penttraxin 3缺失(PTX3 KD)抑制心肌梗死后心力衰竭的心肌纤维化

Yufang Xu, Yiting Hu, Yanping Geng, N. Zhao, Caiyun Jia, Haojing Song, Wanjun Bai, Caihui Guo, Lili Wang, Yanhui Ni, X. Qi
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引用次数: 2

摘要

背景:心衰是心肌梗死的常见并发症,心肌梗死后心衰心肌纤维化的潜在机制尚不完全明确。本研究旨在探讨PTX3 KD在心肌梗死后HF中的作用。方法:基于GSE86569数据集进行生物信息学分析,探讨PTX3在HF中的潜在作用。雄性C57/BL6J小鼠给予编码PTX3 KD的慢病毒载体或空载体,然后进行冠状动脉结扎或假手术。超声心动图、马松染色和免疫荧光反染色评价心功能和纤维化。分离心脏成纤维细胞,用编码PTX3 KD的慢病毒载体体外转染,验证体内结果。结果:基于GSE86569的生物信息学分析揭示了PTX3在HF患者中的异常表达。超声心动图显示PTX3 KD可逆转hf诱导的心功能障碍,心功能参数改善。Masson染色显示PTX3 KD后HF小鼠明显梗死和高纤维化率明显改善。免疫荧光染色显示,hf诱导的α-SMA表达升高被PTX3 KD显著抑制。此外,体内和体外实验结果均证实PTX3 KD降低了I型胶原、III型胶原和p-STAT3的纤维化相关上调。而IL-6治疗后的结果则相反。结论:PTX3 KD通过下调心衰患者IL-6/STAT3通路,保护心功能,对抗心肌纤维化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pentraxin 3 depletion (PTX3 KD) inhibited myocardial fibrosis in heart failure after myocardial infarction
Background: HF is a common complication of MI. The underlying mechanisms of myocardial fibrosis in HF after MI are incompletely defined. Here, this study aims to investigate the role of PTX3 KD in HF after MI. Methods: Bioinformatics analysis based on GSE86569 dataset was performed to explore the potential role of PTX3 in HF. Male C57/BL6J mice were administered with lentiviral vector encoding PTX3 KD or empty vector, and then underwent either coronary ligation or sham surgery. Echocardiography, Masson staining, and immunofluorescence counterstaining were conducted to evaluate the cardiac function and fibrosis. Cardiac fibroblasts were isolated and transfected with lentiviral vector encoding PTX3 KD in vitro to verify the in vivo findings. Results: Bioinformatics analysis based on GSE86569 revealed the aberrant expression of PTX3 in HF patients. Echocardiography showed that PTX3 KD reversed the HF-induced cardiac dysfunction with better cardiac function parameters. Masson staining demonstrated that the obvious infarct and high fibrosis ratio in HF mice were remarkably improved after PTX3 KD. Immunofluorescence staining indicated that the HF-induced increase expression of α-SMA was significantly suppressed by PTX3 KD. Additionally, both in vivo and in vitro results confirmed that PTX3 KD decreased the fibrosis-related up-regulation of collagen I, collagen III, and p-STAT3. However, the result was opposite after IL-6 treatment. Conclusions: PTX3 KD protects the cardiac function and counteracts the myocardial fibrosis by down-regulating IL-6/STAT3 pathway in HF.
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