administration to women at risk for preterm birth has been investigated in several randomized controlled trials and was found to reduce the risk of neurological deficits for the premature infant. Postnatal administration of magnesium to babies after perinatal asphyxia has been studied in a number of controlled clinical trials. The results are promising but the trials have, so far, been underpowered. In aneurysmal subarachnoid hemorrhage (SAH), cerebral ischemia arises with the onset of delayed cerebral vasospasm several days after aneurysm rupture. Similar to perinatal asphyxia in impending preterm delivery, treatment can be started prior to ischemia. The results of clinical trials are conflicting. Several clinical trials did not show an additive effect of magnesium with nimodipine, another calcium antagonist which is routinely administered to SAH patients in many centers. Other trials found a protective effect after magnesium therapy. Thus, it may still be a promising substance in the treatment of secondary cerebral ischemia after aneurysmal SAH. Future prospects of magnesium therapy are discussed.
Ziel der Arbeit war es, dichte Neuronenkulturen in kleinere Untereinheiten zu unterteilen, welche durch ihre Neuriten miteinander in Kontakt standen. Zu diesem Zweck wurden auf MEAs zellbindende Kreisareale mittels Mikrostempeltechnik auf die zellabweisende Schicht aus Polyethylenglykol übertragen. Dudurch wurde gewährleistet, dass scharf abgegrenzte Neuronenareale für mehrere Wochen auf dem MEA wuchsen und nach Ausbildung der neuritischen Verbindungen untereinander, die elektrische Aktivität zwischen den Kreiskammern gemessen werden könnte. Das sollte Auskunft über Informationsausbreitung in Neuralnetzen geben und die Theorien über Synchronität und Synfirechains prüfbar machen.
Hintergrund: Obwohl als Standardverfahren bei der intraoperativen Überwachung bei der Akustikusneurinom (AN)-Chirurgie etabliert, handelt es sich bei der Ableitung akustisch evozierter Potentiale (AEP) um eine „Far-Field“-Technik mit einigen Einschränkungen. Diese Arbeit soll die Elektrocochleographie (ECoG) als Zusatzverfahren für den Hörerhalt überprüfen. Material und Methoden: 84 Patienten mit einseitigem intra-/extrameatalem AN (extrameataler Durchmesser 5-55mm) mit noch vorhandener Hörfunktion wurden unter Verwendung eines kombinierten neuro-/otochirurgischen suboccipitalen Zugangs operiert. Nach Einbringung einer Nadelelektrode auf das Promontorium unter otoskopischer Kontrolle wurden ECoG und AEP simultan abgeleitet. Ergebnisse: Bei 43 von 84 Patienten wurde ein Hörerhalt erzielt, wobei davon 40 sowohl AEP als auch ECoG aufwiesen. Alle 24 Patienten mit Verlust beider Modalitäten wurden taub. Hörerhalt wurde bei 4 von 12 Patienten mit erhaltenem ECoG, aber Verlust des AEP (Wellen III-V) nachgewiesen, im umgekehrten Fall kam es zu postoperativer Taubheit in zwei Fällen. Trotz signifikanter Korrelation der AEP- und ECoG-Amplituden mit prä- und postoperativem Hören, erwiesen sich die Latenzen von Summations- und Aktionspotential als verläßlichere Indikatoren für Hörerhalt als beim AEP. Der Vorhersagewert erloschener AEP-Amplituden übertraf den der ECoG-Parameter. Nur bei Tumoren über 2cm war die Größe signifikant für den Hörerhalt. Außer postoperativer Otoliquorrhoe (3 Patienten) und einer lokalen Blutung im äußeren Gehörgang (1 Patient) wurden keine Nebenwirkungen beobachtet. Schlußfolgerung: Die ECoG-Ableitung erweist sich in Kombination mit AEPs als nützliches Zusatzverfahren zum Hörerhalt in der AN-Chirurgie. Besonders hilfreich ist es bei Verwendung der Bipolar-Pinzette sowie beim Bohren, da keine Mittelung notwendig ist. Spezielle Anwendungsmöglichkeiten sind kleine Tumoren mit funktioneller Hörfunktion und/oder einem großen intrameatalen Anteil sowie Fälle mit verlorenem oder gefährdetem kontralateralen Hören (z. B. bilaterale AN), wenn sogar der Erhalt von nicht-funktionellem Hören wünschenswert ist.
Das Glioblastom ist der häufigste hirneigene Tumor des Erwachsenen. Es ist hoch invasiv, stark proliferierend und mit einer schlechten Prognose assoziiert. Heutige Therapiean-sätze zielen, neben der möglichst vollständigen Resektion des Tumorgewebes, vor allem auf Apoptoseinduktion durch DNA-Schäden in Tumorzellen. Daher ist die Aufklärung der molekularen Grundlagen dieser Prozesse essentiell, um Verbesserungen bei den Behandlungsmöglichkeiten erzielen zu können. Der Proteasomenaktivator PA28γ wird im Hirngewebe stark exprimiert, über seine Funktion ist jedoch nur wenig bekannt. Er wurde als Interaktionspartner des Zellzyklus- und DNA-Schadensregulators Mad2b in einem Hefe Two-Hybrid Screen identifiziert. Im Rahmen dieser Arbeit wurde diese Wechselwirkung mittels eines GST-Pulldown Experimentes be-stätigt. Obwohl PA28γ in Verbindung mit der Zellproliferation gebracht wird, konnte in GBM-Zelllinien keine signifikante Änderung der Zellteilungsraten beobachtet werden. Allerdings unterstützte die vermehrte Expression von PA28γ die Apoptose. Um durch neue Interaktionspartner von PA28γ Hinweise auf dessen Funktion zu erhalten, wurde ein Hefe Two-Hybrid Screen durchgeführt: PA28gamma steuert den Abbau von p53 und verweist über die hier neu beschriebene Interaktion mit HIPK1 ebenfalls auf den programmierten Zelltod. Dieser pro-apoptotische Zusammen-hang wird unterstützt durch die Interaktion mit 1A6/DRIM-interacting protein. Die Inter-aktion der Sumo E2 Ligase Ubc9 mit PA28gamma war ein erster Hinweis für eine Sumoylierung des Proteasomenaktivators, die die PA28gamma Aktivität regulieren könnte. Gleichzeitig ist Ubc9, wie auch die E3-Ligase PIAS, im Zusammenhang mit Apoptose beschrieben worden. Diese Fragestellungen wurden in weiterführenden Arbeiten erforscht. Einen anderen Aspekt beleuchtet die Interaktion von PA28gammamit Catenin alpha. Durch diese Wechselwirkung könnte PA28gamma Einfluß auf Interzellulärkontakte nehmen. Gerade im Hin-blick auf das GBM, charakterisiert durch ausgeprägtes Migrations- und Invasionsverhal-ten, könnte die Regulation von Interzellulärkontakten von besonderer Bedeutung sein. Aufgrund der oben beschriebenen Eigenschaften von PA28gammasollte dieses Protein für eine Therapie mittels DNA-Schäden induzierter Apoptose erforscht werden. PA28gamma könnte bei diesen Vorgängen ein zentraler Faktor sein, dessen Manipulation die etablierten Therapieformen unterstützen und deren Wirkung verbessern.
Traumatic brain injury, a leading cause of death and disability, is a result of an outside force causing mechanical disruption of brain tissue and delayed pathogenic events which collectively exacerbate the injury. These pathogenic injury processes are poorly understood and accordingly no effective neuroprotective treatment is available so far. Experimental models are essential for further clarification of the highly complex pathology of traumatic brain injury towards the development of novel treatments. Among the rodent models of traumatic brain injury the most commonly used are the weight-drop, the fluid percussion, and the cortical contusion injury models. As the entire spectrum of events that might occur in traumatic brain injury cannot be covered by one single rodent model, the design and choice of a specific model represents a major challenge for neuroscientists. This review summarizes and evaluates the strengths and weaknesses of the currently available rodent models for traumatic brain injury.
Prostag1andin F\(_{2\alpha}\) (PGF\(_{2\alpha}\)) is one of the most common metabo1ites of arachidonic acid (M) in rat brain. When administered intracerebroventricularly (i.c.v.) to rats, both AA and PGFal exert dose-related hypertensive, tachycardic and hyperthermic effects. Metabolie alterations in the endogenaus formation of some prostaglandins in the brain-stem of spontaneously hypertensive rats (SHR) have been reported. Therefore the central effects of AA and PGF \(_{2\alpha}\) on blood pressure, heart rate and body temperature were studied both in SHR and nonootensive Wistar rats (NR) under urethane-anaesthesia. The hypertensive effect of AA i.c.v. (0.01-100 \(\mu\)g/rat) was larger in magni tude in SHR than in NR, but there was no significant difference in the M-induced changes of heart rate and body temperature between the groups. Pretreatment of NR wi th soditm1 :meclofenamate (1 mg/rat i.c.v.) antagonised the central effects of M indicating that these effects are not due to M itself but to its conversion to prostaglandins. Unlike the effects of AA, the central hypertensive, tachycardic and hyperthennic responses to PGF\(_{2\alpha}\) (0.5-50 l-lg/rat i.c.v .) were significantly attenuated in SHR. The present results obtained with M are conpatible with the previous assumption that the synthesis of prostaglandins in the brain of SHR might differ from that in NR. The results also demonstrate that the central effects of PGF\(_{2\alpha}\) are reduced in SHR.
The cardiovascular and endocrine activity of three analogs of thyrotropin releasing hor.mone (TRH), 4-nitro-imidazole TRH (4-nitroTRH), 2-trifluoro-methyl-imidazole TRH (2-TFM-TRH) and 4-trifluoromethyl- imidazole TRH (4-TFM-TRH), was compared to TRH in conscious rats. Injection of TRH or the three analogs (1 mg/kg or 5 mg/kg) into the arterial line induced increases in mean arterial pressure, pulse pressure and heart rate and raised plasma prolactin (PRL). None of the analogs were more potent than TRH in inducing cardiovascular changes. The 4-TFM-TRH was significantly less potent than the 2-TFM-TRH in increasing blood pressure, while the nitro-TRH was more potent than the 2-TFM-TRH in producing tachycardia. TRH induced a two-fold increase in PRL at the 5 mg/kg dose, while both the fluorinated analogs elici ted a 4 to 5 fold increase in PRL at the higher dose. The present results suggest that the receptors for TRH-elicited PRL release differ from TRH-receptors involved in its cardiovascular actions.
The acute effect ofT-2 toxemia on local blood flow and vascular resistance in hindquarter. mesenteric. and renal vascular beds was continuously measured by the directional pulsed Doppler technique in conscious, male Sprague-Dawley rats. Intravenous injection ofT-2 toxin (I mg/kg) in the conscious rat reduced blood flow and increased vascular resistance in all blood vessels studied but had no significant effect on mean arterial pressure or heart rate. The blood flow in hindquarters gradually decreased to a minimum of -77 ± 9% (mean ±SE) 6 hr after the toxin injection. The hindquarter vascular resistance concomitantly increased to a maximum value of + 323 ± 69% above thc resistance before toxin administration. Mesenteric and renal blood flow initially increased (slightly) and then gradually decreased. The maximum drop of blood flow, -90 ± 13% and -76 ± 13% for the mesenteric and renal vascular beds, respectively, was achieved 4 hr after T-2 toxin injection and the blood flow values remained low for up to 6 hr. Simultaneously with the impairment of
ln the present study the effects of thyrotropin releasing hormone (TRH) and its stable analogue, CG3703, on cardiac output (thermodilution, Cardiomax) and regional blood flow (BF; directional pulsed Doppler technique) were investigated in hypovolemic hypotension in the rat. In urethan-anesthetized rats TRH (0.5 or 2 mg/ kg ia) or CG3703 (0.05 or 0.5 mg/kg ia) reversed the bleeding (27% of the blood volume)-induced decreases in mean arterial ...
Cardioventilator responses were studied in anaesthetized rats after injections of TRH into either the lateral (i.c.v. lat) or the fourth (i.c.v. IV) cerebral ventricles. TRH induced a morerapid hypertensive effect i.c.v. IV than i.c.v. lat. Blocking of the cerebral aqueduct abolished the hypertensive and tachypnoeic effects of TRH i.c.v. lat but not those of TRH i.c.v. IV. It is concluded that TRH increased blood pressure and ventilation rate via brain stem structures close to the fourtli ventricle.
This review is an attempt to highlight evidence that may implicate the endogenaus opioid system in the pathogenesis of hypertension in humans. The evidence raised includes biochemical, physiological, pharmacological, and behavioral studies con~ucted in in vitro andin vivo systems, experimental models of hypertension, and hornans with essential hypertension. While the compelling biochemical and pharmacological evidence in experimental animals clearly shows the presence of opioid peptides and their receptors in strategic sites of cardiovascular control and potent cardiovascular response to opioid peptides, opioid antagonists show no consistent blockade or reversal of hypertension in experimental animals or humans. One possible explanation for this phenomenon could be the vast redundancy in systems regulating blood pressure (i.e., the blockade ofone system stillleaves many other systerils fully able to rapidly offset the eliminated system). Regarding the opioid system, the situation is much more complex, since some opioid receptors (\(\mu\)-type) niediate pressor responses, while other receptors (\(\kappa\)type) mediate depressor responses. Therefore, nonselective opioid receptor antagonists (e.g., naloxone), which block both types ofreceptors, can be devoid ofany cardiovascular activity, while a selective \(\mu\)-receptor antagonist or a selective arid potent \(\kappa\)-receptor agonist may produce the desired antihypertensive elfect. A combination of both actions (i.e., a drug that is both \(\mu\)antagonist and a \(\kappa\)antagonist) might be even more advantageous. Until such compounds are developed, this hypothesis will be hard to prove.
Trichothecenes are mycotoxins which produce Iethai toxicosis in humans and animals, yet no adequate therapeutic regimen has been developed. This study provides evidence that the selective platelet activating factor (PAF) antagonist, BN 52021 (5-15 mg/kg i.v.) can prolong the survival of conscious rats exposed to a highly Iethai T -2 toxicosis. These data also suggest that P AF is an important mediator of this unique toxicosis.
The endogenous opioid system includes three major families of peptides [22): dynorphins (derived from pre-proenkephalin B); endorphins (derived from pre-proopiomelanocortin) and enkephalins (derived from pre-proenkephalin A). Multiple species of opioid peptides are derived from these major precursors and many of them possess potent cardiovascular properties. Multiple forms of opioid receptors have been defined in the central nervous system. Although the relationship of these receptors to the multiple actions of the opioid systems is not weil understood, some predications can be made: in vitro the dynorphin-related peptidesbind preferentially to kappa-opioid receptors; the enkephalins bind preferentially to delta and JL-opioid receptors and while beta-endorphin binds to mu- and delta-, but not to kappa-opioid receptors. While littleis known on the roJe ofthe opioid system in normal cardiovascular regulation, it has become clear that cardiovascular stress situations substantially modify the activity ofthe endogenous opioid system. This review focuses on the mu-opioid system in the hypothalamus with special emphasis on its potential roJe in cardiovascular control of both normal and pathophysiologic states.
Lipoxin A (LXA\(_4\)) and lipoxin B\(_4\)(LXB\(_4\)) are newly discovered lipoxygenase-interacting products of leukocytes which might have a role in cardiovascular events associated with anaphylaxis. We have tested this possibility by systemic administration of both LXA\(_4\) and LXB\(_4\) to the conscious rat while monitaring systemic and regional hemodynamic changes. LXA\(_4\) and' LXB\(_4\) (l-100 pg/kg) produced dose-dependent constriction of the mesenteric vessels, up to + 123±23% and +50±9% for LXA\(_4\)/B\(_4\) , respectively. Dose-related changes were not observed in arterial blood pressure, heart rate, renal (LXB\(_4\)) and hindquarter blood ftow. We suggest that LXA\(_4\) and LXB\(_4\) might affect selective vascular beds, such as the mesenteric vessels, and contribute to variations in blood flow in specific pathophysiological states.
N-Acetyl-leukotriene E\(_4\) administered to conscious freely moving rats produced a dose-dependent vasoconstriction in the mesenteric vessels which led to profound reduction of blood flow to the gut. Renal and hindquarter blood flow and vascular resistance were not affected even by high doses of N-acetyl-leukotriene E\(_4\) . N-Acetyl-leukotriene E\(_4\) was 10-fold more potent than the thromboxane analog U-46619 and 1000-fold more potent than prostaglandin F\(_{2a}\) but 2-5-fold less potent than leukotriene D\(_4\)/E\(_4\) to induce mesenteric vasoconstriction. These data indicatc that N-acetylleukotriene E\(_4\) is a biologically active metabolite of peptide leukotrienes, and might play a role in cardiovascular derangements mediated by leukotrienes.
Tbe mechanisms mediating the etl'ects ofthyrotropin-releasing hormone (TRH) on the cardiovascular system were studied in the conscious rat. Intracerebroventricolar (i.c. v.) injection of TRH (8 pmol-80 nmollkg) induced dose-dependent lncreases in mean arterial pressure, heart rate, and cardiac index. Rindquarter blood Oow increased due to vasodilation, while an lncrease in renal and mesenteric vascular resistance caused a decrease in blood Oow in the respective organs. The plasma Ievels of norepinephrine a~d epinephrine were increased by TRH, while there was no change in plasma renin activity or vasopressin. Tbe cardiovascular actions of i.c. v. TRH were not in.fluenced by blockade of the renin-angiotensin system or vasopressin receptors. Tbe ganglion blocker chlorisondamine and the a 1- aod al-adrenoreceptor antagooist phentolamlne (2 mg/kg i.v.) abolished the increase in blood pressure and mesenteric vasoconstriction after i.c. v. TRH. Propranolol (2 mg/kg i. v.) blocked the TRH-ioduced increase in cardiac index, heart rate, and hindquarter blood flow. The hindquarter vasodllatlon lnduced by TRH was also blocked by the selective ß1-adrenocept9r antagonist ICI 188,551 (1 or 2 mg/kg i.v.), while tbe ,8,-adrenoceptor blocker practolol (10 mg/kg i.v.) had no eft'ect on the hindquarter vasodiJation produced by TRH but totally blocked the increase in cardiac Index. In adrenal demedullated rats, the systemic hemodynamic eft'ects ofi.c. v. TRH were dimlnished along with the decrease in renal blood flow and lncrease in renal vascular resistance; however, the iocrease in hfndquarter blood flow was attenuated only in adrenal demedullated rats pretreated with the sympathetlc blocker bretylium. The renal vasoconstriction induced by i.c. v. TRH was not abolished by renal denervation. In sinoaortic debufl'ered rats, the pressor, tachycardic, and mesenteric vasoconstrictor responses to centrally administered TRH were significantly potentiated. Taken together, these data soggest that the putative rieurotransmitter TRH may play a role in central regulation of cardiac functions and organ blood flow distribution through both tbe sympathetic nerves and the adrenal medulla. A pivotal roJe for ß1-adrenoceptors in mediation ofhindquarter vasodilation ls also demonstrated.
The capacity of L-649,923-sodium ( ßS, -yR * )-4-(3-( 4-acetyl-3-hydroxy-2-propylphenoxy)propylthio)-- y-hydroxy-ß-methylbenzene butanoate-to block vascular receptors of leukotriene D\(_4\) ( L TD\(_4\)) was examined in the conscious rat. Hindquarter (HQ), renal, and mesenteric blood flow and vascular resistance were evaluated in the conscious rat chronically equipped with miniaturized Doppler probes for organ blood flow measurement by directional pulsed Doppler technique. In addition, cardiac outpul was measured by thermodilution technique in conscious rats equipped with minithermistors in the ascending aorta. Systemic hemodynamic variables. mean arterial pressure, and heart rate were monitored through femoral catheters. L TD\(_4\) (I or 10 \(\mu\)g/kg) produced a marked dose dependent increase in the mesenteric vascular resistance associated with a marked decrease in blood flow whereas no consistent effects were demonstrated in the renal circulation. L TD\(_4\) • at I \(\mu\)g/kg. increased the HQ blood flow whereas the higher dose of LTD\(_4\) produced a biphasic response: an early increase followed by a decrease in blood flow. Infusion of L TD\(_4\) • 3 \(\mu\)g/kg per min over 10 min decreased cardiac output and increased total peripheral resistance. L-649,923 (10 or 30 mg/kg, i.v.) effectively blocked the L TD4-induced mesenteric constriction and the second I phase of HQ vasoconstriction but did not modify the , LTD\(_4\) induced HQ vasodilation. L-649,923 also effectively attenuated the cardiac effects of LTD\(_4\) infusion. I These studies suggest that L-649,923 could preserve cardiac and vascular functions in pathologic states mediated by cysteinylleukotrienes, such as traumatic or endotoxin shock. Key Words: Leukotriene D4 -Cardiovascular system- Leukotriene antagonist- Mesenteric blood tlow-Renal blood flow-Hindquarter blood flowAnaphylaxis.
The effects of i.c.v. administered dermorphin, a highly selective \(\mu\)-opioid agonist, on cardiac function and renal, mesenteric and hindquarter blood ftow were studied in conscious rats. Core temperature, blood gases, arterial plasma levels of norepinephrine, epinephrine, dopamine, 3,4-dihydroxyphenylalanine and dihydroxyphenylacetic acid (DOPAC) also were examined. Cardiac output was rneasured using a thermodilution technique and regional blood ftows using directional pulsed Doppler velocimetry. Dermorphin, at doses of 0.1-100 nmol/kg, increased blood pressure and hindquarter blood flow, renal and mesenteric resistance, and core temperature. Higher doses (1-5 \(\mu\)mol/kg) caused respiratory depression, acidosis, and shock despite profaund sympatho-adrenomedullary stimulation. Circulating Ieveis of catecholamines were significantly increased at the dermorphin doses of 0.1-1 00 nmol/kg. At the 100 nmol/kg dose, plasma levels of epinephrine, norepinephrine, the dopamine metabellte dihydroxyphenylacetic acid and the catecholamine precursor 3,4,-dihydroxyphenylalanine were increased by 2-15-fold. The data indicate that mu opioid receptor Stimulation exerts potent effects on cardiorespiratory functions, activates the sympathoadrenomedullary system and produces a pattem of blood flow changes consistent with the stress-induced •detense· response (skeletal muscle vasodilation and splanchnic vasoconstriction). Excessive mu opioid receptor Stimulation Ieads to shock due to respiratory and hemodynamic collapse.