Suppr超能文献

单细胞分析显示,脂肪酸结合蛋白4阳性的增殖性瓣膜内皮细胞的缺失与功能性二尖瓣反流有关。

Single-cell analysis reveals the loss of FABP4-positive proliferating valvular endothelial cells relates to functional mitral regurgitation.

作者信息

Wang Xiaohu, Fu Mengxia, Wang Weiteng, Shu Songren, Zhang Ningning, Zhao Ruojin, Chen Xiao, Hua Xiumeng, Wang Xin, Feng Wei, Wang Xianqiang, Song Jiangping

机构信息

Present Address: State Key Laboratory of Cardiovascular Disease, National Center for Cardiovascular Diseases, Fuwai Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, 167A Beilishi Road, Beijing, Xi Cheng District, 100037, China.

Galactophore Department, Galactophore Center, Beijing Shijitan Hospital, Capital Medical University, Beijing, China.

出版信息

BMC Med. 2024 Dec 20;22(1):595. doi: 10.1186/s12916-024-03791-4.

Abstract

BACKGROUND

Functional mitral regurgitation (MR) is a common form of mitral valve dysfunction that often persists even after surgical intervention, requiring reoperation in some cases. To advance our understanding of the pathogenesis of functional MR, it is crucial to characterize the cellular composition of the mitral valve leaflet and identify molecular changes in each cell subtype within the mitral valves of MR patients. Therefore, we aimed to comprehensively examine the cellular and molecular components of mitral valves in patients with MR.

METHODS

We conducted a single-cell RNA sequencing (scRNA-seq) analysis of mitral valve leaflets extracted from six patients who underwent heart transplantation. The cohort comprised three individuals with moderate-to-severe functional MR (MR group) and three non-diseased controls (NC group). Bioinformatics was applied to identify cell types, delineate cell functions, and explore cellular developmental trajectories and interactions. Key findings from the scRNA-seq analysis were validated using pathological staining to visualize key markers in the mitral valve leaflets. Additionally, in vitro experiments with human primary valvular endothelial cells were conducted to further support our results.

RESULTS

Our study revealed that valve interstitial cells are critical for adaptive valve remodelling, as they secrete extracellular matrix proteins and promote fibrosis. We discovered an abnormal decrease in a subpopulation of FABP4 (fatty acid binding protein 4)-positive proliferating valvular endothelial cells. The trajectory analysis identifies this subcluster as the origin of VECs. Immunohistochemistry on the expanded cohort showed a reduction of FABP4-positive VECs in patients with functional MR. Intervention experiments with primary cells indicated that FABP4 promotes proliferation and migration in mitral valve VECs and enhances TGFβ-induced differentiation.

CONCLUSIONS

Our study presented a comprehensive assessment of the mitral valve cellular landscape of patients with MR and sheds light on the molecular changes occurring in human mitral valves during functional MR. We found a notable reduction in the proliferating endothelial cell subpopulation of valve leaflets, and FABP4 was identified as one of their markers. Therefore, FABP4 positive VECs served as proliferating endothelial cells relates to functional mitral regurgitation. These VECs exhibited high proliferative and differentiative properties. Their reduction was associated with the occurrence of functional MR.

摘要

背景

功能性二尖瓣反流(MR)是二尖瓣功能障碍的一种常见形式,即使在手术干预后也常常持续存在,在某些情况下需要再次手术。为了加深我们对功能性MR发病机制的理解,至关重要的是要明确二尖瓣小叶的细胞组成,并确定MR患者二尖瓣内每种细胞亚型的分子变化。因此,我们旨在全面研究MR患者二尖瓣的细胞和分子成分。

方法

我们对6例接受心脏移植患者的二尖瓣小叶进行了单细胞RNA测序(scRNA-seq)分析。该队列包括3例中重度功能性MR患者(MR组)和3例非患病对照(NC组)。应用生物信息学来识别细胞类型、描述细胞功能,并探索细胞发育轨迹和相互作用。scRNA-seq分析的主要发现通过病理染色来验证,以可视化二尖瓣小叶中的关键标志物。此外,还进行了人原代瓣膜内皮细胞的体外实验以进一步支持我们的结果。

结果

我们的研究表明,瓣膜间质细胞对于适应性瓣膜重塑至关重要,因为它们分泌细胞外基质蛋白并促进纤维化。我们发现FABP4(脂肪酸结合蛋白4)阳性增殖性瓣膜内皮细胞亚群异常减少。轨迹分析将该亚群确定为瓣膜内皮细胞(VECs)的起源。对扩大队列的免疫组织化学显示,功能性MR患者中FABP4阳性VECs减少。原代细胞的干预实验表明,FABP4促进二尖瓣VECs的增殖和迁移,并增强转化生长因子β(TGFβ)诱导的分化。

结论

我们的研究对MR患者的二尖瓣细胞格局进行了全面评估,并揭示了功能性MR期间人二尖瓣中发生的分子变化。我们发现瓣膜小叶的增殖性内皮细胞亚群显著减少,并且FABP4被确定为它们的标志物之一。因此,FABP4阳性VECs作为与功能性二尖瓣反流相关的增殖性内皮细胞。这些VECs表现出高增殖和分化特性。它们的减少与功能性MR的发生有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94f2/11662534/804719edf57a/12916_2024_3791_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验