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Vascular guidance is critical in developmental vasculogenesis and pathological angiogenesis. Brain tumors are strongly vascularized, and antiangiogenic therapy was anticipated to exhibit a strong anti-tumor effect in this tumor type. However, vascular endothelial growth factor A (VEGFA) specific inhibition had no significant impact in clinical practice of gliomas. More research is needed to understand the failure of this therapeutic approach. EphrinB2 has been found to directly interact with vascular endothelial growth factor receptor 2 (VEGFR2) and regulate its activity. Here we analyzed the expression of ephrinB2 and EphB4 in human glioma, we observed vascular localization of ephrinB2 in physiology and pathology and found a significant survival reduction in patients with elevated ephrinB2 tumor expression. Induced endothelial specific depletion of ephrinB2 in the adult mouse (efnb2i∆EC) had no effect on the quiescent vascular system of the brain. However, we found glioma growth and perfusion altered in efnb2i∆EC animals similar to the effects observed with antiangiogenic therapy. No additional anti-tumor effect was observed in efnb2i∆EC animals treated with antiangiogenic therapy. Our data indicate that ephrinB2 and VEGFR2 converge on the same pathway and intervention with either molecule results in a reduction in angiogenesis.
In patients with von Willebrand disease (vWD) the interest in age-related comorbidities has grown, because the life expectancy of these patients has increased. The research question of this study was whether patients with vWD show a different endothelial function compared to the general population. A total of 37 patients with type 1 (n = 23), type 2 (n = 10) and type 3 (n = 4) vWD, 14 controls and 38 patients with coronary artery disease (CAD) were included in this study. Five markers of endothelial dysfunction (MOED) were determined. Moreover, the endothelial function was examined using the Itamar Endo-PAT. The reactive hyperemia index (RHI) was calculated from the results. The markers soluble intercellular adhesion molecule-1 (p = 0.171), P-Selectin (p = 0.512), interleukin-6 (p = 0.734) and monocyte chemoattractant protein-1 (p = 0.761) showed higher levels in patients with vWD, but were not significantly different compared to the control group. RHI was impaired in CAD-patients (1.855), whereas vWD patients had mean results of 1.870 and controls 2.112 (p = 0.367). In this study, the endothelial function measurements of patients with von Willebrand disease were not significantly different compared to healthy controls.
Highlights
• Endothelial ageing contributes significantly to atherosclerosis.
• Non-coding RNAs are gaining interest as regulators of vascular biology.
• Several microRNAs regulate endothelial cell ageing.
• Multiple lncRNAs play a role in endothelial cell ageing.
Abstract
Atherosclerosis and numerous other cardiovascular diseases develop in an age-dependent manner. The endothelial cells that line the vessel walls play an important role in the development of atherosclerosis. Non-coding RNA like microRNAs and long non-coding RNAs are known to play an important role in endothelial function and are implicated in the disease progression. Here, we summarize several microRNAs and long non-coding RNAs that are known to have an altered expression with endothelial aging and discuss their role in endothelial cell function and senescence. These processes contribute to aging-induced atherosclerosis development and by targeting the non-coding RNAs controlling endothelial cell function and senescence, atherosclerosis can potentially be attenuated.
Endothelial to mesenchymal transition in cardiovascular disease : JACC state-of-the-art review
(2019)
Endothelial to mesenchymal transition (EndMT) is a process whereby an endothelial cell undergoes a series of molecular events that lead to a change in phenotype toward a mesenchymal cell (e.g., myofibroblast, smooth muscle cell). EndMT plays a fundamental role during development, and mounting evidence indicates that EndMT is involved in adult cardiovascular diseases (CVDs), including atherosclerosis, pulmonary hypertension, valvular disease, and fibroelastosis. Therefore, the targeting of EndMT may hold therapeutic promise for treating CVD. However, the field faces a number of challenges, including the lack of a precise functional and molecular definition, a lack of understanding of the causative pathological role of EndMT in CVDs (versus being a “bystander-phenomenon”), and a lack of robust human data corroborating the extent and causality of EndMT in adult CVDs. Here, we review this emerging but exciting field, and propose a framework for its systematic advancement at the molecular and translational levels.
Endothelial Wnt/β-catenin signaling is necessary for angiogenesis of the central nervous system and blood–brain barrier (BBB) differentiation, but its relevance for glioma vascularization is unknown. In this study, we show that doxycycline-dependent Wnt1 expression in subcutaneous and intracranial mouse glioma models induced endothelial Wnt/β-catenin signaling and led to diminished tumor growth, reduced vascular density, and normalized vessels with increased mural cell attachment. These findings were corroborated in GL261 glioma cells intracranially transplanted in mice expressing dominant-active β-catenin specifically in the endothelium. Enforced endothelial β-catenin signaling restored BBB characteristics, whereas inhibition by Dkk1 (Dickkopf-1) had opposing effects. By overactivating the Wnt pathway, we induced the Wnt/β-catenin–Dll4/Notch signaling cascade in tumor endothelia, blocking an angiogenic and favoring a quiescent vascular phenotype, indicated by induction of stalk cell genes. We show that β-catenin transcriptional activity directly regulated endothelial expression of platelet-derived growth factor B (PDGF-B), leading to mural cell recruitment thereby contributing to vascular quiescence and barrier function. We propose that reinforced Wnt/β-catenin signaling leads to inhibition of angiogenesis with normalized and less permeable vessels, which might prove to be a valuable therapeutic target for antiangiogenic and edema glioma therapy.
Endothelium-dependent vasodilation is thought to be mediated primarily by the NO/cGMP signaling pathway whereas cAMP-elevating vasodilators are considered to act independent of the endothelial cell layer. However, recent functional data suggest that cAMP-elevating vasodilators such as β-receptor agonists, adenosine or forskolin may also be endothelium-dependent. Here we used functional and biochemical assays to analyze endothelium-dependent, cGMP- and cAMP-mediated signaling in rat aorta. Acetylcholine and sodium nitroprusside (SNP) induced a concentration-dependent relaxation of phenylephrine-precontracted aorta. This response was reflected by the phosphorylation of the vasodilator-stimulated phosphoprotein (VASP), a validated substrate of cGMP- and cAMP-dependent protein kinases (cGK, cAK), on Ser157 and Ser239. As expected, the effects of acetylcholine were endothelium-dependent. However, relaxation induced by the β-receptor agonist isoproterenol was also almost completely impaired after endothelial denudation. At the biochemical level, acetylcholine- and isoproterenol-evoked cGK and cAK activation, respectively, as measured by VASP Ser239 and Ser157 phosphorylation, was strongly diminished. Furthermore, the effects of isoproterenol were repressed by eNOS inhibition when endothelium was present. We also observed that the relaxing and biochemical effects of forskolin were at least partially endothelium-dependent. We conclude that cAMP-elevating vasodilators, i.e. isoproterenol and to a lesser extent also forskolin, induce vasodilation and concomitant cyclic nucleotide protein kinase activation in the vessel wall in an endothelium-dependent way.
Ziel der Untersuchungen ist die Klärung der Frage, ob die Inhalation von LPS eine lokale und systemische Inflammation induziert und wenn dies der Fall ist, wie diese Inflammation nachgewiesen werden kann. Insbesondere soll dabei – im Hinblick auf die Ausführungen in der Einleitung – die Frage beantwortet werden, ob eine LPS-Inhalation zu einer signifikant erhöhten NO-Konzentration in der Ausatemluft führt und deren Messung im klinischen Bereich als einfache, aber sichere Methode zum Nachweis einer Inflammation verwendet werden kann. Zur Klärung dieser Fragestellungen wurden insgesamt 30 gesunde junge Erwachsene in die Studie eingeschlossen (10 Männer, 20 Frauen, mittleres Alter 27,7 ± 4,20 Jahren) und wurden mittels LPS provoziert, um einen lokalen Entzündungsreiz zu setzen. Die Dosen des inhalierten LPS wurden alle 30 Minuten gesteigert (2,5 Mikrogramm, 10,5 Mikrogramm, 42 Mikrogramm and 45 Mikrogramm LPS) bis zu einer kumulativen Höchstdosis von 100 Mikrogramm. Im Verlauf der Untersuchung während und nach der LPS-Provokation reagierten 1/3 (10 von 30) aller Probanden mit subjektiven Beschwerden. Drei Probanden klagten über Husten und Brustschmerzen, drei über bronchiale Obstruktion und die restlichen vier über ein Schwächegefühl und Schüttelfrost. Es fanden sich zudem signifikant (p<0,05) erhöhte Temperaturwerte (Median 8h = 36,78 °C vs. Median 0h = 36,17 °C). Als weiteres Zeichen der Entzündung zeigten sich im Labor signifikant erhöhte Leukozyten (Median 24h = 6,22/nl (Range 3,97 – 10,60) vs. Median 0h = 4,93/nl (Range 2,91 – 7,72)), neutrophile Granulozyten (Median 24h = 3,75/nl (Range 1,9 – 7,3) vs. Median 0h = 2,6/nl (Range 1,2 – 5,1)) und CRP Werte (Median 24h = 0,8 mg/dl (Range 0,1 – 3,2) vs. Median 0h = 0,1mg/dl (Range 0,1 – 0,5)). Signifikant ist der Anstieg der LBP Konzentration (Median 24h = 13,05 Mikrogramm/ml (Range 4,6 – 30,4) vs. Median 0h = 5,95 Mikrogramm/ml (Range 2,6 – 12,6)). Obwohl es einen Anstieg der Konzentration der eosinophile Granulozyten gab (Median 24 h = 0,15/nl (Range 0,04 – 0,77) vs. Median 0 h = 0,13/nl (Range 0,05 – 0,43), konnte die Signifikanz in diesem Fall nicht nachgewiesen werden. Die NO-Messungen ergaben als Basis einen NO (Median 24 h = 12,2 ppb (Range 5,7 – 29,5) vs. Median 0 h = 11,00 ppb (Range 5,8 - 26,4 ppb). Somit konnte nach Inhalation mit LPS kein signifikanter Anstieg der Konzentration des exhalierten NO festgestellt werden. Zwar bestätigte sich die Annahme, dass aus einem lokalen Entzündungsreiz eine systemische Inflammation resultiert, die durch die verschiedenen Entzündungsparameter eindeutig nachgewiesen werden konnte. Auch der Nachweis des kausalen Zusammenhangs zwischen dieser systemischen Inflammation und der LPS-Provokation konnte geführt werden. Im Gegensatz dazu konnte im Rahmen dieser Studie nicht gezeigt werden, dass die Inflammation auf einfache Weise zu einer Erhöhung der NO-Konzentration führt.
Stroke patients with proximal occlusions of the main stems of cerebral arteries are no optimal candidates for i. v. thrombolysis. For many years interventional stroke treatment could not be established as alternative. This changed with the introduction of stent retrievers and flexible large lumen aspiration catheters. Randomized trials now proved a significant benefit from intervention for a wide spectrum of severely compromised stroke patients in time windows of up to 8 hrs. However, the randomized trials leave open questions concerning proper patient selection. The benefit for patients with larger infarcts with an ASPECTS between 3 and 5 or patients in time windows above 8 hrs is still uncertain. Especially for critical candidates imaging for reliable detection of the ischemic core and surrounding salvageable brain tissue plays an important role. Technically equivalence between new aspiration techniques as alternative to the use of stent-retrievers is not finally proven. Recanalization of tandem occlusions with the necessity of acute stenting demands better materials for plaque coverage and thrombus withhold. Management of cases with occlusions due to intracranial atherosclerosis is also debatable. The positive trial results provide especially new challenges to establish countrywide neurointerventional services. Even in developed countries recruitment and training of interventional radiologists as well as priority transportation of stroke patients is challenging to organize.
This is an abstract presented in the 33rd Iranian congress of radiology (ICR) and the 15th congress of Iranian radiographic science association (IRSA).
Das Prinzip der endovaskulären Therapie von Aneurysmen mit Platinspiralen hat sich seit seiner Einführung durch Guglielmi 1991 immer mehr als alternatives Verfahren zum neurochirurgischen Clipping etabliert. Insbesondere bei Aneurysmen, die durch den neurochirurgischen Zugang nur schwer zu erreichen sind, hat sich diese Therapieoption bewährt. Neben der Lage spielen auch Größe und Form bei der Entscheidung für das Coiling eine wichtige Rolle. Es ist technisch anspruchsvoll, breitbasige oder besonders kleine Aneurysmen durch dieses Verfahren auszuschalten. Angesichts der aktuellen Datenlage ist es nicht immer möglich, eine zweifelsfreie Entscheidung zu treffen, ob und wie betroffene Patienten bestmöglich behandelt werden sollten. Insbesondere Fragen zur Behandlung und zu Komplikationen bei Aneurysmen ≤ 3 mm sind nicht hinreichend beantwortet, da diese nur in wenigen Studien Gegenstand der Analyse sind. Ziel der vorliegenden Arbeit war es, klinische und bildgebende Ergebnisse von Patienten, die im Institut für Neuroradiologie des Klinikum der Johann Wolfgang Goethe-Universität Frankfurt am Main durch eine endovaskuläre Intervention behandelt wurden, retrospektiv zu analysieren. Insbesondere wurde ein Schwerpunkt auf die Untersuchung der Komplikationsraten und der Aneurysmarupturen gelegt. Dies dient einer erweiterten Einschätzung von Risiko und Nutzen dieser Therapieoption, um eine bestmögliche Beratung und Behandlung der betroffenen Patienten zu gewährleisten.
In der vorliegenden Arbeit wurden 637 endovaskuläre Interventionen betrachtet, die am Institut für Neuroradiologie des Klinikum der Johann Wolfgang Goethe-Universität zwischen Februar 1999 und März 2011 durchgeführt wurden. In diesem Untersuchungszeitraum von 12 Jahren konnten 47 Patienten mit einem Aneurysma ≤ 3 mm in die Studie eingeschlossen werden. Es erfolgte eine retrospektive Datenerhebung mit Hilfe von Krankenakten, radiologischen Befunden und Angiographie-Dokumentationsprotokollen. Die Zusammensetzung des Patientenkollektivs war vergleichbar mit der der bisherigen Literatur. Das Durchschnittsalter des Patientenkollektivs betrug 55 Jahre. 85 % der Patienten waren Frauen. Bei der Häufigkeit des Auftretens an bestimmten Gefäßlokalisationen konnte ein geringer Unterschied festgestellt werden. Während bei ähnlichen Studien der Großteil der Aneurysmen an der ACI gefunden wurde, war in der vorliegenden Arbeit die AcomA am häufigsten betroffen, gefolgt von der ACI. In Bezug auf die Fehlschlagraten sind die Ergebnisse heterogen. In der vorliegenden Studie war es bei 17 % der behandelten Patienten nicht möglich, das Einbringen einer Platinspirale erfolgreich abzuschließen. Ein kompletter Aneurysmaverschluss erfolgte bei 55 % der Patienten. Bei 28 % der Fälle blieb nach der Intervention ein minimaler Halsrest bestehen. Die allgemeine Komplikationsrate betrug 12,8 %. Zu einer durch die Intervention ausgelösten Ruptur kam es in zwei Fällen (4,3 %), wobei dieser Anteil im mittleren Bereich der in der aktuellen Literatur beschriebenen Rupturraten von 0 % bis 11,7 % liegt. Für die Beurteilung des Therapieerfolgs spielt die Verfügbarkeit von Nachkontrollen eine wichtige Rolle. In der vorliegenden Arbeit war es möglich, in 87 % der Fälle Verlaufskontrollen durchzuführen, was Ergebnissen der Literatur entspricht. Die Wiederbehandlungsrate war mit 4,3 % vergleichsweise niedrig. Die Bildung eines Rezidivaneurysmas konnte in einem Fall beobachtet werden. 59 % der Patienten wiesen präoperativ einen Hunt und Hess Grad von 0 bis 2 auf, während es in anderen Arbeiten bis zu 87 % der Patienten waren. Grad 3 lag bei 15 % der Patienten vor, schwer betroffen waren 15 % mit einem Hunt und Hess Grad von 4 und 11 % mit einem von Grad 5. 55,3 % der in der vorliegenden Studie betrachteten Patienten konnten am Ende des Beobachtungszeitraums nach Einschätzung mittels mRS ihren Alltag ohne fremde Hilfe bewältigen (Stadien 0, 1 und 2). 34,0 % der Patienten benötigten fremde Hilfe und 10,9 % verstarben an den Folgen der SAB. Im Gegensatz dazu konnte in anderen Arbeiten ein mRS-Grad von 0-2 in mehr als 75 % gefunden werden. Dies bestärkt die Annahmen, dass ein primär niedriger Hunt und Hess Grad mit einem besseren und ein hoher Hunt und Hess Grad mit einem schlechteren klinischen Verlauf assoziiert sein könnte.
Durch die geringe Größe der Stichprobe und die retrospektive Datenanalyse der vorliegenden Arbeit ist es nicht möglich, zuverlässige allgemein gültige Behandlungsempfehlungen abzuleiten. Hier wurde das eigene Patientenkollektiv detailliert analysiert und die Ergebnisse wurden mit ähnlichen Publikationen verglichen. Weitere prospektiv geplante Studien sind sinnvoll.
Aus der zusammenfassenden Betrachtung der Ergebnisse lässt sich schließen, dass mit den momentan verfügbaren Mitteln bei ausreichender Erfahrung des behandelnden Neuroradiologen eine relativ sichere endovaskuläre Behandlung von sehr kleinen Aneurysmen möglich ist. Neben der Erfahrenheit des interventionellen Neuroradiologen kann die Weiterentwicklung der eingesetzten Materialien wie Coils, Stents, Ballons und Mikrokatheter zur Minimierung des Komplikationsrisikos beitragen.
Management of decompensated cirrhosis is currently geared towards the treatment of complications once they occur. To date there is no established disease-modifying therapy aimed at halting progression of the disease and preventing the development of complications in patients with decompensated cirrhosis. The design of clinical trials to investigate new therapies for patients with decompensated cirrhosis is complex. The population of patients with decompensated cirrhosis is heterogeneous (i.e., different etiologies, comorbidities and disease severity), leading to the inclusion of diverse populations in clinical trials. In addition, primary endpoints selected for trials that include patients with decompensated cirrhosis are not homogeneous and at times may not be appropriate. This leads to difficulties in comparing results obtained from different trials. Against this background, the LiverHope Consortium organized a meeting of experts, the goal of which was to develop recommendations for the design of clinical trials and to define appropriate endpoints, both for trials aimed at modifying the natural history and preventing progression of decompensated cirrhosis, as well as for trials aimed at managing the individual complications of cirrhosis.
Despite multimodal regimens and diverse treatment options alleviating disease symptoms, morbidity and mortality associated with advanced ischemic heart failure remain high. Recently, technological innovation has led to the development of regenerative therapeutic interventions aimed at halting or reversing the vicious cycle of heart failure progression. Driven by the unmet patient need and fueled by encouraging experimental studies, stem cell-based clinical trials have been launched over the past decade. Collectively, these trials have enrolled several thousand patients and demonstrated the clinical feasibility and safety of cell-based interventions. However, the totality of evidence supporting their efficacy in ischemic heart failure remains limited. Experience from the early randomized stem cell clinical trials underscores the key points in trial design ranging from adequate hypothesis formulation to selection of the optimal patient population, cell type and delivery route. Importantly, to translate the unprecedented promise of regenerative biotherapies into clinical benefit, it is crucial to ensure the appropriate choice of endpoints along the regulatory path. Accordingly, we here provide considerations relevant to the choice of endpoints for regenerative clinical trials in the ischemic heart failure setting.
Electrocardiograms (ECG) record the heart activity and are the most common and reliable method to detect cardiac arrhythmias, such as atrial fibrillation (AFib). Lately, many commercially available devices such as smartwatches are offering ECG monitoring. Therefore, there is increasing demand for designing deep learning models with the perspective to be physically implemented on these small portable devices with limited energy supply. In this paper, a workflow for the design of small, energy-efficient recurrent convolutional neural network (RCNN) architecture for AFib detection is proposed. However, the approach can be well generalized to every type of long time series. In contrast to previous studies, that demand thousands of additional network neurons and millions of extra model parameters, the logical steps for the generation of a CNN with only 114 trainable parameters are described. The model consists of a small segmented CNN in combination with an optimal energy classifier. The architectural decisions are made by using the energy consumption as a metric in an equally important way as the accuracy. The optimization steps are focused on the software which can be embedded afterwards on a physical chip. Finally, a comparison with some previous relevant studies suggests that the widely used huge CNNs for similar tasks are mostly redundant and unessentially computationally expensive.
Electrocardiograms (ECG) record the heart activity and are the most common and reliable method to detect cardiac arrhythmias, such as atrial fibrillation (AFib). Lately, many commercially available devices such as smartwatches are offering ECG monitoring. Therefore, there is increasing demand for designing deep learning models with the perspective to be physically implemented on these small portable devices with limited energy supply. In this paper, a workflow for the design of small, energy-efficient recurrent convolutional neural network (RCNN) architecture for AFib detection is proposed. However, the approach can be well generalized to every type of long time series. In contrast to previous studies, that demand thousands of additional network neurons and millions of extra model parameters, the logical steps for the generation of a CNN with only 114 trainable parameters are described. The model consists of a small segmented CNN in combination with an optimal energy classifier. The architectural decisions are made by using the energy consumption as a metric in an equally important way as the accuracy. The optimisation steps are focused on the software which can be embedded afterwards on a physical chip. Finally, a comparison with some previous relevant studies suggests that the widely used huge CNNs for similar tasks are mostly redundant and unessentially computationally expensive.
Objectives: The aim of our study was to find out how much energy is applicable in second-generation dual source high-pitch computed tomography (CT) in imaging of the abdomen.
Materials and methods: We examined an upper abdominal phantom using a Somatom Definition Flash CT-Scanner (Siemens, Forchheim, Germany). The study protocol consisted of a scan-series at 100 kV and 120 kV. In each scan series we started with a pitch of 3.2 and reduced it in steps of 0.2, until a pitch of 1.6 was reached. The current was adjusted to the maximum the scanner could achieve. Energy values, image noise, image quality, and radiation exposure were evaluated.
Results: For a pitch of 3.2 the maximum applicable current was 142 mAs at 120 kV and in 100 kV the maximum applicable current was 114 mAs. For conventional abdominal imaging, current levels of 200 to 260 mAs are generally used. To achieve similar current levels, we had to decrease the pitch to 1.8 at 100 kV - at this pitch we could perform our imaging at 204 mAs. At a pitch of 2.2 in 120 kV we could apply a current of 206 mAs.
Conclusion: We conclude our study by stating that if there is a need for a higher current, we have to reduce the pitch. In a high-pitch dual source CT, we always have to remember where our main focus is, so we can adjust the pitch to the energy we need in the area of the body that has to be imaged, to find answers to the clinical question being raised.
The main goal of the present study was the identification of cellular phenotypes in attention-deficit-/hyperactivity disorder (ADHD) patient-derived cellular models from carriers of rare copy number variants (CNVs) in the PARK2 locus that have been previously associated with ADHD. Human-derived fibroblasts (HDF) were cultured and human-induced pluripotent stem cells (hiPSC) were reprogrammed and differentiated into dopaminergic neuronal cells (mDANs). A series of assays in baseline condition and in different stress paradigms (nutrient deprivation, carbonyl cyanide m-chlorophenyl hydrazine (CCCP)) focusing on mitochondrial function and energy metabolism (ATP production, basal oxygen consumption rates, reactive oxygen species (ROS) abundance) were performed and changes in mitochondrial network morphology evaluated. We found changes in PARK2 CNV deletion and duplication carriers with ADHD in PARK2 gene and protein expression, ATP production and basal oxygen consumption rates compared to healthy and ADHD wildtype control cell lines, partly differing between HDF and mDANs and to some extent enhanced in stress paradigms. The generation of ROS was not influenced by the genotype. Our preliminary work suggests an energy impairment in HDF and mDAN cells of PARK2 CNV deletion and duplication carriers with ADHD. The energy impairment could be associated with the role of PARK2 dysregulation in mitochondrial dynamics.
Although the human immune response to cancer is naturally potent, it can be severely disrupted as a result of an immunosuppressive tumor microenvironment. Infiltrating regulatory T lymphocytes contribute to this immunosuppression by inhibiting proliferation of cytotoxic CD8+ T lymphocytes, which are key to an effective anti-cancer immune response. Other important contributory factors are thought to include metabolic stress caused by the local nutrient deprivation common to many solid tumors. Interleukin-33 (IL-33), an alarmin released in reaction to cell damage, and sphingosine-1-phosphate (S1P) are known to control cell positioning and differentiation of T lymphocytes. In an in vitro model of nutrient deprivation, we investigated the influence of IL-33 and S1P receptor 4 (S1P4) on the differentiation and migration of human CD8+ T lymphocytes. Serum starvation of CD8+ T lymphocytes induced a subset of CD8Low and IL-33 receptor-positive (ST2L+) cells characterized by enhanced expression of the regulatory T cell markers CD38 and CD39. Both S1P1 and S1P4 were transcriptionally regulated after stimulation with IL-33. Moreover, expression of the chemokine receptor CXCR4 was increased in CD8+ T lymphocytes treated with the selective S1P4 receptor agonist CYM50308. We conclude that nutrient deprivation promotes CD8Low T lymphocytes, contributing to an immunosuppressive microenvironment and a poor anti-cancer immune response by limiting cytotoxic effector functions. Our results suggest that S1P4 signaling modulation may be a promising target for anti-CXCR4 cancer immunotherapy.
Humanized mouse models have become increasingly valuable tools to study human hematopoiesis and infectious diseases. However, human T cell differentiation remains inefficient. We generated mice expressing human interleukin (IL-7), a critical growth and survival factor for T cells, under the control of murine IL-7 regulatory elements. After transfer of human cord blood-derived hematopoietic stem and progenitor cells, transgenic mice on the NSGW41 background, termed NSGW41hIL7, showed elevated and prolonged human cellularity in the thymus while maintaining physiological ratios of thymocyte subsets. As a consequence, numbers of functional human T cells in the periphery were increased without evidence for pathological lymphoproliferation or aberrant expansion of effector or memory-like T cells. We conclude that the novel NSGW41hIL7 strain represents an optimized mouse model for humanization to better understand human T cell differentiation in vivo and to generate a human immune system with a better approximation of human lymphocyte ratios.
umanized mouse models have become increasingly valuable tools to study human hematopoiesis and infectious diseases. However, human T-cell differentiation remains inefficient. We generated mice expressing human interleukin-7 (IL-7), a critical growth and survival factor for T cells, under the control of murine IL-7 regulatory elements. After transfer of human cord blood-derived hematopoietic stem and progenitor cells, transgenic mice on the NSGW41 background, termed NSGW41hIL7, showed elevated and prolonged human cellularity in the thymus while maintaining physiological ratios of thymocyte subsets. As a consequence, numbers of functional human T cells in the periphery were increased without evidence for pathological lymphoproliferation or aberrant expansion of effector or memory-like T cells. We conclude that the novel NSGW41hIL7 strain represents an optimized mouse model for humanization to better understand human T-cell differentiation in vivo and to generate a human immune system with a better approximation of human lymphocyte ratios.
Throughout the entire life, new neurons of the granule cell type (GCs) are continu-ously generated in the mammalian hippocampal dentate gyrus (DG). As a part of the limbic system, the hippocampus is concerned with spatial and declarative memory for-mation. Increasing evidence exists, that adult born granule cells (ABGCs) play an im-portant role in this process. An especially critical period, when these ABGCs are 4-6 weeks old, has come into the focus of research. It is during this specific time-span that the ABGCs express enhanced excitability and synaptic plasticity as well as a lowered threshold for the induction of long term potentiation (LTP), a mechanism associated to learning and memory formation.
This study investigates the time course and dynamics of synaptic integration in ABGCs and mature GCs together with which differences exist between them at various cell ages. Furthermore, spine plasticity following high frequency stimulation (HFS) is analysed focusing on a critical phase of enhanced excitability in 4-5 week old ABGCs.
In this thesis, two approaches at studying the synaptic integration and structural plas-ticity of ABGCs in rats were investigated. This work was performed on fixed brain ma-terial that was provided by two laboratories that performed the in vivo labelling, stimu-lation procedures and brain fixation. In the first project, 6, 12 and 35 weeks old XdU-labelled ABGCs were studied. Adult rats were exposed to an enriched environment and received unilateral intrahippocampal delta burst stimulation (DBS) and LTP induction. The ABGCs and a control population of mature GCs were immunohistologically ana-lysed for Egr1 (early growth response 1) expression. Egr1 is an immediate early gene (IEG), expressed after LTP induction and marks neuronal excitation.
It was found, that unilateral stimulation of the perforant path of the hippocampus re-sults in an increase of Egr1 expression in ABGCs of both hemispheres. It could be shown that the enhanced expression intensity of Egr1 in ABGCs is not a usual state of young GCs but a reaction to DBS. ABGCs from unstimulated control animals and mature GCs expressed lower levels of Egr1. Interestingly, the stimulation induced a similar degree of Egr1 expression intensity in all ABGC age groups. Furthermore, it was found that young ABGC from the infrapyramidal dentate gyrus (DG) express a higher excita-bility than those from the suprapyramidal DG.
In the second project, fixed brain sections were analysed. They stemmed from rat brains containing 28 and 35 day old ABGC that had been transfected with intrahippo-campal RV-GFP (retroviral-green fluorescent protein) injections and had received uni-lateral high frequency stimulation of the medial perforant path in vivo. Nuclear Egr1 expression intensity was analysed in a cell specific manner. Dendritic spine size was measured in the inner-, middle- and outer molecular layer (IML, MML, OML). It was found that in ABGC, stimulation induced Egr1 expression increase is lower than in ma-ture GC. Following HFS, a significant homosynaptic spine enlargement was observed in the MML indicating homosynaptic LTP, while heterosynaptic spine shrinkage was found in the adjacent IML and OML. The latter corresponds to heterosynaptic long term depression (LTD). Homosynaptic plasticity describes an input-specific potentiation of synapses that received direct activation. The weakening of synapses not stimulated dur-ing homosynaptic potentiation is oppositely coined heterosynaptic plasticity1.
A positive correlation between an increase in nuclear Egr1 expression intensity and spine enlargement due to homosynaptic plasticity induced by HFS could be shown. Concomitant heterosynaptic plasticity, as indicated by spine shrinkage was observed. Spine shrinkage in the IML and OML showed a negative correlation to a decrease in Egr1 intensity.
Taken together, the results provide detailed information on the gradual integration of ABGC with ongoing maturation. Cell specific proof for homo- and heterosynaptic plas-ticity following HFS was found in the critical period of synaptic integration of ABGCs.
Gene trapping is used to introduce insertional mutations into genes of mouse embryonic stem cells (ESCs). It is performed with gene trap vectors that simultaneously mutate and report the expression of the endogenous gene at the site of insertion and provide a DNA tag for rapid identification of the disrupted gene. Gene traps have been employed worldwide to assemble libraries of mouse ESC lines harboring mutations in single genes, which can be used to make mutant mice. However, most of the employed gene trap vectors require gene expression for reporting a gene trap event and therefore genes that are poorly expressed may be under-represented in the existing libraries. To address this problem, we have developed a novel class of gene trap vectors that can induce gene expression at insertion sites, thereby bypassing the problem of intrinsic poor expression. We show here that the insertion of the osteopontin enhancer into several conventional gene trap vectors significantly increases the gene trapping efficiency in high-throughput screens and facilitates the recovery of poorly expressed genes.