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首页> 外文期刊>Histochemistry and cell biology >Extra cellular matrix remodelling after heterotopic rat heart transplantation: gene expression profiling and involvement of ED-A+ fibronectin, alpha-smooth muscle actin and B+ tenascin-C in chronic cardiac allograft rejection.
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Extra cellular matrix remodelling after heterotopic rat heart transplantation: gene expression profiling and involvement of ED-A+ fibronectin, alpha-smooth muscle actin and B+ tenascin-C in chronic cardiac allograft rejection.

机译:异位大鼠心脏移植后的细胞外基质重塑:基因表达谱分析及ED-A +纤连蛋白,α-平滑肌肌动蛋白和B +腱生蛋白-C在慢性异体移植排斥反应中的作用。

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摘要

Chronic cardiac rejection is represented by cardiac allograft vasculopathy (CAV) and cardiac interstitial fibrosis (CIF) known to cause severe complications. These processes are accompanied by remarkable changes in the cardiac extra cellular matrix (cECM). The aim of our study was to analyse the cECM remodelling in chronic rejection and to elucidate a potential role of ED-A domain containing fibronectin (ED-A(+) Fn), alpha smooth muscle actin (ASMA) and B domain containing tenascin-C (B(+) Tn-C). A model of chronic rejection after heterotopic rat heart transplantation was used. Allografts, recipient and control hearts were subjected to histological assessment of rejection grade, to real-time PCR based analysis of 84 genes of ECM and adhesion molecules and to immunofluorescence labelling procedures, including ED-A(+) Fn, ASMA and B(+) Tn-C antibodies. Histological analysis revealed different grades of chronic rejection. By gene expression analysis, a relevant up-regulation of the majority of ECM genes in association with chronic rejection could be shown. For 8 genes, there was a relevant up-regulation in allografts as well as in the corresponding recipient hearts. Association of ASMA positive cells with the grade of chronic rejection could be proven. In CAV and also in CIF there were extensive co-depositions of ED-A(+) Fn, ASMA and B(+) Tn-C. In conclusion, chronic cardiac allograft rejection is associated with a cECM remodelling. ASMA protein deposition in CAV, and CIF is a valuable marker to detect chronic rejection. Interactions of VSMCs and Fibro-/Myofibroblasts with ED-A(+) Fn and B(+) Tn-C might functionally contribute to the development of chronic cardiac rejection.
机译:慢性心脏排斥反应以已知导致严重并发症的心脏同种异体移植血管病(CAV)和心脏间质纤维化(CIF)代表。这些过程伴随着心脏细胞外基质(cECM)的显着变化。我们研究的目的是分析慢性排斥反应中的cECM重塑,并阐明含有纤连蛋白(ED-A(+)Fn)的ED-A结构域,含有肌腱蛋白-的α平滑肌肌动蛋白(ASMA)和B结构域的潜在作用。 C(B(+)Tn-C)。使用异位大鼠心脏移植后的慢性排斥反应模型。对同种异体移植,受体和对照心脏进行排斥反应的组织学评估,对ECM和粘附分子的84个基因进行基于实时PCR的分析,并进行免疫荧光标记程序,包括ED-A(+)Fn,ASMA和B(+ )Tn-C抗体。组织学分析显示不同等级的慢性排斥反应。通过基因表达分析,可以显示与慢性排斥相关的大多数ECM基因的相关上调。对于8个基因,同种异体移植物以及相应的受体心脏都有相关的上调。可以证明ASMA阳性细胞与慢性排斥反应的程度有关。在CAV和CIF中,都有大量的ED-A(+)Fn,ASMA和B(+)Tn-C共沉积。总之,慢性异体心脏移植排斥反应与cECM重塑有关。 CAV和CIF中的ASMA蛋白沉积是检测慢性排斥反应的重要标志。 VSMCs和成纤维细胞/肌成纤维细胞与ED-A(+)Fn和B(+)Tn-C的相互作用可能在功能上有助于慢性心脏排斥反应的发展。

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