TY - JOUR A1 - Krämer, Johannes A1 - Bijnens, Bart A1 - Störk, Stefan A1 - Ritter, Christian O. A1 - Liu, Dan A1 - Ertl, Georg A1 - Wanner, Christoph A1 - Weidemann, Frank T1 - Left ventricular geometry and blood pressure as predictors of adverse progression of Fabry cardiomyopathy JF - PLoS ONE N2 - Background In spite of several research studies help to describe the heart in Fabry disease (FD), the cardiomyopathy is not entirely understood. In addition, the impact of blood pressure and alterations in geometry have not been systematically evaluated. Methods In 74 FD patients (mean age 36±12 years; 45 females) the extent of myocardial fibrosis and its progression were quantified using cardiac magnetic-resonance-imaging with late enhancement technique (LE). Results were compared to standard echocardiography complemented by 2D-speckle-tracking, 3D-sphericity-index (SI) and standardized blood pressure measurement. At baseline, no patient received enzyme replacement therapy (ERT). After 51±24 months, a follow-up examination was performed. Results Systolic blood pressure (SBP) was higher in patients with vs. without LE: 123±17 mmHg vs. 115±13 mmHg; P = 0.04. A positive correlation was found between SI and the amount of LE-positive myocardium (r = 0.51; P<0.001) indicating an association of higher SI in more advanced stages of the cardiomyopathy. SI at baseline was positively associated with the increase of LE-positive myocardium during follow-up. The highest SBP (125±19 mmHg) and also the highest SI (0.32±0.05) was found in the subgroup with a rapidly increasing LE (ie, ≥0.2% per year; n = 16; P = 0.04). Multivariate logistic regression analysis including SI, SBP, EF, left ventricular volumes, wall thickness and NT-proBNP adjusted for age and sex showed SI as the most powerful parameter to detect rapid progression of LE (AUC = 0.785; P<0.05). Conclusions LV geometry as assessed by the sphericity index is altered in relation to the stage of the Fabry cardiomyopathy. Although patients with FD are not hypertensive, the SBP has a clear impact on the progression of the cardiomyopathy. KW - cardiovascular magnetic resonance KW - clinical manifestations KW - disease KW - identification KW - fibrosis KW - 2-dimensional speckle tracking KW - myocardial infarction KW - therapy KW - diagnosis KW - impact Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145131 VL - 10 IS - 11 ER - TY - JOUR A1 - Nanda, Indrajit A1 - Schröder, Sarah K. A1 - Steinlein, Claus A1 - Haaf, Thomas A1 - Buhl, Eva M. A1 - Grimm, Domink G. A1 - Weiskirchen, Ralf T1 - Rat hepatic stellate cell line CFSC-2G: genetic markers and short tandem repeat profile useful for cell line authentication JF - Cells N2 - Hepatic stellate cells (HSCs) are also known as lipocytes, fat-storing cells, perisinusoidal cells, or Ito cells. These liver-specific mesenchymal cells represent about 5% to 8% of all liver cells, playing a key role in maintaining the microenvironment of the hepatic sinusoid. Upon chronic liver injury or in primary culture, these cells become activated and transdifferentiate into a contractile phenotype, i.e., the myofibroblast, capable of producing and secreting large quantities of extracellular matrix compounds. Based on their central role in the initiation and progression of chronic liver diseases, cultured HSCs are valuable in vitro tools to study molecular and cellular aspects of liver diseases. However, the isolation of these cells requires special equipment, trained personnel, and in some cases needs approval from respective authorities. To overcome these limitations, several immortalized HSC lines were established. One of these cell lines is CFSC, which was originally established from cirrhotic rat livers induced by carbon tetrachloride. First introduced in 1991, this cell line and derivatives thereof (i.e., CFSC-2G, CFSC-3H, CFSC-5H, and CFSC-8B) are now used in many laboratories as an established in vitro HSC model. We here describe molecular features that are suitable for cell authentication. Importantly, chromosome banding and multicolor spectral karyotyping (SKY) analysis demonstrate that the CFSC-2G genome has accumulated extensive chromosome rearrangements and most chromosomes exist in multiple copies producing a pseudo-triploid karyotype. Furthermore, our study documents a defined short tandem repeat (STR) profile including 31 species-specific markers, and a list of genes expressed in CFSC-2G established by bulk mRNA next-generation sequencing (NGS). KW - liver KW - extracellular matrix KW - hepatic stellate cell KW - myofibroblast KW - fibrosis KW - stress fibers KW - spectral karyotyping KW - rhodamine–phalloidin stain KW - next-generation sequencing KW - STR profile Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288067 SN - 2073-4409 VL - 11 IS - 18 ER - TY - JOUR A1 - Nanda, Indrajit A1 - Steinlein, Claus A1 - Haaf, Thomas A1 - Buhl, Eva M. A1 - Grimm, Domink G. A1 - Friedman, Scott L. A1 - Meurer, Steffen K. A1 - Schröder, Sarah K. A1 - Weiskirchen, Ralf T1 - Genetic characterization of rat hepatic stellate cell line HSC-T6 for in vitro cell line authentication JF - Cells N2 - Immortalized hepatic stellate cells (HSCs) established from mouse, rat, and humans are valuable in vitro models for the biomedical investigation of liver biology. These cell lines are homogenous, thereby providing consistent and reproducible results. They grow more robustly than primary HSCs and provide an unlimited supply of proteins or nucleic acids for biochemical studies. Moreover, they can overcome ethical concerns associated with the use of animal and human tissue and allow for fostering of the 3R principle of replacement, reduction, and refinement proposed in 1959 by William M. S. Russell and Rex L. Burch. Nevertheless, working with continuous cell lines also has some disadvantages. In particular, there are ample examples in which genetic drift and cell misidentification has led to invalid data. Therefore, many journals and granting agencies now recommend proper cell line authentication. We herein describe the genetic characterization of the rat HSC line HSC-T6, which was introduced as a new in vitro model for the study of retinoid metabolism. The consensus chromosome markers, outlined primarily through multicolor spectral karyotyping (SKY), demonstrate that apart from the large derivative chromosome 1 (RNO1), at least two additional chromosomes (RNO4 and RNO7) are found to be in three copies in all metaphases. Additionally, we have defined a short tandem repeat (STR) profile for HSC-T6, including 31 species-specific markers. The typical features of these cells have been further determined by electron microscopy, Western blotting, and Rhodamine-Phalloidin staining. Finally, we have analyzed the transcriptome of HSC-T6 cells by mRNA sequencing (mRNA-Seq) using next generation sequencing (NGS). KW - liver KW - extracellular matrix KW - hepatic stellate cell KW - myofibroblast KW - fibrosis KW - in vitro model KW - SKY analysis KW - phalloidin stain KW - next generation sequencing KW - STR profile Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-275178 SN - 2073-4409 VL - 11 IS - 11 ER - TY - THES A1 - Niemann, Markus T1 - Der Einfluss langjähriger Enzymersatztherapie auf die Morphologie und Funktion des linken Ventrikels bei Patienten mit Morbus Fabry T1 - Long Term Effects of Enzyme Replacement Therapy on Fabry Cardiomyopathy N2 - Der Morbus Fabry ist eine X-chromosomal rezessive lysosomale Speicherkrankheit, es resultiert eine verminderte Aktivität des Enzyms alpha-Galaktosidase-A. Diese führt zu einer Einlagerung von Globotriaosylceramiden in verschiedenen Organsystemen. Neben Niere und Nervensystem ist das Herz einer der Hauptmanifestationsorte der Erkrankung. Der Morbus Fabry führt unbehandelt zu einer ventrikulären Hypertrophie, verminderten linksventrikulären Funktion und schließlich zu einer myokardialen Fibrosierung. Viele Patienten sterben aufgrund einer progredienten Herzinsuffizienz. Seit 2001 steht mit der Enzymersatztherapie (ERT), die alpha-Galaktosidase substituiert, eine kausale Behandlung des Enzymdefekts zur Verfügung. Erste, auf einen kurzen Zeitraum (bis zu 12 Monate) angelegte, klinische Studien bei Patienten mit Morbus Fabry haben positive Effekte in Hinblick auf die Funktion und Morphologie des Herzens bei Fabry-Patienten gezeigt. Jedoch zeigten die untersuchten Patienten untereinander oft deutlich unterschiedliche Therapieeffekte. Die Langzeiteffekte einer Enzymersatztherapie, insbesondere in Hinblick auf eine zunehmende Fibrosierung des Herzens als Prognose-Parameter im Laufe der Erkrankung, wurden bisher nicht untersucht. Auch fehlen Daten für eine Aussage über den frühestnötigen Therapiezeitpunkt. Diese Untersuchungen erfolgen zum ersten Mal im Rahmen dieser Studie. Es wurden 30 Patienten (42±7 Jahre) mit genetisch gesichertem Morbus Fabry vor Therapie und nach 1, 2 und 3 Jahren unter Enzymersatztherapie untersucht. Behandelt wurde mit 1.0 mg/kg Körpergewicht rekombinanter alpha-Galaktosidase A (agalsidase ß, Fabrazyme®). Es erfolgten Magnetresonanztomographie- und echokardiographische Untersuchungen. Die echokardiographischen Untersuchungsergebnisse wurden mit einer Kohorte von 20 Herzgesunden verglichen. Neben der Bestimmung echokardiographischer Standardwerte wie der Septum- und Hinterwandstärke und der diastolischen Funktion erfolgte eine Evaluierung der regionalen myokardialen Funktion mittels Gewebedoppler (Strain und Strain Rate Imaging sowie Double Peak-Technik). Im Magnetresonanztomographen (MRT) erfolgte die Detektion eines eventuellen Late Enhancements als Marker für myokardiale Fibrose. Die Patienten wurden anhand des Late Enhancements im MRT in drei Gruppen eingeteilt: Keine Fibrose (n=12), Fibrose in einer (n=9) und Fibrose in mehreren Regionen (n=9). Nur die Gruppe, die Baseline keine Fibrose aufwies zeigte unter dreijähriger ERT eine Normalisierung der Wanddicke und eine funktionelle Normalisierung der regionalen Herzfunktion (Strain Rate radial: von 2,3±0,4s-1 auf 2,9±0,7s-1; p<0,05; Vergleichskollektiv: 2,8±0,5s-1). Die anderen beiden Gruppen zeigten zwar einen Rückgang der Hypertrophie, hinsichtlich der Herzfunktion konnten sie jedoch bei bereits deutlich erniedrigten Funktionswerten zum Baseline-Zeitpunkt lediglich stabilisiert werden. Bei rechtzeitigem Therapiebeginn scheint die Enzymersatztherapie eine effektive Behandlung des Herzens bei Morbus Fabry zu ermöglichen. Diese Langzeitstudie zur Enzymersatztherapie bei Morbus Fabry über 3 Jahre zeigt jedoch deutlich, dass dies nur bei noch nicht fibrotisch verändertem Herzen gilt. Die Indikation zur Enzymersatztherapie sollte daher aus kardiologischer Sicht frühzeitig gestellt werden. N2 - Background: Fabry disease is a lysosomal storage disorder which is caused by a deficiency of alpha-galactosidase A. The lack of the enzyme leads to left ventricular hypertrophy, loss of function and in the end myocardial fibrosis. Enzyme replacement therapy (ERT) with recombinant alpha-Galactosidase A reduces left ventricular (LV) hypertrophy and improves regional myocardial function in patients with Fabry disease during short term treatment. Whether ERT is effective in all stages of Fabry cardiomyopathy during long term follow up is unknown. Methods and Results: We studied 30 Fabry patients over a period of three years regarding disease progression and clinical outcome under ERT. Regional myocardial fibrosis was assessed by magnetic resonance imaging late enhancement technique. Left ventricular hypertrophy was assessed using echocardiography, and myocardial function was quantified by ultrasonic strain rate imaging. All measurements were repeated at yearly intervals. At baseline, 9 patients demonstrated at least two fibrotic LV segments (severe myocardial fibrosis), 9 had one LV segment affected (mild fibrosis) and 12 patients were without fibrosis. In patients without fibrosis, ERT resulted in a significant reduction of LV hypertrophy and an improvement of myocardial function. In contrast, patients with mild or severe fibrosis showed a minor reduction in LV hypertrophy and no improvement of myocardial function. Conclusions: These data suggest that treatment of Fabry cardiomyopathy with recombinant alpha-Galactosidase A should best be started before myocardial fibrosis has developed in order to achieve long term improvement of myocardial morphology, function and exercise capacity. KW - Doppler-Echokardiographie KW - Ultraschallkardiographie KW - Fabry-Krankheit KW - Herzmuskelkrankheit KW - Enzym-Ersatz-Therapie KW - Fibrose KW - Magnetresonanztomographie KW - Fabry disease KW - echocardiography KW - enzyme replacement therapy KW - fibrosis KW - MRI Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-35710 ER - TY - JOUR A1 - Weidemann, Frank A1 - Sanchez-Nino, Maria D. A1 - Politei, Juan A1 - Oliveira, João-Paulo A1 - Wanner, Christoph A1 - Warnock, David G. A1 - Oritz, Alberto T1 - Fibrosis: a key feature of Fabry disease with potential therapeutic implications JF - Orphanet Journal of Rare Diseases N2 - Fabry disease is a rare X-linked hereditary disease caused by mutations in the AGAL gene encoding the lysosomal enzyme alpha-galactosidase A. Enzyme replacement therapy (ERT) is the current cornerstone of Fabry disease management. Involvement of kidney, heart and the central nervous system shortens life span, and fibrosis of these organs is a hallmark of the disease. Fibrosis was initially thought to result from tissue ischemia secondary to endothelial accumulation of glycosphingolipids in the microvasculature. However, despite ready clearance of endothelial deposits, ERT is less effective in patients who have already developed fibrosis. Several potential explanations of this clinical observation may impact on the future management of Fabry disease. Alternative molecular pathways linking glycosphingolipids and fibrosis may be operative; tissue injury may recruit secondary molecular mediators of fibrosis that are unresponsive to ERT, or fibrosis may represent irreversible tissue injury that limits the therapeutic response to ERT. We provide an overview of Fabry disease, with a focus on the assessment of fibrosis, the clinical consequences of fibrosis, and recent advances in understanding the cellular and molecular mechanisms of fibrosis that may suggest novel therapeutic approaches to Fabry disease. KW - Fabry KW - fibrosis KW - podocyte KW - Lyso-Gb3 KW - kidney KW - enzyme replacement therapy KW - alpha-galactosidase-A KW - focal semental glomerulosclerosis KW - cardiovascular magnetic-resonance KW - left-ventricular hypertrophy KW - biopsy findings KW - agalsidase-beta KW - natural-history data KW - cardiac energy metabolism KW - randomized controlled trial Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-124773 SN - 1750-1172 VL - 8 IS - 116 ER - TY - JOUR A1 - Weiß, Emil A1 - Ramos, Gustavo Campos A1 - Delgobo, Murilo T1 - Myocardial-Treg crosstalk: How to tame a wolf JF - Frontiers in Immunology N2 - The immune system plays a vital role in maintaining tissue integrity and organismal homeostasis. The sudden stress caused by myocardial infarction (MI) poses a significant challenge for the immune system: it must quickly substitute dead myocardial with fibrotic tissue while controlling overt inflammatory responses. In this review, we will discuss the central role of myocardial regulatory T-cells (Tregs) in orchestrating tissue repair processes and controlling local inflammation in the context of MI. We herein compile recent advances enabled by the use of transgenic mouse models with defined cardiac antigen specificity, explore whole-heart imaging techniques, outline clinical studies and summarize deep-phenotyping conducted by independent labs using single-cell transcriptomics and T-cell repertoire analysis. Furthermore, we point to multiple mechanisms and cell types targeted by Tregs in the infarcted heart, ranging from pro-fibrotic responses in mesenchymal cells to local immune modulation in myeloid and lymphoid lineages. We also discuss how both cardiac-specific and polyclonal Tregs participate in MI repair. In addition, we consider intriguing novel evidence on how the myocardial milieu takes control of potentially auto-aggressive local immune reactions by shaping myosin-specific T-cell development towards a regulatory phenotype. Finally, we examine the potential use of Treg manipulating drugs in the clinic after MI. KW - Tregs (regulatory T cells) KW - Foxp3 KW - myocardial infarction KW - heart KW - fibrosis KW - T-cells Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-275591 SN - 1664-3224 VL - 13 ER -