610 Medizin und Gesundheit
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- Medizinische Klinik und Poliklinik I (547)
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Schriftenreihe
Sonstige beteiligte Institutionen
- Johns Hopkins School of Medicine (18)
- IZKF Nachwuchsgruppe Geweberegeneration für muskuloskelettale Erkrankungen (7)
- Clinical Trial Center (CTC) / Zentrale für Klinische Studien Würzburg (ZKSW) (5)
- Johns Hopkins University School of Medicine (5)
- Bernhard-Heine-Centrum für Bewegungsforschung (4)
- Johns Hopkins School of Medicine, Baltimore, MD, U.S. (4)
- Klinikum Fulda (3)
- Zentraleinheit Klinische Massenspektrometrie (3)
- CHC Würzburg (Comprehensive Hearing Center) (2)
- Center for Interdisciplinary Clinical Research, Würzburg University, Würzburg, Germany (2)
ResearcherID
- D-1221-2009 (1)
Conventional bivalent IgG antibodies targeting a subgroup of receptors of the TNF superfamily (TNFSF) including fibroblast growth factor-inducible 14 (anti-Fn14) typically display no or only very limited agonistic activity on their own and can only trigger receptor signaling by crosslinking or when bound to Fcγ receptors (FcγR). Both result in proximity of multiple antibody-bound TNFRSF receptor (TNFR) molecules, which enables engagement of TNFR-associated signaling pathways. Here, we have linked anti-Fn14 antibodies to gold nanoparticles to mimic the “activating” effect of plasma membrane-presented FcγR-anchored anti-Fn14 antibodies. We functionalized gold nanoparticles with poly-ethylene glycol (PEG) linkers and then coupled antibodies to the PEG surface of the nanoparticles. We found that Fn14 binding of the anti-Fn14 antibodies PDL192 and 5B6 is preserved upon attachment to the nanoparticles. More importantly, the gold nanoparticle-presented anti-Fn14 antibody molecules displayed strong agonistic activity. Our results suggest that conjugation of monoclonal anti-TNFR antibodies to gold nanoparticles can be exploited to uncover their latent agonism, e.g., for immunotherapeutic applications.
Platelets play an important role in the body, since they are part of the hemostasis
system, preventing and stopping blood loss. Nevertheless, when platelet or
coagulation system function are impaired, uncontrolled bleedings but also irreversible
vessel occlusion followed by ischemic tissue damage can occur. Therefore,
understanding platelet function and activation, mechanisms which are controlled by a
variety of platelet membrane receptors and other factors is important to advance out
knowledge of hemostasis and platelet malfunction. For a complete picture of platelet
function and their modulating behavior it is desired to be able to quantify receptor
distributions and interactions of these densely packed molecular ensembles in the
membrane. This challenges scientists for several reasons. Most importantly, platelets
are microscopically small objects, challenging the spatial resolution of conventional
light microscopy. Moreover, platelet receptors are highly abundant on the membrane
so even super-resolution microscopy struggles with quantitative receptor imaging on
platelets.
With Expansion microscopy (ExM), a new super-resolution technique was introduced,
allowing resolutions to achieve super-resolution without using a super-resolution
microscope, but by combining a conventional confocal microscopy with a highly
processed sample that has been expanded physically. In this doctoral thesis, I
evaluated the potential of this technique for super-resolution platelet imaging by
optimizing the sample preparation process and establishing an imaging and image
processing pipeline for dual-color 3D images of different membrane receptors. The
analysis of receptor colocalization using ExM demonstrated a clear superiority
compared to conventional microscopy. Furthermore, I identified a library of
fluorescently labeled antibodies against different platelet receptors compatible with
ExM and showed the possibility of staining membrane receptors and parts of the
cytoskeleton at the same time.
Myeloid-derived suppressor cells (MDSC) represent major regulators of immune responses, which can control T cells via their inducible nitric oxide synthase (iNOS)- and arginase 1 (Arg1)-mediated effector functions. While GM-CSF is well documented to promote MDSC development, little is known about this potential of IL-3, an established growth factor for mast cells. Here, we show that IL-3, similar to GM-CSF, generates monocytic MDSC (M-MDSC) from murine bone marrow (BM) cells after 3 days of in vitro culture. At this time point, predominantly CD11b+ CD49a+ monocytic and CD11b+ CD49a- FcεR I- neutrophilic cells were detectable, while CD11blow/neg FcεR I+ mast cells accumulated only after extended culture periods. Both growth factors were equivalent in generating M-MDSC with respect to phenotype, cell yield and typical surface markers. However, IL-3 generated M-MDSC produced less TNF, IL-1β and IL-10 after activation with LPS + IFN-γ but showed higher Arg1 expression compared to GM-CSF generated M-MDSC. Arg1 was further induced together with iNOS after MDSC activation. Accordingly, an increased Arg1-dependent suppressor activity by the IL-3 generated M-MDSC was observed using respective iNOS and Arg1 inhibitors. Together, these data indicate that M-MDSC can be generated in vitro by IL-3, similar to GM-CSF, but with increased Arg1 expression and Arg1-mediated suppression capacity. This protocol now allows further in vitro studies on the role of IL-3 for MDSC biology.
The Chlamydiae constitute an evolutionary well separated group of intracellular bacteria comprising important pathogens of humans as well as symbionts of protozoa. The amoeba symbiont Protochlamydia amoebophila lacks a homologue of the most abundant outer membrane protein of the Chlamydiaceae, the major outer membrane protein MOMP, highlighting a major difference between environmental chlamydiae and their pathogenic counterparts. We recently identified a novel family of putative porins encoded in the genome of P. amoebophila by in silico analysis. Two of these Protochlamydia outer membrane proteins, PomS (pc1489) and PomT (pc1077), are highly abundant in outer membrane preparations of this organism. Here we show that all four members of this putative porin family are toxic when expressed in the heterologous host Escherichia coli. Immunofluorescence analysis using antibodies against heterologously expressed PomT and PomS purified directly from elementary bodies, respectively, demonstrated the location of both proteins in the outer membrane of P. amoebophila. The location of the most abundant protein PomS was further confirmed by immuno-transmission electron microscopy. We could show that pomS is transcribed, and the corresponding protein is present in the outer membrane throughout the complete developmental cycle, suggesting an essential role for P. amoebophila. Lipid bilayer measurements demonstrated that PomS functions as a porin with anion-selectivity and a pore size similar to the Chlamydiaceae MOMP. Taken together, our results suggest that PomS, possibly in concert with PomT and other members of this porin family, is the functional equivalent of MOMP in P. amoebophila. This work contributes to our understanding of the adaptations of symbiotic and pathogenic chlamydiae to their different eukaryotic hosts.
In the recent years, translational studies comparing imaging data of animals and humans have gained increasing scientific interests with crucial findings stemming from both, human and animal work. In order to harmonize statistical analyses of data from different species and to optimize the transfer of knowledge between them, shared data acquisition protocols and combined statistical approaches have to be identified. Following this idea, methods of data analysis, which have until now mainly been used to model neural responses of electrophysiological recordings from rodent data, were applied on human hemodynamic responses (i.e. Blood-Oxygen-Level-Dependent BOLD signal) as measured via functional magnetic resonance imaging (fMRI).
At the example of two attention and impulsivity networks, timing dynamics and amplitude of the fMRI signal were determined (study 1). Study 2 described the same parameters frequency-specifically, and in study 3, the complexity of neural processing was quantified in terms of fractality. Determined parameters were compared with regard to the subjects’ task performance / impulsivity to validate findings with regard to reports of the current scientific debate.
In a general discussion, overlapping as well as additional information of methodological approaches were discussed with regard to its potential for biomarkers in the context of neuropsychiatric disorders.
In the recent years, translational studies comparing imaging data of animals and humans have gained increasing
scientific interests with crucial findings stemming from both, human and animal work. In order to harmonize
statistical analyses of data from different species and to optimize the transfer of knowledge between them, shared
data acquisition protocols and combined statistical approaches have to be identified. Following this idea, methods
of data analysis, which have until now mainly been used to model neural responses of electrophysiological
recordings from rodent data, were applied on human hemodynamic responses (i.e. Blood-Oxygen-Level-
Dependent BOLD signal) as measured via functional magnetic resonance imaging (fMRI).
At the example of two attention and impulsivity networks, timing dynamics and amplitude of the fMRI signal were
determined (study 1). Study 2 described the same parameters frequency-specifically, and in study 3, the
complexity of neural processing was quantified in terms of fractality. Determined parameters were compared with
regard to the subjects’ task performance / impulsivity to validate findings with regard to reports of the current
scientific debate.
In a general discussion, overlapping as well as additional information of methodological approaches were
discussed with regard to its potential for biomarkers in the context of neuropsychiatric disorders.
The Best for the Most Important: Maintaining a Pristine Proteome in Stem and Progenitor Cells
(2019)
Pluripotent stem cells give rise to reproductively enabled offsprings by generating progressively lineage-restricted multipotent stem cells that would differentiate into lineage-committed stem and progenitor cells. These lineage-committed stem and progenitor cells give rise to all adult tissues and organs. Adult stem and progenitor cells are generated as part of the developmental program and play critical roles in tissue and organ maintenance and/or regeneration. The ability of pluripotent stem cells to self-renew, maintain pluripotency, and differentiate into a multicellular organism is highly dependent on sensing and integrating extracellular and extraorganismal cues. Proteins perform and integrate almost all cellular functions including signal transduction, regulation of gene expression, metabolism, and cell division and death. Therefore, maintenance of an appropriate mix of correctly folded proteins, a pristine proteome, is essential for proper stem cell function. The stem cells' proteome must be pristine because unfolded, misfolded, or otherwise damaged proteins would interfere with unlimited self-renewal, maintenance of pluripotency, differentiation into downstream lineages, and consequently with the development of properly functioning tissue and organs. Understanding how various stem cells generate and maintain a pristine proteome is therefore essential for exploiting their potential in regenerative medicine and possibly for the discovery of novel approaches for maintaining, propagating, and differentiating pluripotent, multipotent, and adult stem cells as well as induced pluripotent stem cells. In this review, we will summarize cellular networks used by various stem cells for generation and maintenance of a pristine proteome. We will also explore the coordination of these networks with one another and their integration with the gene regulatory and signaling networks.
Das Ziel dieser retrospektiven Studie war der Vergleich zwischen den zwei am häufigsten durchgeführten mikroinzisionalen Glaukomoperationen (Trabectome und iStent inject) in Bezug auf die Reduktion des Augeninnendrucks und der Anzahl der Glaukommedikamente, da diese operative Verfahren zunehmend eine Alternative für die traditionellen Glaukomoperationen in den verschiedenen Glaukomstadien darstellen.
In dieser Studie wurden alle Patienten eingeschlossen, die in der Zeit zwischen Januar 2008 und März 2018 in unserer Klinik und Satelliten entweder Trabectome oder iStent inject bekommen haben. Die beiden Gruppen wurden in allen Fällen mit Phakoemulsifikation und Intraokularlinsenimplantation kombiniert. Um die Wahrscheinlichkeit von Exact Matching mit den neuen iStent inject zu erhöhen, wo nur wenige Daten existieren, wurden die verfügbaren Daten von iStent inject mit Daten von 3446 Patienten aus der Datenbank der Trabectome Study Group gematcht. Der postoperative Beobachtungszeitraum betrug 24 Monate. Bei jedem Patienten wurden in dieser Zeit der Augeninnendruck und die Anzahl der Glaukommedikamente analysiert. Die zwei exakt gematchten Gruppen hatten den gleichen präoperativen Augeninnendruck von 18,3 ± 5,1 mmHg und die gleiche Anzahl der präoperativ angewendeten Glaukommedikamente von 2,7 ± 1,2.
In der iStent inject Gruppe wurde ein Augeninnendruck von 14,6 ± 4,2 mmHg nach drei Monaten erreicht, der zunehmend im Verlauf ab dem sechsten Monat stieg und über dem Basisdurchschnitt am Ende der Studie lag (18,8 ± 9,0 mmHg). In der Trabectome Gruppe war der Augeninnendruck nach einem Monat auf ein Minimum von 13,1 ± 3,2 mmHg reduziert und er blieb während der gesamten Beobachtungszeit in diesem Niveau (14,2 ± 3,5 mmHg nach 24 Monaten). Die Trabectome Gruppe hatte bei allen postoperativen Nachkontrollen einen durchschnittlich niedrigeren Augeninnendruck als in der iStent inject Gruppe.
In der iStent inject Gruppe sank die Anzahl der Glaukommedikamente bis zum dritten Monat auf 1,7 ± 1,4, und dann stieg sie ab dem sechsten Monat an, sodass es im Monat 12 keinen signifikanten Unterschied im Vergleich zur präoperativen Medikamentenanzahl mehr gab (2,0 ± 1,5 nach 24 Monaten). In der Trabectome Gruppe sanken die Glaukommedikamente von der exakt gematchten Zahl der Patienten von 2,7 ± 1,2 zum Studienbeginn auf 1,6 ± 1,3 in sechs Monaten und auf 1,5 ± 1,4 nach 24 Monaten.
Unter Verwendung der Erfolgsdefinition, die üblicherweise für die mikroinzisionalen Glaukomoperationen angewendet wird (eine Augeninnendrucksenkung um ≥ 20 % des Ausgangsdrucks oder ein Augeninnendruck von < 21 mmHg), erreichten 97 % der Patienten der Trabectome Gruppe und 95 % der Patienten der iStent inject Gruppe dieses Ziel.
Dieser ausgewogene Vergleich zwischen den zwei Gruppen mittels Exact Matchings zeigte, dass die Senkung des Augeninnendrucks und der Anzahl der Glaukommedikamente bei Trabectome größer und anhaltender ist als bei iStent inject.
Verschiedene Forschungsergebnisse der letzten zehn Jahre ergaben, dass die weitaus häufigeren, nicht-syndromalen Schwerhörigkeiten durch Mutation eines Gens (GJB2-Gen) entstehen, welches im Cortischen Organ des Innenohrs exprimiert wird.
Das GJB2-Gen (Connexin-26-Gen), dessen Veränderung etwa 50 % der Fälle von autosomal rezessiver Schwerhörigkeit ausmacht, liegt im Chromosomenbereich 13q11–12.
Aktuell identifiziert sind mehr als 70 weitere Loki, die in Verbindung mit nicht-syndromalen Formen von Schwerhörigkeit stehen. Die Prävalenz von NSHL beträgt nach neusten Studien ca. 1,33 pro 1000 Neugeborenen.
In Würzburg wurden bis zum Jahr 2011 auf der Neugeborenenstation der Frauenklinik der Universitätsklinik in einem bewährten zweistufigen Neugeborenen-Hörscreening ca. 12853 Babys untersucht.
Ziel des Neugeborenen-Hörscreenings ist eine frühestmögliche Erkennung von Schwerhörigkeit bei Neugeborenen, damit durch die Behandlung eine ungehinderte Sprachentwicklung gewährleistet werden kann.
In dieser Arbeit wurde der Zusammenhang zwischen der Mutation im Connexin-26-Gen und dem Grad, dem Verlauf und der Konfiguration der Hörminderung untersucht.
Hierfür wurden 59 Patienten im Alter von 1 bis 15 Jahren mit beidseitigen, nicht-syndromalen Hörstörungen der Schallempfindung verschiedenen Grades rekrutiert.
Mithilfe der molekulargenetischen Befunde konnten Veränderungen im Connexin-26-Gen diagnostiziert werden. Anschließend wurde versucht, unter Zuhilfenahme aller vorhandenen Befunde der individuellen Audiogramm- und BERA- oder ASSR-Befunde eine Genotyp-Phänotyp-Korrelation abzuleiten.
Compared to cell therapy, where cells are injected into a defect region, the treatment of heart infarction with cells seeded in a vascularized scaffold bears advantages, such as an immediate nutrient supply or a controllable and persistent localization of cells. For this purpose, decellularized native tissues are a preferable choice as they provide an in vivo-like microenvironment. However, the quality of such scaffolds strongly depends on the decellularization process. Therefore, two protocols based on sodium dodecyl sulfate or sodium deoxycholate were tailored and optimized for the decellularization of a porcine heart. The obtained scaffolds were tested for their applicability to generate vascularized cardiac patches. Decellularization with sodium dodecyl sulfate was found to be more suitable and resulted in scaffolds with a low amount of DNA, a highly preserved extracellular matrix composition, and structure shown by GAG quantification and immunohistochemistry. After seeding human endothelial cells into the vasculature, a coagulation assay demonstrated the functionality of the endothelial cells to minimize the clotting of blood. Human-induced pluripotent-stem-cell-derived cardiomyocytes in co-culture with fibroblasts and mesenchymal stem cells transferred the scaffold into a vascularized cardiac patch spontaneously contracting with a frequency of 25.61 ± 5.99 beats/min for over 16 weeks. The customized decellularization protocol based on sodium dodecyl sulfate renders a step towards a preclinical evaluation of the scaffolds.
Cardiovascular diseases are considered the leading cause of death worldwide according to the World Health Organization. Heart failure is the last stage of most of these diseases, where loss of myocardium leads to architectural and functional decline.
The definitive treatment option for patients with CVDs is organ or tissue transplantation, which relies on donor availability. Therefore, generating an autologous bioengineered myocardium or heart could overcome this limitation. In addition, generating cardiac patches will provide ventricular wall support and enable reparative stem cells delivery to damaged areas. Although many hurdles still exist, a good number of researches have attempted to create an engineered cardiac tissue which can induce endogenous cardiac repair by replacing damaged myocardium.
The present study provided cardiac patches in two models, one by a detergent coronary perfusion decellularization protocol that was optimized, and the other that resulted in a 3D cell-free extracellular matrix with intact architecture and preserved s-glycosaminoglycan and vasculature conduits. Perfusion with 1% Sodium dodecyle sulfate (SDS) under constant pressure resulted in cell-free porcine scaffold within two and cell-free rat scaffold in 7 days, whereas scaffold perfused with 4% sodium deoxycholate (SDO) was not able to remove cells completely. Re-reendothelialization of tissue vasculature was obtained by injecting human microvascular endothelial cell and human fibroblast in 2:1 ratio in a dynamic culture. One-week later, CD31 positive cells and endothelium markers were observed, indicating new blood lining. Moreover, functionality test of re-endothelialized tissue revealed improvement in clotting seen in decellularized tissues. When the tissue was ready to be repopulated, porcine induced pluripotent stem cells (PiPSc) were generated by transfected reprogramming of porcine skin fibroblast and then differentiated to cardiac cells following a robust protocol, for an autologous cardiac tissue model. However, due to the limitation in the PiPSc cell number, alternatively, human induced pluripotent stem cells generated cardiac cells were used.
For reseeding a coculture of human iPSc generated cardiac cells, human mesenchymal stem cells and human fibroblast in 2:1:1 ratio respectively were used in a dynamic culture for 6-8 weeks. Contractions at different areas of the tissue were recorded at an average beating rate of 67 beats/min. In addition, positive cardiac markers (Troponin T), Fibroblast (vemintin), and mesenchymal stem cells (CD90) were detected. Not only that, but by week 3, MSC started differentiating to cardiac cells progressively until few CD90 positive cells were very few by week 6 with increasing troponin t positive cells in parallel. Electrophysiological and drug studies were difficult to obtain due to tissue thickness and limited assessment sources. However, the same construct was established using small intestine submucosa (SISer) scaffold, which recorded a spontaneous beating rate between 0.88 and 1.2 Hz, a conduction velocity of 23.9 ± 0.74 cm s−1, and a maximal contraction force of 0.453 ± 0.015 mN. Moreover, electrophysiological studies demonstrated a drug-dependent response on beating rate; a higher adrenalin frequency was revealed in comparison to the untreated tissue and isoproterenol administration, whereas a decrease in beating rate was observed with propranolol and untreated tissue.
The present study demonstrated the establishment of vascularized cardiac tissue, which can be used for human clinical application.
The objective was to determine the mRNA expression and protein levels of uPA system components in tissue specimens and serum samples, respectively, from prostate cancer (PCa) patients and to assess their association with clinicopathological parameters and overall survival (OS). The mRNA expression levels of uPA, its receptor (uPAR), and its inhibitor type 1 (PAI-1) were analyzed in corresponding malignant and adjacent nonmalignant tissue specimens from 132 PCa patients by quantitative PCR. Preoperative serum samples from 81 PCa patients were analyzed for antigen levels of uPA system members by ELISA. RNA levels of uPA system components displayed significant correlations with each other in the tumor tissues. A significantly decreased uP AmRNA expression in PCa compared to the corresponding nonmalignant tissue was detected. High uPA mRNA level was significantly associated with a high Gleason score. Elevated concentration of soluble uPAR (suPAR) in serum was significantly associated with a poor OS of PCa patients (P = 0.022). PCa patients with high suPAR levels have a significantly higher risk of death (multivariate Cox's regression analysis; IIR - 7.12, P - 0.027). The association of high suPAR levels with poor survival of PCa patients suggests a prognostic impact of suPAR levels in serum of cancer patients.
Die pterygospinösen Strukturen zwischen Lamina lateralis des Processus pterygoideus und einer Spina ossis sphenoidalis können in unterschiedlicher Ausprägung vorliegen. Meist ist ein Ligamentum pterygospinosum, gelegentlich ein Arcus osseus oder ein Musculus pterygospinosus vorhanden. In einzelnen Fällen können mehrere Varianten parallel vorliegen. Die knöchernen Verbindengen kommen bei Altweltaffen immer vor, beim Menschen nur noch vereinzelt. Diese Strukturen können einen operativen lateralen Zugang zur Tiefe der Fossa infratemporalis behindern. Durch radiologische Methoden können präoperativ die pterygospinösen Strukturen dargestellt werden.
Olea europaea L. Cv. Arbequina (OEA) (Oleaceae) is an olive variety species that has received little attention. Besides our previous work for the chemical profiling of OEA leaves using LC–HRESIMS, an additional 23 compounds are identified. An excision wound model is used to measure wound healing action. Wounds are provided with OEA (2% w/v) or MEBO\(^®\) cream (marketed treatment). The wound closure rate related to vehicle-treated wounds is significantly increased by OEA. Comparing to vehicle wound tissues, significant levels of TGF-β in OEA and MEBO\(^®\) (p < 0.05) are displayed by gene expression patterns, with the most significant levels in OEA-treated wounds. Proinflammatory TNF-α and IL-1β levels are substantially reduced in OEA-treated wounds. The capability of several lignan-related compounds to interact with MMP-1 is revealed by extensive in silico investigation of the major OEA compounds (i.e., inverse docking, molecular dynamics simulation, and ΔG calculation), and their role in the wound-healing process is also characterized. The potential of OEA as a potent MMP-1 inhibitor is shown in subsequent in vitro testing (IC\(_{50}\) = 88.0 ± 0.1 nM). In conclusion, OEA is introduced as an interesting therapeutic candidate that can effectively manage wound healing because of its anti-inflammatory and antioxidant properties.
Migration and interactions of immune cells are routinely studied by time-lapse microscopy of in vitro migration and confrontation assays. To objectively quantify the dynamic behavior of cells, software tools for automated cell tracking can be applied. However, many existing tracking algorithms recognize only rather short fragments of a whole cell track and rely on cell staining to enhance cell segmentation. While our previously developed segmentation approach enables tracking of label-free cells, it still suffers from frequently recognizing only short track fragments. In this study, we identify sources of track fragmentation and provide solutions to obtain longer cell tracks. This is achieved by improving the detection of low-contrast cells and by optimizing the value of the gap size parameter, which defines the number of missing cell positions between track fragments that is accepted for still connecting them into one track. We find that the enhanced track recognition increases the average length of cell tracks up to 2.2-fold. Recognizing cell tracks as a whole will enable studying and quantifying more complex patterns of cell behavior, e.g. switches in migration mode or dependence of the phagocytosis efficiency on the number and type of preceding interactions. Such quantitative analyses will improve our understanding of how immune cells interact and function in health and disease.
The role of vessel wall-resident stem cells in the generation of microglia and angiogenisis in the adult CNS
Das Zentralnervensystem (ZNS) wird kontinuierlich durch ein eigenes Immunsystem überwacht. Die Mikroglia sind ein wichtiger Vertreter dieses Immunsystems und ein besonderes Charakteristikum des ZNS. Für die Aufrechterhaltung der Hämostase im ZNS spielen die Mikroglia eine zentrale Rolle. Die Herkunft der Mikroglia war für lange Zeit Gegenstand der kontroversen wissenschaftlichen Diskussion. Zusammengefasst wurde deren Ursprung als hämatopoetisch, mesodermal und neuroektodermal beschrieben. Allerdings überwiegt derzeit die Meinung, dass die Mikroglia von Vorläuferzellen geliefert wird, die während der Embryonalentwicklung aus der Dottersackwand ins Gehirn migrieren, dort bis zum Erwachsenenalter persistieren und immer wieder zur Erneuerung der Mikroglia herangezogen werden. Wo genau im Hirngewebe derartige oder andere potenzielle Mikrogliavorläuferzellen im ZNS residieren, ist bis heute nicht abschließend geklärt.
In der vorliegenden Arbeit konnte gezeigt werden, dass bereits die frisch präparierten Hirngefäße sowohl CD44+ als auch CD45+ Zellen in ihren Wänden aufweisen. Außerdem ließ sich beobachten, dass die CD44+ Zellen im BRA nach außen wanderten und sich zu Perizyten-ähnlichen und glatten Muskelzellen differenzierten. Diese Befunde ließen darauf schließen, dass die CD44+ Zellen mit diesen Eigenschaften das Potenzial haben, zur Gefäßneubildung beizutragen. Darüber hinaus konnten CD45+ Zellen in der Adventitia frisch isolierter Hirngefäße nachgewiesen werden, die im BRA teilweise für F4/80 und/oder Iba-1 positiv wurden. Dies wiederum lässt vermuten, dass aus der Wand der Hirngefäße Mikroglia- und Makrophagen-ähnliche Zellen generiert werden können. Es blieb jedoch offen, ob diese CD45+ Vorläuferzellen dauerhaft in der Adventitia der Hirngefäße residieren oder aber immer wieder durch im Blut zirkulierende Monozyten erneuert werden. Diese Frage zu klären, ist von klinischer Relevanz, bleibt jedoch zukünftigen Arbeiten überlassen. Das hier etablierte BRA könnte auch bei solchen Analysen hilfreich sein.
In dieser Arbeit wird die intraoperative Boost-Bestrahlung mit 9 oder 20 Gy bei Mammakarzinompatientinnen evaluiert. Es werden das onkologische Ergebnis, die bestrahlungsassoziierte Toxizität, das kosmetische Therapieergebnis und die Lebensqualität ausgewertet. Die Analyse bezieht sich auf 124 Fälle im frühen Brustkrebsstadium.
Neurotrophine beeinflussen durch die Modulation von Prozessen wie Zellproliferation, -migration, Apoptose und Synapsenbildung entscheidend die neuronale Plastizität. Sie gelten deshalb als Kandidatengene neuronaler Entwicklungsstörungen wie Autismus-Spektrum-Störungen (ASS). Die vorgelegte Arbeit zielt auf die weitere Klärung der Rolle von Brain Derived Neurotrophic Factor (BDNF) bei der Ätiopathophysiologie der ASS durch Expressionsanalysen im Blut als potenziellem Surrogat zentralnervöser Prozesse.
In gut charakterisierten ASS-Stichproben und - neben gesunden Kontrollprobanden - einer klinischen Kontrollgruppe von Patienten mit Aufmerksamkeitsdefizit-/ Hyperaktivitätsstörung (ADHS) wurde die BDNF-mRNA-Expression in Vollblut sowie BDNF-Proteinserumkonzentrationen untersucht. Zusätzlich wurden mögliche Einflussfaktoren auf die BDNF-Werte wie Alter, IQ, autismusspezifische Symptomatik, Komorbidität und Medikation analysiert.
In einer ersten Stichprobe (ASS-Patienten versus gesunde Kontrollen) wurden
signifikant erniedrigte BDNF-Serumkonzentrationen in der Patientengruppe mittels
Enzyme-Linked-Immunosorbent-Assay gemessen (p = 0,040). In einer zweiten unabhängigen Stichprobe (Patienten mit ASS, Patienten mit ADHS und gesunde Kontrollen) wurde auf mRNA-Ebene mittels quantitativer Real-Time-Polymerasekettenreaktion ebenfalls ein signifikanter Gruppenunterschied ermittelt mit erniedrigter BDNF-Expression in der ASS-Gruppe im Vergleich zu gesunder Kontrollgruppe (p = 0,011), sowie einem Trend zu erniedrigten BDNF-Werten bei ADHS-Patienten im Vergleich zu gesunden Probanden (p = 0,097). Des Weiteren wurde eine signifikante negative Korrelation zwischen Alter und BDNF-mRNA-Expression bei Patienten mit ASS sowie eine positive Korrelation von Alter und BDNF-Serumkonzentrationen bei gesunden Kontrollen gemessen. Auch korrelierten die BDNF-Werte im Serum mit der Ausprägung des autistischen Phänotyps. In einer Subgruppe der ADHS-Patienten wurde kein Einfluss von Psychostimulanzien auf die BDNF-mRNA-Expression gemessen.
Der Einbezug größerer Stichproben sowie die systematische Erfassung weiterer potenzieller Einflussfaktoren auf die BDNF-Expression (wie pubertärer Entwicklungsstand bzw. Geschlechtshormonkonzentrationen) könnten in zukünftigen Studien zu einer weiteren Klärung der pathophysiologischen Rolle von BDNF bei Kindern und Jugendlichen mit ASS beitragen.
Neurotrophine beeinflussen durch die Modulation von Prozessen wie Zellproliferation, -migration, Apoptose und Synapsenbildung entscheidend die neuronale Plastizität. Sie gelten deshalb als Kandidatengene neuronaler Entwicklungsstörungen wie Autismus-Spektrum-Störungen (ASS). Die vorgelegte Arbeit zielt auf die weitere Klärung der Rolle von Brain Derived Neurotrophic Factor (BDNF) bei der Ätiopathophysiologie der ASS durch Expressionsanalysen im Blut als potenziellem Surrogat zentralnervöser Prozesse.
In gut charakterisierten ASS-Stichproben und - neben gesunden Kontrollprobanden - einer klinischen Kontrollgruppe von Patienten mit Aufmerksamkeitsdefizit-/ Hyperaktivitätsstörung (ADHS) wurde die BDNF-mRNA-Expression in Vollblut sowie BDNF-Proteinserumkonzentrationen untersucht. Zusätzlich wurden mögliche Einflussfaktoren auf die BDNF-Werte wie Alter, IQ, autismusspezifische Symptomatik, Komorbidität und Medikation analysiert.
In einer ersten Stichprobe (ASS-Patienten versus gesunde Kontrollen) wurden
signifikant erniedrigte BDNF-Serumkonzentrationen in der Patientengruppe mittels
Enzyme-Linked-Immunosorbent-Assay gemessen (p = 0,040). In einer zweiten unabhängigen Stichprobe (Patienten mit ASS, Patienten mit ADHS und gesunde Kontrollen) wurde auf mRNA-Ebene mittels quantitativer Real-Time-Polymerasekettenreaktion ebenfalls ein signifikanter Gruppenunterschied ermittelt mit erniedrigter BDNF-Expression in der ASS-Gruppe im Vergleich zu gesunder Kontrollgruppe (p = 0,011), sowie einem Trend zu erniedrigten BDNF-Werten bei ADHS-Patienten im Vergleich zu gesunden Probanden (p = 0,097). Des Weiteren wurde eine signifikante negative Korrelation zwischen Alter und BDNF-mRNA-Expression bei Patienten mit ASS sowie eine positive Korrelation von Alter und BDNF-Serumkonzentrationen bei gesunden Kontrollen gemessen. Auch korrelierten die BDNF-Werte im Serum mit der Ausprägung des autistischen Phänotyps. In einer Subgruppe der ADHS-Patienten wurde kein Einfluss von Psychostimulanzien auf die BDNF-mRNA-Expression gemessen.
Der Einbezug größerer Stichproben sowie die systematische Erfassung weiterer potenzieller Einflussfaktoren auf die BDNF-Expression (wie pubertärer Entwicklungsstand bzw. Geschlechtshormonkonzentrationen) könnten in zukünftigen Studien zu einer weiteren Klärung der pathophysiologischen Rolle von BDNF bei Kindern und Jugendlichen mit ASS beitragen.