Ceauşu Zenaida, Socea Bogdan, Costache Mariana, Predescu Dragoş, Şerban Dragoş, Smarandache Cătălin G, Pacu Irina, Alexandru Haradja Horaţiu, Daviţoiu Ana Maria, Jacotă-Alexe Florentina, Cîrstoveanu Cătălin, Dimitriu Mihai C T, Pleş Liana, Ceauşu Mihai
Department of Pathology, 'Sf. Pantelimon' Emergency Hospital, 021659 Bucharest, Romania.
Department of Surgery, 'Carol Davila' University of Medicine and Pharmacy, 020021 Bucharest, Romania.
Exp Ther Med. 2021 Mar;21(3):269. doi: 10.3892/etm.2021.9700. Epub 2021 Jan 25.
Cardiac fibroblasts play a main role in the physiological turnover of the extracellular matrix, as well as its pathological remodeling. A study was performed on a batch of 23 cases who died of various cardiac complications secondary to scarring myocardial infarctions. The aim of the study was to assess the fibroblast involvement in cardiac repair under ischemic conditions after myocardial infarction. Tissue myocardial samples from the left ventricle were taken from these cases for microscopy examination, in order to investigate the type and degree of fibrosis as well as the presence of cardiac interstitial fibroblasts. Multiple series of histological sections were also performed and examined, along with immunohistochemical analysis. The fibroblasts were diffusely distributed in the interstitium among the residual cardiomyocytes, showing variable expression of vimentin and smooth muscle actin. During cardiac remodeling, there was a successive interstitial deposition, first of reticulin fibers and then of collagen fibers, leading to interstitial fibrosis and myocardial replacement. There was a correlation between vimentin and smooth muscle actin expression and collagen deposition. Fibrosis with cardiac remodeling is based on maintaining proliferation capacity of the fibroblast and its capacity of protein synthesis in the extracellular matrix. Under hypoxic ischemic conditions, followed by myocardial infarction, the fibroblast switches phenotype and transdifferentiate into myofibroblast, contributing to the healing by secreting extracellular matrix proteins and collagen deposition, with subsequent cardiac remodeling and regulation of the micro-environment metabolism.
心脏成纤维细胞在细胞外基质的生理更新及其病理重塑过程中发挥着主要作用。对一批23例因瘢痕性心肌梗死继发各种心脏并发症而死亡的病例进行了研究。该研究的目的是评估心肌梗死后缺血条件下成纤维细胞在心脏修复中的作用。从这些病例的左心室采集心肌组织样本进行显微镜检查,以研究纤维化的类型和程度以及心脏间质成纤维细胞的存在情况。还进行了多组组织学切片并进行检查,同时进行免疫组织化学分析。成纤维细胞弥漫性分布于残余心肌细胞之间的间质中,波形蛋白和平滑肌肌动蛋白表达各异。在心脏重塑过程中,先是网状纤维继而胶原纤维相继发生间质沉积,导致间质纤维化和心肌替代。波形蛋白和平滑肌肌动蛋白表达与胶原沉积之间存在相关性。伴有心脏重塑的纤维化基于成纤维细胞增殖能力及其在细胞外基质中蛋白质合成能力的维持。在缺氧缺血条件下继以心肌梗死后,成纤维细胞转变表型并转分化为肌成纤维细胞,通过分泌细胞外基质蛋白和胶原沉积促进愈合,随后进行心脏重塑并调节微环境代谢。