Refine
Has Fulltext
- yes (9)
Is part of the Bibliography
- yes (9)
Document Type
- Journal article (8)
- Doctoral Thesis (1)
Keywords
- ALiOS (1)
- Alkine (1)
- Bor (1)
- CCL3 (1)
- CCL4 (1)
- CCL5 (1)
- Cyclovoltammetrie (1)
- DOTATOC (1)
- Diboration (1)
- Diborierung (1)
Institute
- Institut für Anatomie und Zellbiologie (2)
- Institut für Hygiene und Mikrobiologie (2)
- Medizinische Klinik und Poliklinik I (2)
- Medizinische Klinik und Poliklinik II (2)
- Theodor-Boveri-Institut für Biowissenschaften (2)
- Deutsches Zentrum für Herzinsuffizienz (DZHI) (1)
- Frauenklinik und Poliklinik (1)
- Institut für Anorganische Chemie (1)
- Institut für Experimentelle Biomedizin (1)
- Institut für Sportwissenschaft (1)
Diagnosis of cardiac sarcoidosis is often challenging. Whereas cardiac magnetic resonance imaging (CMR) and positron emission tomography/computed tomography (PET/CT) with \(^{18}\)F-fluorodeoxyglucose (FDG) are most commonly used to evaluate patients, PET/CT using radiolabeled somatostatin receptor (SSTR) ligands for visualization of inflammation might represent a more specific alternative. This study aimed to investigate the feasibility of SSTR–PET/CT for detecting cardiac sarcoidosis in comparison to CMR.
15 patients (6 males, 9 females) with sarcoidosis and suspicion on cardiac involvement underwent SSTR-PET/CT imaging and CMR. Images were visually scored. The AHA 17-segment model of the left myocardium was used for localization and comparison of inflamed myocardium for both imaging modalities. In semi-quantitative analysis, mean (SUV\(_{mean}\)) and maximum standardized uptake values (SUV\(_{max}\)) of affected myocardium were calculated and compared with both remote myocardium and left ventricular (LV) cavity.
SSTR-PET was positive in 7/15, CMR in 10/15 patients. Of the 3 CMR+/PET- subjects, one patient with minor involvement (<25% of wall thickness in CMR) was missed by PET. The remaining two CMR+/PET- patients displayed no adverse cardiac events during follow-up.
In the 17-segment model, PET/CT yielded 27 and CMR 29 positive segments. Overall concordance of the 2 modalities was 96.1% (245/255 segments analyzed). SUV\(_{mean}\) and SUV\(_{max}\) in inflamed areas were 2.0±1.2 and 2.6±1.2, respectively. The lesion-to-remote myocardium and lesion-to-LV cavity ratios were 1.8±0.2 and 1.9±0.2 for SUV\(_{mean}\) and 2.0±0.3 and 1.7±0.3 for SUV\(_{max}\), respectively.
Detection of cardiac sarcoidosis by SSTR-PET/CT is feasible. Our data warrant further analysis in larger prospective series.
Im Rahmen dieser Arbeit wurde die Übergangsmetall-katalysierte Diborierung verschiedener ungesättigter Substrate untersucht. Die Diborierung von Dialkinen ermöglichte die Synthese einer Reihe neuer Verbindungen, welche sich in drei Gruppen einteilen lassen: i) Einkernige [4]Diboradicarbaferrocenophane, die zusätzlich entweder direkt oder über einen Spacer eine CC Dreifachbindung tragen; ii) zweikernige Komplexe, bei denen das [4]Ferrocenophanfragment über die zweite CC Dreifachbindung an ein niedervalentes Platinfragment koordiniert ist und iii) zweikernige Bis [4]diboradicarbaferrocenophane durch die Diborierung beider Dreifachbindungen des Dialkins. Von den vier Vertreter von Gruppe i) ist bei zweien die zweite CC Dreifachbindung direkt an die Bis(boryl)alkeneinheit gebunden, während bei den anderen eine Spacergruppe vorhanden ist. Die Darstellung der Komplexe kann entweder durch katalytische Diborierung der Dialkine durch [Fe{C5H4B(NMe2)}2] oder durch direkte Umsetzung mit [Fe{C5H4B(NMe2)}2Pt(PEt3)2] erfolgen. Hingegen führt die Umsetzung von [Fe{C5H4B(NMe2)}2Pt(PEt3)2] mit äquimolaren Mengen Dialkin zur Bildung der zweiten Verbindungen von Gruppe ii). Hier ist die zweite CC Dreifachbindung an ein [Pt(PEt3)2] Fragment koordiniert, wodurch ein Platinalkinkomplex entsteht. Unter den Produkten der Gruppe iii) sind zuerst die Komplexe zu nennen, die zwei Ferrocenophangruppen tragen. Die so synthetisierten Produkte weisen jeweils zwei chirale Ebenen auf und wurden deshalb als Diastereomerenpaare erhalten. Es konnte gezeigt werden, dass die einzelnen Diastereomere durch Erhitzen in Lösung ineinander umgewandelt werden können. Mittels DFT-Rechnungen konnte zudem ein plausibler Mechanismus aufgedeckt werden. Neben den Bis [4]ferrocenophanen wurde ein Komplex dargestellt, in dem ein [4]Diboradicarbaferrocenophanfragment über eine Spacerfunktion an einen entsprechenden von Bis(benzol)chrom abgeleiteten Metalloarenophanrest gebunden ist. Weiterhin wurden durch Umsetzung von [Pt(PEt3)3] mit den entsprechenden Dialkinen in unterschiedlicher Stöchiometrie jeweils drei einkernige bzw. zweikernige Platinalkinkomplexe sowie ein Platinalkenkomplex synthetisiert. Die IR-spektroskopischen Untersuchungen legen die Formulierung als Platinacyclopropene bzw. Platinacyclopropane nahe. Durch die Diborierung von Isocyaniden konnte unter bemerkenswert milden Reaktionsbedingungen eine Reihe von chiralen, einkernigen Bis(boryl)iminokomplexen dargestellt werden. Die Synthese verläuft entweder durch direkte Umsetzung der Diborane(4) mit den entsprechenden Isocyaniden oder, mit verlängerten Reaktionszeiten auch durch Diborierung der Isocyanide mittels der entsprechenden [3]Metalloarenophane. Durch Umsetzung von [2]Borametalloarenophanen mit Diisocyaniden konnten zudem verschiedene zwei- bzw. dreikernige Bis(boryl)iminokomplexe zugänglich gemacht werden. Die hierzu ausgewählten Diisocyanide tragen wiederum eine Spacereinheit zwischen den beiden NC Funktionalitäten. Genau wie bei den Reaktionen von Dialkinen treten auch hier die Produkte als Paare von Diastereomeren auf. Ein weiteres Projekt beschäftigte sich mit der oxidativen Addition von [Fe{C5H4B(NMe2)}2] an verschiedene Übergangsmetallkomplexe. Die Umsetzungen führten allerdings in keinem Fall zur Bildung der gewünschten Bis(boryl)metallkomplexe. Bei verschiedenen Platinkomplexen kann jedoch die Bildung eines einheitlichen Produkts beobachtet werden. Es wird deshalb in Übereinstimmung mit den spektroskopischen Daten vermutet, dass es sich dabei um ein [2.2]Diboraferrocenophan handelt. Eine saubere Isolierung des Produkts gelingt jedoch nicht, weshalb der strukturelle Nachweis bislang nicht geführt werden kann. Abschließend konnte dabei gezeigt werden, dass mehrtägiges Erhitzen von [Fe{C5H4B(NMe2)}2Pt(PEt3)2] in Lösung hochselektiv zur Bildung des mutmaßlichen [2.2]Diboraferrocenophans führt. Weiterhin ist auch die Umsetzung von [Fe{C5H4B(NMe2)}2] mit katalytischen Mengen [Pt{P(CH2Cy)3}2] erfolgreich, führte jedoch nicht zu einer Isolierung des Produkts in Substanz.
Objective: The assessment of response to lithium maintenance treatment in bipolar disorder (BD) is complicated by variable length of treatment, unpredictable clinical course, and often inconsistent compliance. Prospective and retrospective methods of assessment of lithium response have been proposed in the literature. In this study we report the key phenotypic measures of the "Retrospective Criteria of Long-Term Treatment Response in Research Subjects with Bipolar Disorder" scale currently used in the Consortium on Lithium Genetics (ConLiGen) study.
Materials and Methods: Twenty-nine ConLiGen sites took part in a two-stage case-vignette rating procedure to examine inter-rater agreement [Kappa (\(\kappa\))] and reliability [intra-class correlation coefficient (ICC)] of lithium response. Annotated first-round vignettes and rating guidelines were circulated to expert research clinicians for training purposes between the two stages. Further, we analyzed the distributional properties of the treatment response scores available for 1,308 patients using mixture modeling.
Results: Substantial and moderate agreement was shown across sites in the first and second sets of vignettes (\(\kappa\) = 0.66 and \(\kappa\) = 0.54, respectively), without significant improvement from training. However, definition of response using the A score as a quantitative trait and selecting cases with B criteria of 4 or less showed an improvement between the two stages (\(ICC_1 = 0.71\) and \(ICC_2 = 0.75\), respectively). Mixture modeling of score distribution indicated three subpopulations (full responders, partial responders, non responders).
Conclusions: We identified two definitions of lithium response, one dichotomous and the other continuous, with moderate to substantial inter-rater agreement and reliability. Accurate phenotypic measurement of lithium response is crucial for the ongoing ConLiGen pharmacogenomic study.
Objectives
To assess the impact of HIIT performed at school, i.e. both in connection with physical education (intra-PE) and extracurricular sports activities (extra-PE), on the physical fitness and health of children and adolescents.
Methods
PubMed and SPORTDiscus were searched systematically utilizing the following criteria for inclusion: (1) healthy children and adolescents (5–18 years old) of normal weight; (2) HIIT performed intra- and/or extra-PE for at least 5 days at an intensity ≥ 80% of maximal heart rate (HR\(_{max}\)) or peak oxygen uptake (VO\(_{2peak}\)) or as Functional HIIT; (3) comparison with a control (HIIT versus alternative interventions); and (4) pre- and post-analysis of parameters related to physical fitness and health. The outcomes with HIIT and the control interventions were compared utilizing Hedges’ g effect size (ES) and associated 95% confidence intervals.
Results
Eleven studies involving 707 participants who performed intra-PE and 388 participants extra-PE HIIT were included. In comparison with the control interventions, intra-PE HIIT improved mean ES for neuromuscular and anaerobic performance (ES jump performance: 5.89 ± 5.67 (range 1.88–9.90); ES number of push-ups: 6.22 (range n.a.); ES number of sit-ups: 2.66 ± 2.02 (range 1.24–4.09)), as well as ES fasting glucose levels (− 2.68 (range n.a.)) more effectively, with large effect sizes. Extra-PE HIIT improved mean ES for neuromuscular and anaerobic performance (ES jump performance: 1.81 (range n.a.); ES number of sit-ups: 2.60 (range n.a.)) to an even greater extent, again with large effect sizes. Neither form of HIIT was more beneficial for parameters related to cardiorespiratory fitness than the control interventions.
Conclusion
Compared to other forms of exercise (e.g. low-to-moderate-intensity running or walking), both intra- and extra-PE HIIT result in greater improvements in neuromuscular and anaerobic performance, as well as in fasting levels of glucose in school children.
Ultra-high field cardiac MRI in large animals and humans for translational cardiovascular research
(2023)
A key step in translational cardiovascular research is the use of large animal models to better understand normal and abnormal physiology, to test drugs or interventions, or to perform studies which would be considered unethical in human subjects. Ultrahigh field magnetic resonance imaging (UHF-MRI) at 7 T field strength is becoming increasingly available for imaging of the heart and, when compared to clinically established field strengths, promises better image quality and image information content, more precise functional analysis, potentially new image contrasts, and as all in-vivo imaging techniques, a reduction of the number of animals per study because of the possibility to scan every animal repeatedly. We present here a solution to the dual use problem of whole-body UHF-MRI systems, which are typically installed in clinical environments, to both UHF-MRI in large animals and humans. Moreover, we provide evidence that in such a research infrastructure UHF-MRI, and ideally combined with a standard small-bore UHF-MRI system, can contribute to a variety of spatial scales in translational cardiovascular research: from cardiac organoids, Zebra fish and rodent hearts to large animal models such as pigs and humans. We present pilot data from serial CINE, late gadolinium enhancement, and susceptibility weighted UHF-MRI in a myocardial infarction model over eight weeks. In 14 pigs which were delivered from a breeding facility in a national SARS-CoV-2 hotspot, we found no infection in the incoming pigs. Human scanning using CINE and phase contrast flow measurements provided good image quality of the left and right ventricle. Agreement of functional analysis between CINE and phase contrast MRI was excellent. MRI in arrested hearts or excised vascular tissue for MRI-based histologic imaging, structural imaging of myofiber and vascular smooth muscle cell architecture using high-resolution diffusion tensor imaging, and UHF-MRI for monitoring free radicals as a surrogate for MRI of reactive oxygen species in studies of oxidative stress are demonstrated. We conclude that UHF-MRI has the potential to become an important precision imaging modality in translational cardiovascular research.
Delayed natural killer (NK) cell reconstitution after allogeneic stem cell transplantation (alloSCT) is associated with a higher risk of developing invasive aspergillosis. The interaction of NK cells with the human pathogen Aspergillus (A.) fumigatus is mediated by the fungal recognition receptor CD56, which is relocated to the fungal interface after contact. Blocking of CD56 signaling inhibits the fungal mediated chemokine secretion of MIP-1α, MIP-1β, and RANTES and reduces cell activation, indicating a functional role of CD56 in fungal recognition. We collected peripheral blood from recipients of an allograft at defined time points after alloSCT (day 60, 90, 120, 180). NK cells were isolated, directly challenged with live A. fumigatus germ tubes, and cell function was analyzed and compared to healthy age and gender-matched individuals. After alloSCT, NK cells displayed a higher percentage of CD56\(^{bright}\)CD16\(^{dim}\) cells throughout the time of blood collection. However, CD56 binding and relocalization to the fungal contact side were decreased. We were able to correlate this deficiency to the administration of corticosteroid therapy that further negatively influenced the secretion of MIP-1α, MIP-1β, and RANTES. As a consequence, the treatment of healthy NK cells ex vivo with corticosteroids abrogated chemokine secretion measured by multiplex immunoassay. Furthermore, we analyzed NK cells regarding their actin cytoskeleton by Structured Illumination Microscopy (SIM) and flow cytometry and demonstrate an actin dysfunction of NK cells shown by reduced F-actin content after fungal co-cultivation early after alloSCT. This dysfunction remains until 180 days post-alloSCT, concluding that further actin-dependent cellular processes may be negatively influenced after alloSCT. To investigate the molecular pathomechansism, we compared CD56 receptor mobility on the plasma membrane of healthy and alloSCT primary NK cells by single-molecule tracking. The results were very robust and reproducible between tested conditions which point to a different molecular mechanism and emphasize the importance of proper CD56 mobility.
Pathological angiogenesis promotes tumor growth, metastasis, and atherosclerotic plaque rupture. Macrophages are key players in these processes. However, whether these macrophages differentiate from bone marrow-derived monocytes or from local vascular wall-resident stem and progenitor cells (VW-SCs) is an unresolved issue of angiogenesis. To answer this question, we analyzed vascular sprouting and alterations in aortic cell populations in mouse aortic ring assays (ARA). ARA culture leads to the generation of large numbers of macrophages, especially within the aortic adventitia. Using immunohistochemical fate-mapping and genetic in vivo-labeling approaches we show that 60% of these macrophages differentiate from bone marrow-independent Ly6c\(^{+}\)/Sca-1\(^{+}\) adventitial progenitor cells. Analysis of the NCX\(^{−/-}\) mouse model that genetically lacks embryonic circulation and yolk sac perfusion indicates that at least some of those progenitor cells arise yolk sac-independent. Macrophages represent the main source of VEGF in ARA that vice versa promotes the generation of additional macrophages thereby creating a pro-angiogenetic feedforward loop. Additionally, macrophage-derived VEGF activates CD34\(^{+}\) progenitor cells within the adventitial vasculogenic zone to differentiate into CD31\(^{+}\) endothelial cells. Consequently, depletion of macrophages and VEGFR2 antagonism drastically reduce vascular sprouting activity in ARA. In summary, we show that angiogenic activation induces differentiation of macrophages from bone marrow-derived as well as from bone marrow-independent VW-SCs. The latter ones are at least partially yolk sac-independent, too. Those VW-SC-derived macrophages critically contribute to angiogenesis, making them an attractive target to interfere with pathological angiogenesis in cancer and atherosclerosis as well as with regenerative angiogenesis in ischemic cardiovascular disorders.
High attrition-rates entailed by drug testing in 2D cell culture and animal models stress the need for improved modeling of human tumor tissues. In previous studies our 3D models on a decellularized tissue matrix have shown better predictivity and higher chemoresistance. A single porcine intestine yields material for 150 3D models of breast, lung, colorectal cancer (CRC) or leukemia. The uniquely preserved structure of the basement membrane enables physiological anchorage of endothelial cells and epithelial-derived carcinoma cells. The matrix provides different niches for cell growth: on top as monolayer, in crypts as aggregates and within deeper layers. Dynamic culture in bioreactors enhances cell growth. Comparing gene expression between 2D and 3D cultures, we observed changes related to proliferation, apoptosis and stemness. For drug target predictions, we utilize tumor-specific sequencing data in our in silico model finding an additive effect of metformin and gefitinib treatment for lung cancer in silico, validated in vitro. To analyze mode-of-action, immune therapies such as trispecific T-cell engagers in leukemia, as well as toxicity on non-cancer cells, the model can be modularly enriched with human endothelial cells (hECs), immune cells and fibroblasts. Upon addition of hECs, transmigration of immune cells through the endothelial barrier can be investigated. In an allogenic CRC model we observe a lower basic apoptosis rate after applying PBMCs in 3D compared to 2D, which offers new options to mirror antigen-specific immunotherapies in vitro. In conclusion, we present modular human 3D tumor models with tissue-like features for preclinical testing to reduce animal experiments.
Non-alcoholic fatty liver disease (NAFLD) is rising in prevalence, and a better pathophysiologic understanding of the transition to its inflammatory phenotype (NASH) is key to the development of effective therapies. To evaluate the contribution of the NLRP3 inflammasome and its downstream effectors IL-1 and IL-18 in this process, we applied the true-to-life “American lifestyle-induced obesity syndrome” (ALiOS) diet mouse model. Development of obesity, fatty liver and liver damage was investigated in mice fed for 24 weeks according to the ALiOS protocol. Lipidomic changes in mouse livers were compared to human NAFLD samples. Receptor knockout mice for IL-1 and IL-18 were used to dissect the impact of downstream signals of inflammasome activity on the development of NAFLD. The ALiOS diet induced obesity and liver steatosis. The lipidomic changes closely mimicked changes in human NAFLD. A pro-inflammatory gene expression pattern in liver tissue and increased serum liver transaminases indicated early liver damage in the absence of histological evidence of NASH. Mechanistically, Il-18r\(^{−/−}\)- but not Il-1r\(^{−/−}\) mice were protected from early liver damage, possibly due to silencing of the pro-inflammatory gene expression pattern. Our study identified NLRP3 activation and IL-18R-dependent signaling as potential modulators of early liver damage in NAFLD, preceding development of histologic NASH.