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矿化脂肪来源干细胞组织的转录组分析用于钙化性主动脉瓣疾病建模。

Transcriptomic Analysis of Mineralized Adipose-Derived Stem Cell Tissues for Calcific Valve Disease Modelling.

机构信息

Department of Surgery, Faculty of Medicine, Université Laval, Quebec City, QC G1V 5C3, Canada.

Division of Regenerative Medicine, CHU de Quebec Université Laval Research Centre, Quebec City, QC G1J 5B3, Canada.

出版信息

Int J Mol Sci. 2024 Feb 14;25(4):2291. doi: 10.3390/ijms25042291.

Abstract

Calcific aortic valve disease (CAVD) is characterized by the fibrosis and mineralization of the aortic valve, which leads to aortic stenosis and heart failure. At the cellular level, this is due to the osteoblastic-like differentiation of valve interstitial cells (VICs), resulting in the calcification of the tissue. Unfortunately, human VICs are not readily available to study CAVD pathogenesis and the implicated mechanisms in vitro; however, adipose-derived stromal/stem cells (ASCs), carrying the patient's specific genomic features, have emerged as a promising cell source to model cardiovascular diseases due to their multipotent nature, availability, and patient-specific characteristics. In this study, we describe a comprehensive transcriptomic analysis of tissue-engineered, scaffold-free, ASC-embedded mineralized tissue sheets using bulk RNA sequencing. Bioinformatic and gene set enrichment analyses revealed the up-regulation of genes associated with the organization of the extracellular matrix (ECM), suggesting that the ECM could play a vital role in the enhanced mineralization observed in these tissue-engineered ASC-embedded sheets. Upon comparison with publicly available gene expression datasets from CAVD patients, striking similarities emerged regarding cardiovascular diseases and ECM functions, suggesting a potential link between ECM gene expression and CAVDs pathogenesis. A matrisome-related sub-analysis revealed the ECM microenvironment promotes the transcriptional activation of the master gene runt-related transcription factor 2 (), which is essential in CAVD development. Tissue-engineered ASC-embedded sheets with enhanced mineralization could be a valuable tool for research and a promising avenue for the identification of more effective aortic valve replacement therapies.

摘要

钙化主动脉瓣疾病(CAVD)的特征是主动脉瓣的纤维化和矿化,导致主动脉瓣狭窄和心力衰竭。在细胞水平上,这是由于瓣膜间质细胞(VICs)的成骨样分化,导致组织钙化。不幸的是,由于人类 VICs 不易获得,因此无法在体外研究 CAVD 的发病机制和涉及的机制;然而,脂肪来源的基质/干细胞(ASCs)因其多能性、可用性和患者特异性特征而成为一种很有前途的细胞来源,可以模拟心血管疾病。在这项研究中,我们使用 bulk RNA 测序描述了组织工程、无支架、ASC 嵌入矿化组织片的全面转录组分析。生物信息学和基因集富集分析显示,与细胞外基质(ECM)组织相关的基因上调,表明 ECM 在这些组织工程 ASC 嵌入片中观察到的增强矿化中可能发挥重要作用。与 CAVD 患者的公开基因表达数据集进行比较后,心血管疾病和 ECM 功能方面出现了惊人的相似之处,表明 ECM 基因表达与 CAVD 发病机制之间存在潜在联系。基质相关子分析显示,ECM 微环境促进了主基因 runt 相关转录因子 2()的转录激活,这在 CAVD 发展中至关重要。具有增强矿化的组织工程 ASC 嵌入片可能是研究的有价值工具,也是鉴定更有效的主动脉瓣置换治疗方法的有前途途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bdb/10889332/784ee2e98265/ijms-25-02291-g001.jpg

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