610 Medizin und Gesundheit
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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)
Aging is known to be a risk factor for structural abnormalities and functional decline in the nervous system. Characterizing age-related changes is important to identify putative pathways to overcome deleterious effects and improve life quality for the elderly. In this study, the peripheral nervous system of 24-month-old aged C57BL/6 mice has been investigated and compared to 12-month-old adult mice. Aged mice showed pathological alterations in their peripheral nerves similar to nerve biopsies from elderly human individuals, with nerve fibers showing demyelination and axonal damage. Such changes were lacking in nerves of adult 12-month-old mice and adult, non-aged humans. Moreover, neuromuscular junctions of 24-month-old mice showed increased denervation compared to adult mice. These alterations were accompanied by elevated numbers of macrophages in the peripheral nerves of aged mice. The neuroinflammatory conditions were associated with impaired myelin integrity and with a decline of nerve conduction properties and muscle strength in aged mice.
To determine the pathological impact of macrophages in the aging mice, macrophage depletion was performed in mice by oral administration of CSF-1R specific kinase (c-FMS) inhibitor PLX5622 (300 mg/kg body weight), which reduced the number of macrophages in the peripheral nerves by 70%. The treated mice showed attenuated demyelination, less muscle denervation and preserved muscle strength. This indicates that macrophage-driven inflammation in the peripheral nerves is partially responsible for the age-related neuropathy in mice.
Based on previous observations that systemic inflammation can accelerate disease progression in mouse models of neurodegenerative diseases, it was hypothesized that systemic inflammation can exacerbate the peripheral neuropathy found in aged mice. To investigate this hypothesis, aged C57BL/6 mice were intraperitoneally injected with a single dose of lipopolysaccharide (LPS; 500 μg/kg body weight) to induce systemic inflammation by mimicking bacterial infection, mostly via activation of Toll-like receptors (TLRs). Altered endoneurial macrophage activation, highlighted by Trem2 downregulation, was found in LPS injected aged mice one month after injection. This was accompanied by a so far rarely observed form of axonal perturbation, i.e., the occurrence of “dark axons” characterized by a damaged cytoskeleton and an increased overall electron density of the axoplasm. At the same time, however, LPS injection reduced demyelination and muscle denervation in aged mice. Interestingly, TREM2 deficiency in aged mice led to similar changes to LPS injection. This suggests that LPS injection likely mitigates aging-related demyelination and muscle denervation via Trem2 downregulation.
Taken together, this study reveals the role of macrophage-driven inflammation as a pathogenic mediator in age-related peripheral neuropathy, and that targeting macrophages might be an option to mitigate peripheral neuropathies in aging individuals. Furthermore, this study shows that systemic inflammation may be an ambivalent modifier of age-related nerve damage, leading to a distinct type of axonal perturbation, but in addition to functionally counteracting, dampened demyelination and muscle denervation. Translationally, it is plausible to assume that tipping the balance of macrophage polarization to one direction or the other may determine the functional outcome in the aging peripheral nervous system of the elderly.
Functional versus morphological assessment of vascular age in patients with coronary heart disease
(2021)
Communicating cardiovascular risk based on individual vascular age (VA) is a well acknowledged concept in patient education and disease prevention. VA may be derived functionally, e.g. by measurement of pulse wave velocity (PWV), or morphologically, e.g. by assessment of carotid intima-media thickness (cIMT). The purpose of this study was to investigate whether both approaches produce similar results. Within the context of the German subset of the EUROASPIRE IV survey, 501 patients with coronary heart disease underwent (a) oscillometric PWV measurement at the aortic, carotid-femoral and brachial-ankle site (PWVao, PWVcf, PWVba) and derivation of the aortic augmentation index (AIao); (b) bilateral cIMT assessment by high-resolution ultrasound at three sites (common, bulb, internal). Respective VA was calculated using published equations. According to VA derived from PWV, most patients exhibited values below chronological age indicating a counterintuitive healthier-than-anticipated vascular status: for VA(PWVao) in 68% of patients; for VA\(_{AIao}\) in 52% of patients. By contrast, VA derived from cIMT delivered opposite results: e.g. according to VA\(_{total-cIMT}\) accelerated vascular aging in 75% of patients. To strengthen the concept of VA, further efforts are needed to better standardise the current approaches to estimate VA and, thereby, to improve comparability and clinical utility.
Purpose
Growing evidence implies that transition to parenthood triggers symptoms of mental burden not only in women but likewise in men, especially in high-risk pregnancies. This is the first study that examined and compared the prevalence rates of depression, anxiety, and somatic symptom burden of expectant fathers who face different risk situations during pregnancy.
Methods
Prevalence rates of paternal depression (Edinburgh postnatal depression scale), anxiety (generalized anxiety disorder seven), and somatic symptom burden (somatic symptom scale eight) were examined in two risk samples and one control group in the third trimester of their partners’ pregnancy: risk sample I (n = 41) consist of expectant fathers whose partners were prenatally hospitalized due to medical complications; risk sample II (n = 52) are fathers whose partners were prenatally mentally distressed; and control group (n = 70) are those non-risk pregnancies.
Results
On a purely descriptive level, the data display a trend of higher symptom burden of depression, anxiety, and somatic symptoms in the two risk samples, indicating that expectant fathers, whose pregnant partners were hospitalized or suffered prenatal depression, were more prenatally distressed. Exploratory testing of group differences revealed an almost three times higher prevalence rate of anxiety in fathers whose partner was hospitalized (12.2%) compared to those non-risks (4.3%).
Conclusion
Results underline the need for screening implementations for paternal prenatal psychological distress, as well as specific prevention and treatment programs, especially for fathers in risk situations, such as their pregnant partners’ prenatal hospitalization.
The study was registered with the German clinical trials register (DRKS00020131) on 2019/12/09.
Background: Animal models of human inflammatory diseases have limited predictive quality for human clinical trials for various reasons including species specific activation mechanisms and the immunological background of the animals which markedly differs from the genetically heterogeneous and often aged patient population.
Objective: Development of an animal model allowing for testing therapeutics targeting pathways involved in the development of Atopic Dermatitis (AD) with better translatability to the patient.
Methods: NOD-scid IL2R \(\gamma^{null}\) mice engrafted with human peripheral blood mononuclear cells (hPBMC) derived from patients suffering from AD and healthy volunteers were treated with IL-4 and the antagonistic IL-4 variant R121/Y124D (Pitrakinra). Levels of human (h) IgE, amount of B-, T- and plasma-cells and ratio of CD4 : CD8 positive cells served as read out for induction and inhibition of cell proliferation and hIgE secretion. Results were compared to in vitro analysis.
Results: hIgE secretion was induced by IL-4 and inhibited by the IL-4 antagonist Pitrakinra in vivo when formulated with methylcellulose. B-cells proliferated in response to IL-4 in vivo; the effect was abrogated by Pitrakinra. IL-4 shifted CD4 : CD8 ratios in vitro and in vivo when hPBMC derived from healthy volunteers were used. Pitrakinra reversed the effect. Human PBMC derived from patients with AD remained inert and engrafted mice reflected the individual responses observed in vitro.
Conclusion: NOD-scid IL2R \(\gamma^{null}\) mice engrafted with human PBMC reflect the immunological history of the donors and provide a complementary tool to in vitro studies. Thus, studies in this model might provide data with better translatability from bench to bedside.
Objective: To evaluate the safety and effectiveness of round window (RW), oval window (OW), CliP and Bell couplers for use with an active middle ear implant. Methods: This is a multicenter, long-term, prospective trial with consecutive enrollment, involving 6 university hospitals in Germany. Bone conduction, air conduction, implant-aided warble-tone thresholds and Freiburger monosyllable word recognition scores were compared with unaided preimplantation results in 28 moderate-to-profound hearing-impaired patients after 12 months of follow-up. All patients had previously undergone failed reconstruction surgeries (up to 5 or more). In a subset of patients, additional speech tests at 12 months postoperatively were used to compare the aided with the unaided condition after implantation with the processor switched off. An established quality-of-life questionnaire for hearing aids was used to determine patient satisfaction. Results: Postoperative bone conduction remained stable. Mean functional gain for all couplers was 37 dB HL (RW = 42 dB, OW = 35 dB, Bell = 38 dB, CliP = 27 dB). The mean postoperative Freiburger monosyllable score was 71% at 65 dB SPL. The postimplantation mean SRT<sub>50</sub> (speech reception in quiet for 50% understanding of words in sentences) improved on average by 23 dB over unaided testing and signal-to-noise ratios also improved in all patients. The International Outcome Inventory for Hearing Aids (IOI-HA)quality-of-life questionnaire was scored very positively by all patients. Conclusion: A significant improvement was seen with all couplers, and patients were satisfied with the device at 12 months postoperatively. These results demonstrate that an active implant is an advantage in achieving good hearing benefit in patients with prior failed reconstruction surgery.
Analytical ultracentrifugation (AUC) is a first principles based method to determine absolute sedimentation coefficients and buoyant molar masses of macromolecules and their complexes, reporting on their size and shape in free solution. The purpose of this multi-laboratory study was to establish the precision and accuracy of basic data dimensions in AUC and validate previously proposed calibration techniques. Three kits of AUC cell assemblies containing radial and temperature calibration tools and a bovine serum albumin (BSA) reference sample were shared among 67 laboratories, generating 129 comprehensive data sets. These allowed for an assessment of many parameters of instrument performance, including accuracy of the reported scan time after the start of centrifugation, the accuracy of the temperature calibration, and the accuracy of the radial magnification. The range of sedimentation coefficients obtained for BSA monomer in different instruments and using different optical systems was from 3.655 S to 4.949 S, with a mean and standard deviation of (4.304\(\pm\)0.188) S (4.4%). After the combined application of correction factors derived from the external calibration references for elapsed time, scan velocity, temperature, and radial magnification, the range of s-values was reduced 7-fold with a mean of 4.325 S and a 6-fold reduced standard deviation of \(\pm\)0.030 S (0.7%). In addition, the large data set provided an opportunity to determine the instrument-to-instrument variation of the absolute radial positions reported in the scan files, the precision of photometric or refractometric signal magnitudes, and the precision of the calculated apparent molar mass of BSA monomer and the fraction of BSA dimers. These results highlight the necessity and effectiveness of independent calibration of basic AUC data dimensions for reliable quantitative studies.
Many new immunotherapeutic approaches aim on the stimulatory targeting of receptors of the tumor necrosis factor (TNF) receptor superfamily (TNFRSF) using antibodies with intrinsic or conditional agonism. There is an initial need to characterize corresponding TNFRSF receptor (TNFR)-targeting antibodies with respect to affinity, ligand binding, receptor activation and the epitope recognized. Here, we report a collection of simple and matched protocols enabling the detailed investigation of these aspects by help of Gaussia princeps luciferase (GpL) fusion proteins and analysis of interleukin-8 (IL8) production as an easily measurable readout of TNFR activation. In a first step, the antibodies and antibody variants of interest are transiently expressed in human embryonal kidney 293 cells, either in non-modified form or as fusion proteins with GpL as a reporter domain. The supernatants containing the antibody-GpL fusion proteins can then be used without further purification in cell-free and/or cellular binding studies to determine affinity. Similarly, binding studies with mutated TNFR variants enable the characterization of the antibody binding site within the TNFR ectodomain. Furthermore, in cellular binding studies with GpL fusion proteins of soluble TNFL molecules, the ability of the non-modified antibody variants to interfere with TNFL-TNFR interaction can be analyzed. Last but not least, we describe a protocol to determine the intrinsic and the Fc gamma receptor (FcγR)-dependent agonism of anti-TNFR antibodies which exploits i) the capability of TNFRs to trigger IL8 production in tumor cell lines lacking expression of FcγRs and ii) vector- and FcγR-transfected cells, which produce no or only very low amounts of human IL8. The presented protocols only require standard molecular biological equipment, eukaryotic cell culture and plate readers for the quantification of luminescent and colorimetric signals.
Antibody-based soluble and membrane-bound TWEAK mimicking agonists with FcγR-independent activity
(2023)
Fibroblast growth factor (FGF)-inducible 14 (Fn14) activates the classical and alternative NFκB (nuclear factor ‘kappa-light-chain-enhancer’ of activated B-cells) signaling pathway but also enhances tumor necrosis factor (TNF)-induced cell death. Fn14 expression is upregulated in non-hematopoietic cells during tissue injury and is also often highly expressed in solid cancers. In view of the latter, there were and are considerable preclinical efforts to target Fn14 for tumor therapy, either by exploiting Fn14 as a target for antibodies with cytotoxic activity (e.g. antibody-dependent cellular cytotoxicity (ADCC)-inducing IgG variants, antibody drug conjugates) or by blocking antibodies with the aim to interfere with protumoral Fn14 activities. Noteworthy, there are yet no attempts to target Fn14 with agonistic Fc effector function silenced antibodies to unleash the proinflammatory and cell death-enhancing activities of this receptor for tumor therapy. This is certainly not at least due to the fact that anti-Fn14 antibodies only act as effective agonists when they are presented bound to Fcγ receptors (FcγR). Thus, there are so far no antibodies that robustly and selectively engage Fn14 signaling without triggering unwanted FcγR-mediated activities. In this study, we investigated a panel of variants of the anti-Fn14 antibody 18D1 of different valencies and domain architectures with respect to their inherent FcγR-independent ability to trigger Fn14-associated signaling pathways. In contrast to conventional 18D1, the majority of 18D1 antibody variants with four or more Fn14 binding sites displayed a strong ability to trigger the alternative NFκB pathway and to enhance TNF-induced cell death and therefore resemble in their activity soluble (TNF)-like weak inducer of apoptosis (TWEAK), one form of the natural occurring ligand of Fn14. Noteworthy, activation of the classical NFκB pathway, which naturally is predominately triggered by membrane-bound TWEAK but not soluble TWEAK, was preferentially observed with a subset of constructs containing Fn14 binding sites at opposing sites of the IgG scaffold, e.g. IgG1-scFv fusion proteins. A superior ability of IgG1-scFv fusion proteins to trigger classical NFκB signaling was also observed with the anti-Fn14 antibody PDL192 suggesting that we identified generic structures for Fn14 antibody variants mimicking soluble and membrane-bound TWEAK.
Fibroblast growth factor-inducible 14 (Fn14) is a member of the tumor necrosis factor (TNF) receptor superfamily (TNFRSF) and is activated by its ligand TNF-like weak inducer of apoptosis (TWEAK). The latter occurs as a homotrimeric molecule in a soluble and a membrane-bound form. Soluble TWEAK (sTWEAK) activates the weakly inflammatory alternative NF-κB pathway and sensitizes for TNF-induced cell death while membrane TWEAK (memTWEAK) triggers additionally robust activation of the classical NF-κB pathway and various MAP kinase cascades. Fn14 expression is limited in adult organisms but becomes strongly induced in non-hematopoietic cells by a variety of growth factors, cytokines and physical stressors (e.g., hypoxia, irradiation). Since all these Fn14-inducing factors are frequently also present in the tumor microenvironment, Fn14 is regularly found to be expressed by non-hematopoietic cells of the tumor microenvironment and most solid tumor cells. In general, there are three possibilities how the tumor-Fn14 linkage could be taken into consideration for tumor therapy. First, by exploitation of the cancer associated expression of Fn14 to direct cytotoxic activities (antibody-dependent cell-mediated cytotoxicity (ADCC), cytotoxic payloads, CAR T-cells) to the tumor, second by blockade of potential protumoral activities of the TWEAK/Fn14 system, and third, by stimulation of Fn14 which not only triggers proinflammtory activities but also sensitizes cells for apoptotic and necroptotic cell death. Based on a brief description of the biology of the TWEAK/Fn14 system and Fn14 signaling, we discuss the features of the most relevant Fn14-targeting biologicals and review the preclinical data obtained with these reagents. In particular, we address problems and limitations which became evident in the preclinical studies with Fn14-targeting biologicals and debate possibilities how they could be overcome.
The subclassification of diffuse large B-cell lymphoma (DLBCL) into germinal center B-cell-like (GCB) and activated B-cell-like (ABC) subtypes has become mandatory in the 2017 update of the WHO classification of lymphoid neoplasms and will continue to be used in the WHO 5\(^{th}\) edition. The RNA-based Lymph2Cx assay has been validated as a reliable surrogate of high-throughput gene expression profiling assays for distinguishing between GCB and ABC DLBCL and provides reliable results from formalin-fixed, paraffin-embedded (FFPE) material. This test has been previously used in clinical trials, but experience from real-world routine application is rare. We routinely applied the Lymph2Cx assay to day-to-day diagnostics on a series of 147 aggressive B-cell lymphoma cases and correlated our results with the immunohistochemical subclassification using the Hans algorithm and fluorescence in situ hybridization findings using break-apart probes for MYC, BCL2, and BCL6. The routine use of the Lymph2Cx assay had a high technical success rate (94.6%) with a low rate of failure due to poor material and/or RNA quality. The Lymph2Cx assay was discordant with the Hans algorithm in 18% (23 of 128 cases). Discordant cases were mainly classified as GCB by the Hans algorithm and as ABC by Lymph2Cx (n = 11, 8.6%). Only 5 cases (3.9%) were classified as non-GCB by the Hans algorithm and as GCB by Lymph2Cx. Additionally, 5.5% of cases (n = 7) were left unclassified by Lymph2Cx, whereas they were defined as GCB (n = 4) or non-GCB (n = 3) by the Hans algorithm. Our data support the routine applicability of the Lymph2Cx assay.
Background
Chronic psychological stress is associated with accelerated aging and increased risk for aging-related diseases, but the underlying molecular mechanisms are unclear.
Results
We examined the effect of lifetime stressors on a DNA methylation-based age predictor, epigenetic clock. After controlling for blood cell-type composition and lifestyle parameters, cumulative lifetime stress, but not childhood maltreatment or current stress alone, predicted accelerated epigenetic aging in an urban, African American cohort (n = 392). This effect was primarily driven by personal life stressors, was more pronounced with advancing age, and was blunted in individuals with higher childhood abuse exposure. Hypothesizing that these epigenetic effects could be mediated by glucocorticoid signaling, we found that a high number (n = 85) of epigenetic clock CpG sites were located within glucocorticoid response elements. We further examined the functional effects of glucocorticoids on epigenetic clock CpGs in an independent sample with genome-wide DNA methylation (n = 124) and gene expression data (n = 297) before and after exposure to the glucocorticoid receptor agonist dexamethasone. Dexamethasone induced dynamic changes in methylation in 31.2 % (110/353) of these CpGs and transcription in 81.7 % (139/170) of genes neighboring epigenetic clock CpGs. Disease enrichment analysis of these dexamethasone-regulated genes showed enriched association for aging-related diseases, including coronary artery disease, arteriosclerosis, and leukemias.
Conclusions
Cumulative lifetime stress may accelerate epigenetic aging, an effect that could be driven by glucocorticoid-induced epigenetic changes. These findings contribute to our understanding of mechanisms linking chronic stress with accelerated aging and heightened disease risk.
Growth factor induced signaling cascades are key regulatory elements in tissue development, maintenance and regeneration. Perturbations of these cascades have severe consequences, leading to developmental disorders and neoplastic diseases. As a major function in signal transduction, activating mutations in RAF family kinases are the cause of human tumorigenesis, where B-RAF V600E has been identified as the prevalent mutant. In order to address the oncogenic function of B-RAF V600E, we have generated transgenic mice expressing the activated oncogene specifically in lung alveolar epithelial type II cells. Constitutive expression of B-RAF V600E caused abnormalities in alveolar epithelium formation that led to airspace enlargements. These lung lesions showed signs of tissue remodeling and were often associated with chronic inflammation and low incidence of lung tumors. The inflammatory cell infiltration did not precede the formation of the lung lesions but was rather accompanied with late tumor development. These data support a model where the continuous regenerative process initiated by oncogenic B-RAF-driven alveolar disruption provides a tumor-promoting environment associated with chronic inflammation.
Polyspezifische organische Kationentransporter (OCTs) der SLC22 Familie transportieren organische Kationen entlang eines elektrochemischen Gradienten und spielen eine entscheidende Rolle bei der Ausscheidung und Gewebeverteilung von endogenen organischen Kationen und bei der Aufnahme, Ausscheidung und Verteilung von kationischen Medikamenten und Toxinen. Zu den endogenen transportierten Substanzen gehört auch der Neurotransmitter Acetylcholin (ACh), der unter anderem in der menschlichen Haut eine wichtige Rolle in der Zelldifferenzierung und –proliferation spielt. Die dermatologischen Antiinfektiva Gentianaviolett (GV) und Brillantgrün (BG) aus der Gruppe der Triphenylmethanfarbstoffe werden in der Behandlung lokaler Wundinfektionen verwendet und zeigen im klinischen Gebrauch Nebenwirkungen wie Wundheilungsstörungen. Es konnte gezeigt werden, dass die Farbstoffe die OCTs konzentrationsabhängig hemmen und es wurden die Werte der halbmaximalen Hemmkonzentration ermittelt. Dabei zeigte sich, dass GV und BG zu den Hemmstoffen mit der höchsten Affinität zu den OCTs gehören. Ein Transport der Farbstoffe durch die OCTs konnte nicht nachgewiesen werden, die toxische Wirkung auf Keratinozyten in in-vitro Versuchen mit menschlichen Zellreihen wurde bestätigt. Ein Zusammenhang zwischen den beobachteten Wundheilungsstörungen unter der Therapie mit Triphenylmethanfarbstoffen und der Hemmung des ACh-Transportes durch die OCTs konnte nicht bestätigt werden.
Background:
Sleep-related eating may occur in the context of mental illness, sleep disorders, or psychopharmacological treatment. Frequently, sleep-related eating leads to severe weight gain and, so far, there are no treatment options for the condition.
Case presentation:
We report the case of a 54-year-old white woman with depression, panic disorder, and sleep apnea under treatment with various antidepressants who developed severe sleep-related eating. Her sleep-related eating completely vanished after addition of agomelatine, it reoccurred after cessation of agomelatine, and vanished again after her re-exposure to another melatonergic drug, extended melatonin.
Conclusions:
This case suggests that melatonergic drugs lead to relief from sleep-related eating, even when the condition occurs in the context of physical and mental disorders as well as psychopharmacological treatment.
Die Nikotinamid N-Methyltransferase (NNMT) wurde als wichtiger Regulator des Energiemetabolismus in Fettzellen beschrieben. So bewahrt ein NNMT Knock-down Mäuse vor einer nahrungsinduzierten Adipositas und bei reduzierter NNMT-Expression in weißen 3T3-L1 Adipozyten zeigen diese einen erhöhten zellulären Sauerstoffverbrauch.
Für den Adipozytenstoffwechsel ist die insulinstimulierte Glukoseaufnahme wesentlich. Um den Einfluss eines NNMT-Knock-downs auf diese zu untersuchen wurde unter Nutzung der Substratspezifitäten des prokaryotischen und eukaryotischen Isoenzyms der Glukose-6-phosphat-Dehydrogenase ein enzymatisch-photometrischer Assay zur Messung der Glukoseaufnahmerate in adhärenten weißen 3T3-L1 und braunen Adipozytenkulturen entwickelt.
Mit lentiviraler Transduktion wurde in den Adipozytenkulturen ein persistenter NNMT-Knock-down induziert. Die NNMT-Aktivität wurde mit einem fluoreszenzbasierten Assay gemessen und die Glukoseaufnahmerate in deren Abhängigkeit bestimmt.
Die Reduktion der NNMT-Aktivität verminderte die Glukoseaufnahmerate der 3T3-L1 Adipozyten sowohl basal, wie auch unter Insulinstimulation. Braune Adipozyten hingegen zeigten bei verringerter NNMT-Aktivität eine erhöhte insulinstimulierte Glukoseaufnahmerate, aber keinen Unterschied der basalen Glukoseaufnahmerate.
Dieser differenzielle Einfluss auf die Glukoseaufnahme weißer und brauner Adipozyten stärkt die wichtige Rolle der NNMT, die ihr zur Regulation des Fettzellstoffwechsels zugeschrieben wird und enthüllt erstmals eine direkte Wirkung auf braune Adipozyten.
In der vorliegenden Studie wurde untersucht, ob sich bei Patienten mit Bronchialkarzinom durch eine Second-Line-Chemotherapie mit dem Tyrosinkinaseinhibitor Erlotinib ein Nutzen erzielen lässt. Dabei wurde besonderes Augenmerk auf Faktoren gelegt, die das progressionsfreie Überleben bei diesen Patienten möglicherweise beeinflussen können. Grundlage der Untersuchungen bildete ein Probanden- kollektiv von 42 Patienten, die sich mit der Diagnose nicht-kleinzelliges Bronchialkarzinom bis zum 31.12.2007 einer Second-Line-Chemotherapie mit Erlotinib unterzogen. Zu diesem Stichtag lagen für 23 Patienten Todesdaten vor. Das mediane progressionsfreie Überleben für alle untersuchten 42 Patienten betrug 3,88 Monate, wobei sich die Spanne von 0 bis 21 Monate erstreckte. Im Gesamten zeigten 59,52% der Patienten ein Ansprechen, das heißt, das progressionsfreie Überleben dauerte länger als einen Monat. Folgende allgemeine Patientenmerkmale wurden aus den Krankenblättern erhoben: Geschlecht, Alter, histologische Tumordiagnose, Tumorstadium nach Stadieneinteilung durch die TNM-Klassifikation, Metastasensorte soweit Metastasen vorlagen, Zeitpunkt der Erstdiagnose, Rauchverhalten, Allgemeinzustand nach Karnofsky-Index, Vorerkrankungen, Begleitmedikation, ausgewählte Laborwerte sowie Zeitraum und Art der First-Line-Therapie. Was die Second-Line-Therapie unter Erlotinib betrifft, so wurden hier gezielt im Verlauf die aktuelle Dosis, Änderungen der Begleittherapie, Allgemeinzustand nach Karnofsky-Index, Toxizität (besonderes Augenmerk verdienten Nebenwirkungen an der Haut und im Gastrointestinaltrakt), Auffälligkeiten von einigen Laborwerten und das Tumorverhalten untersucht. Zum Abschluss wurden das Ende der Erlotinibtherapie, Grund des Absetzens, aktueller Stand, eventuell im Anschluss an die Erlotinibtherapie durchgeführte Therapien sowie im Falle des Todes der Todeszeitpunkt erfasst. Im Gesamtüberblick konnten somit das progressionsfreie Überleben unter Erlotinib, die Einnahmedauer des Tyrosinkinaseinhibitors und das absolute Überleben seit der Erstdiagnose festgestellt werden. Hauptziel der Untersuchung war es, herauszufinden, inwiefern unsere Patienten unter Erlotinib im Sinne einer Verlängerung ihres progressionsfreien Überlebens profitieren und welche Faktoren die Ansprechrate beeinflussen. Der Einfluss ausgewählter Merkmale wurde statistisch untersucht. Im Vergleich mit Angaben in der Literatur konnte für das untersuchte Probandenkollektiv eine repräsentative Verteilung der Patientenmerkmale ermittelt und somit eine gewisse Relevanz der Ergebnisse dieser Studie angenommen werden. Statistisch signifikante Unterschiede ergaben sich für folgende Faktoren: Einnahmedauer, Krankheitsverhalten bei Therapiebeginn, Karnofsky-Index während der Behandlung, Nebenwirkungen an der Haut sowie Veränderungen in der Serumchemie. Nonresponder nahmen folglich Erlotinib wie erwartet statistisch signifikant kürzer ein, zeigten zu Beginn der Erlotinibtherapie statistisch signifikant häufiger ein fortschreitendes Krankheitsgeschehen, wiesen während der Therapie statistisch signifikant häufiger einen schlechteren Karnofsky-Index auf, erlitten statistisch signifikant weniger häufig schwere Nebenwirkungen an der Haut (Grad 3 und 4) und ihnen waren statistisch signifikant häufiger Serumwertveränderungen zuzuschreiben. Das prognostische Hauptmerkmal, das sowohl bei unserem Patientengut als auch in der Literatur signifikante Bedeutung hat, ist wohl, dass Responder statistisch signifikant häufiger schwere Nebenwirkungen an der Haut erleiden. Da Auftreten und Schweregrad von follikulären Ekzemen also mit einem positiven Ansprechen von Erlotinib korreliert sind, könnte es vielleicht nützlich sein, wenn man bereits vor Beginn der Erlotinibtherapie vorhersagen könnte, wie wahrscheinlich Patienten solche Nebenwirkungen entwickeln werden. Insgesamt kann man sagen, dass der Einsatz dieser molekular zielgerichteten Substanz zu einer Erweiterung der Therapiemöglichkeiten im palliativen Setting bei Bronchialkarzinompatienten geführt hat. Die Behandlung mit Erlotinib bedeutet ein Benefit für das Gesamtüberleben und das progressionsfreie Überleben bei Patienten mit fortgeschrittenem Bronchialkarzinom, die im Voraus eine Chemotherapie erhalten hatten. Dieses Benefit beschränkt sich nicht auf klinische Subgruppen wie weibliches Geschlecht, Adenokarzinom in der Histologie und Nichtraucher. Diese klinischen Parameter allein sind wohl folglich nicht ausreichend, um Patienten im Vornherein zu identifizieren, die wahrscheinlich von der Therapie profitieren. Vielmehr sind bessere Methoden notwendig, um möglicherweise voraussagen zu können, wer von dem Tyrosinkinaseinhibitor profitieren wird. Hoffnungen ruhen auf der Etablierung molekularer prognostischer und prädiktiver Marker in der klinischen Routine.
Hintergrund: Die Schlafbezogene Atmungsstörung (SBAS) ist eine häufige Komorbidität der systolischen Herzinsuffizienz und mit einer kürzeren Lebenserwartung assoziiert. Es steht derzeit eine Vielzahl einfacher ambulanter SBAS-Screening-Geräte zur Verfügung. Keines davon wurde jedoch bisher für Patienten mit chronischer systolischer Herzinsuffizienz validiert.
Fragestellung: Die vorliegende Untersuchung diente der Prüfung eines einfachen ambulanten SBAS-Screenings hinsichtlich diagnostischer Trennschärfe und prognostischer Relevanz für Patienten mit systolischer Herzinsuffizienz.
Methoden: Bei Patienten mit symptomatischer systolischer Herzinsuffizienz (linksventrikuläre Ejektionsfraktion (LVEF) < 45%, NYHA ≥ II) wurden nächtlicher Atemfluss, Pulsfrequenz und Sauerstoffsättigung mit dem ApneaLinkTM (Fa. ResMed) ambulant aufgezeichnet. Hieraus werden der Apnoe-/Hypopnoe-Index (AHI) sowie der Entsättigungsindex (ODI) berechnet. Die Ergebnisse wurden der Diagnose des Schlafmediziners anhand einer PSG als gültigem Goldstandard der SBAS-Diagnostik gegenübergestellt. Der Überlebensstatus wurde bei allen Patienten durch ambulante bzw. telefonische Nachuntersuchungen erfasst. Mittels ROC-Analysen wurden diagnostische und durch Cox-Regressionen prognostische Schwellenwerte des SBAS-Screenings ermittelt.
Ergebnisse: Insgesamt wurden 131 Patienten eingeschlossen: das mittlere Alter lag bei 68±13 Jahren, 110 Patienten (84%) waren männlich, 53 Patienten (41%) hatten ein NYHA-Stadium ≥3, die mittlere LVEF lag bei 34%. Bei 69 Patienten (53%) konnte eine PSG durchgeführt werden, welche bei 55 Patienten (80%) eine SBAS diagnostizierte. Bei 38 Patienten (55%) lag eine mind. mittelgradige, therapiepflichtige SBAS vor. In ROC-Analysen für ein mind. mittelgradige SBAS ergaben sich AUCs von 0.77; 0.82; 0.81; 0,79 und 0,82 für AHI; ODI; (AHI+ODI)/2; (2xAHI+ODI)/3 und (AHI+2xODI)/3. Die größtmögliche Spezifität (0,90) und Sensitivität (0,66) für die Diagnose einer Therapiepflichtigen SBAS lab bei einem cut-off von (AHI+2xODI)/3 ≥ 21/h. Die mediane Follow-up Zeit der Studie lag bei 23 (18; 27) Monaten; es starben 21 Patienten (16%). Es fand sich eine positive Korrelation zwischen (AHI+2xODI)/3 und Mortalitätsrate. Bereits für den (AHI+2xODI)/3 ≥9/h war die Mortalität signifikant erhöht (3,55 (95%CI: 1.04-12.13) p=0,04).
Schlussfolgerung: Eine therapiepflichtige SBAS lässt durch ein ambulantes Screening zuverlässig diagnostizieren. Dabei ist der ODI dem AHI überlegen. Für die bestmögliche diagnostische Trennschärfe empfehlen wir einen (AHI+2xODI)/3 von 21/h heranzuziehen, wobei bereits ein Wert von 9/h prognostisch relevant ist, so dass bei Patienten mit einem (AHI+2xODI)/3 von 9-20/h zwar auf eine schlafmedizinische Untersuchung verzichtet werden kann, eine engmaschige kardiologische Kontrolle inklusive wiederholten Screenings jedoch unabdingbar bleibt.
Bacteria lose or gain genetic material and through selection, new variants become fixed in the population. Here we provide the first, genome-wide example of a single bacterial strain’s evolution in different deliberately colonized patients and the surprising insight that hosts appear to personalize their microflora. By first obtaining the complete genome sequence of the prototype asymptomatic bacteriuria strain E. coli 83972 and then resequencing its descendants after therapeutic bladder colonization of different patients, we identified 34 mutations, which affected metabolic and virulence-related genes. Further transcriptome and proteome analysis proved that these genome changes altered bacterial gene expression resulting in unique adaptation patterns in each patient. Our results provide evidence that, in addition to stochastic events, adaptive bacterial evolution is driven by individual host environments. Ongoing loss of gene function supports the hypothesis that evolution towards commensalism rather than virulence is favored during asymptomatic bladder colonization.
Viele Studien weisen auf einen Zusammenhang zwischen einer verlängerten QTc-Zeit und dem Auftreten von Torsade-de-Pointes-Tachyarrhythmien und dem plötzlichen Herztod hin. Auch AV-Blockierungen und Schenkelblöcke
erhöhen das Risiko für kardiale Erkrankungen und Ereignisse deutlich. Eine direkte Beziehung zwischen Serumspiegeln der trizyklischen Antidepressiva
und der Verlängerung der PQ-, QRS- oder QTc-Zeit wurde bisher jedoch nicht untersucht.
Aus diesem Anlass wurde in dieser Arbeit nun versucht, eine Korrelation zwischen den Serumspiegeln der trizyklischen Antidepressiva Amitriptylin und
Doxepin bzw. ihrer Metabolite und einigen EKG-Parametern zu identifizieren und zu beschreiben. Hierfür wurden die Daten von 172 Patienten der Klinik und
Poliklinik für Psychiatrie, Psychosomatik und Psychotherapie untersucht, die eine Serumspiegelbestimmung des Talspiegels im Steady-State der TZA einen Tag vor, einen Tag nach oder am selben Tag einer EKG-Ableitung erhalten hatten und
keine pathologischen Elektrolytwerte vorwiesen.
In der Rangkorrelation zeigte sich ein signifikanter positiver Zusammenhang zwischen Nortriptylin-Spiegel und QTcB (r = 0,24; p < 0,05) sowie QTcH (r = 0,205;
p < 0,05), zwischen Nortriptylin und QTcF und QTcLC lag dieser Zusammenhang auf Trendniveau. Zwischen PQ-Zeit und Nortriptylin- (r = 0,226; p < 0,05) sowie
Summenkonzentration (r = 0,195; p < 0,05) zeigte sich ebenfalls ein signifikanter positiver Zusammenhang.
Im Mann-Whitney-U-Test waren die QTc-Zeiten der Patienten mit Summenspiegeln aus Amitriptylin und Nortriptylin jenseits der Warnschwelle
von 300 ng/ml signifikant länger als bei den Patienten mit niedrigeren Summenspiegeln (QTcB = 449 zu 432 ms; QTcF = 423 zu 410 ms; QTcH = 423 zu 410 ms; QTcLC = 421 zu 409 ms; p < 0,05) und auch die PQ-Zeit dieser Gruppe
war signifikant verlängert (PQ = 163 zu 179 ms; p < 0,05). Ähnliches galt für das Patientenkollektiv mit einem Nortriptylin-Spiegel oberhalb des Referenzbereichs von 170 ng/ml. Dieses zeigte signifikant längere
QTc-Zeiten nach allen Korrekturmethoden (QTcB = 457 zu 432 ms; QTcF = 430 zu 409 ms; QTcH = 429 zu 410 ms; QTcLC = 427 zu 409 ms; p < 0,01) und zudem
längere PQ- (164 zu 180 ms; p < 0,05) und QRS-Zeiten (98 zu 107 ms; p = 0,054).
Diese Ergebnisse machen deutlich, dass eine regelmäßige EKG-Kontrolle während der Einnahme von trizyklischen Antidepressiva notwendig ist, um kardiale Nebenwirkungen frühzeitig zu erkennen und diesen vorzubeugen.
Ebenso wichtig sind regelmäßige Serumspiegelbestimmungen, um das Risiko durch erhöhte Serumspiegel jenseits der Warnschwellen bzw. Referenzbereiche frühzeitig zu erkennen. Eine Beachtung der Tagesdosis allein reicht hier explizit nicht aus.