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纤维调节素在糖尿病性心肌病大鼠模型心肌纤维化中的作用

The role of fibromodulin in myocardial fibrosis in a diabetic cardiomyopathy rat model.

作者信息

Dai Xiyan, Yang Fan, Chen Dongping, Yang Lu, Dong Zhihui, Chen Can, Xiao Jianmin

机构信息

Binhaiwan Central Hospital of Dongguan, China.

Maoming People's Hospital, China.

出版信息

FEBS Open Bio. 2025 Mar;15(3):436-446. doi: 10.1002/2211-5463.13935. Epub 2024 Nov 26.

Abstract

Diabetic cardiomyopathy (DCM) is pathologically characterized by excessive deposition of extracellular matrix proteins, leading to myocardial fibrosis. Fibromodulin (Fmod) plays a crucial role in the pathogenesis of fibrotic diseases. However, the role and mechanism of Fmod in DCM-related myocardial fibrosis remain unclear. In the present study, we established a DCM rat model and an in vitro model of rat primary cardiac fibroblasts (RPCFs) exposed to high glucose. We assessed mRNA and protein expression levels of Col1a1, Col3a1, α-SMA and Fmod in both models. Fmod-overexpressing (ov-Fmod) and Fmod-knockdown (si-Fmod) rat cardiac fibroblasts (RCFs) were generated. Subsequently, whole RNA sequencing was conducted on ov-Fmod RCFs. The gene Col15a1 was evaluated in the DCM rat and all cell models. The correlation between plasma levels of Fmod and Col15a1 in DCM rat models was assessed. Transcription and protein levels of Fmod, Col1a1, Col3a1 and α-SMA were significantly elevated in DCM rat hearts and RPCFs. In ov-Fmod RCFs, fibrosis markers were similarly increased, except for Col3a1, which decreased. The Col1a1/Col3a1 ratio was elevated. Conversely, knocking down Fmod yielded opposite results. Gene Ontology and Kyoto Encyclopedia of Genes and Genomes analyses indicated that Fmod participates in multiple fibrosis-related pathways, affecting Col15a1. Expression of Col15a1 was significantly decreased in all models, compared to controls, except in si-Fmod RCFs. Importantly, Col15a1 and Fmod in plasma exhibited an inverse relationship in DCM. In summary, Fmod is implicated in DCM, with Fmod overexpression downregulating Col15a1 and increasing the Col1a1/Col3a1 ratio. This mechanism may influence diastolic heart failure in DCM by modulating myocardial stiffness and elasticity.

摘要

糖尿病性心肌病(DCM)的病理特征是细胞外基质蛋白过度沉积,导致心肌纤维化。纤调蛋白(Fmod)在纤维化疾病的发病机制中起关键作用。然而,Fmod在DCM相关心肌纤维化中的作用和机制仍不清楚。在本研究中,我们建立了DCM大鼠模型以及大鼠原代心脏成纤维细胞(RPCF)暴露于高糖环境的体外模型。我们评估了两种模型中Col1a1、Col3a1、α-SMA和Fmod的mRNA和蛋白表达水平。构建了Fmod过表达(ov-Fmod)和Fmod敲低(si-Fmod)的大鼠心脏成纤维细胞(RCF)。随后,对ov-Fmod RCF进行了全RNA测序。在DCM大鼠和所有细胞模型中评估了Col15a1基因。评估了DCM大鼠模型中Fmod和Col15a1血浆水平之间的相关性。DCM大鼠心脏和RPCF中Fmod、Col1a1、Col3a1和α-SMA的转录和蛋白水平显著升高。在ov-Fmod RCF中,除Col3a1降低外,纤维化标志物同样增加。Col1a1/Col3a1比值升高。相反,敲低Fmod产生相反的结果。基因本体论和京都基因与基因组百科全书分析表明,Fmod参与多个与纤维化相关的途径,影响Col15a1。与对照相比,除si-Fmod RCF外,所有模型中Col15a1的表达均显著降低。重要的是,DCM患者血浆中的Col15a1和Fmod呈负相关。总之,Fmod与DCM有关,Fmod过表达下调Col15a1并增加Col1a1/Col3a1比值。该机制可能通过调节心肌硬度和弹性影响DCM中的舒张性心力衰竭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ef/11891772/5c63560ef797/FEB4-15-436-g003.jpg

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