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二尖瓣内皮细胞与间质细胞之间的相互作用可减少内皮-间充质转化和肌成纤维细胞活化。

Reciprocal interactions between mitral valve endothelial and interstitial cells reduce endothelial-to-mesenchymal transition and myofibroblastic activation.

作者信息

Shapero Kayle, Wylie-Sears Jill, Levine Robert A, Mayer John E, Bischoff Joyce

机构信息

Vascular Biology Program, Department of Surgery, Boston Children's Hospital, Harvard Medical School, USA; Biomedical Engineering Department, Boston University, Boston, MA, USA; Department of Cardiothoracic Surgery, Boston Children's Hospital, Harvard Medical School, USA.

Vascular Biology Program, Department of Surgery, Boston Children's Hospital, Harvard Medical School, USA.

出版信息

J Mol Cell Cardiol. 2015 Mar;80:175-85. doi: 10.1016/j.yjmcc.2015.01.006. Epub 2015 Jan 26.

Abstract

Thickening of mitral leaflets, endothelial-to-mesenchymal transition (EndMT), and activated myofibroblast-like interstitial cells have been observed in ischemic mitral valve regurgitation. We set out to determine if interactions between mitral valve endothelial cells (VECs) and interstitial cells (VICs) might affect these alterations. We used in vitro co-culture in Transwell™ inserts to test the hypothesis that VICs secrete factors that inhibit EndMT and conversely, that VECs secrete factors that mitigate the activation of VICs to a myofibroblast-like, activated phenotype. Primary cultures and clonal populations of ovine mitral VICs and VECs were used. Western blot, quantitative reverse transcriptase PCR (qPCR) and functional assays were used to assess changes in cell phenotype and behavior. VICs or conditioned media from VICs inhibited transforming growth factor β (TGFβ)-induced EndMT in VECs, as indicated by reduced expression of EndMT markers α-smooth muscle actin (α-SMA), Slug, Snai1 and MMP-2 and maintained the ability of VECs to mediate leukocyte adhesion, an important endothelial function. VECs or conditioned media from VECs reversed the spontaneous cell culture-induced change in VICs to an activated phenotype, as indicated by reduced expression of α-SMA and type I collagen, increased expression chondromodulin-1 (Chm1), and reduced contractile activity. These results demonstrate that mitral VECs and VICs secrete soluble factors that can reduce VIC activation and inhibit TGFβ-driven EndMT, respectively. These findings suggest that the endothelium of the mitral valve is critical for the maintenance of a quiescent VIC phenotype and that, in turn, VICs prevent EndMT. We speculate that the disturbance of the ongoing reciprocal interactions between VECs and VICs in vivo may contribute to the thickened and fibrotic leaflets observed in ischemic mitral regurgitation, and in other types of valve disease.

摘要

在缺血性二尖瓣反流中已观察到二尖瓣叶增厚、内皮-间充质转化(EndMT)以及活化的肌成纤维细胞样间质细胞。我们着手确定二尖瓣内皮细胞(VECs)与间质细胞(VICs)之间的相互作用是否会影响这些改变。我们使用Transwell™小室进行体外共培养,以检验以下假设:VICs分泌抑制EndMT的因子,相反,VECs分泌减轻VICs向肌成纤维细胞样活化表型转化的因子。使用了绵羊二尖瓣VICs和VECs的原代培养物和克隆群体。采用蛋白质免疫印迹法、定量逆转录聚合酶链反应(qPCR)和功能测定来评估细胞表型和行为的变化。VICs或来自VICs的条件培养基抑制了转化生长因子β(TGFβ)诱导的VECs中的EndMT,这表现为EndMT标志物α-平滑肌肌动蛋白(α-SMA)、Slug、Snai1和基质金属蛋白酶-2(MMP-2)的表达降低,并维持了VECs介导白细胞黏附的能力,这是一种重要的内皮功能。VECs或来自VECs的条件培养基逆转了自发细胞培养诱导的VICs向活化表型的变化,这表现为α-SMA和I型胶原蛋白的表达降低、软骨调节素-1(Chm1)的表达增加以及收缩活性降低。这些结果表明,二尖瓣VECs和VICs分别分泌可降低VIC活化和抑制TGFβ驱动的EndMT的可溶性因子。这些发现表明,二尖瓣内皮对于维持静止的VIC表型至关重要,反过来,VICs可防止EndMT。我们推测,体内VECs与VICs之间持续的相互作用受到干扰可能导致在缺血性二尖瓣反流以及其他类型瓣膜疾病中观察到的瓣叶增厚和纤维化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/758c/4346432/011d1e6dceb9/nihms661972f1.jpg

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