Scleraxis and fibrosis in the pressure-overloaded heart

骨膜炎 压力过载 心脏纤维化 医学 纤维化 肌成纤维细胞 心功能曲线 内科学 癌症研究 内分泌学 病理 心力衰竭 细胞生物学 生物 细胞外基质 心肌肥大
作者
Raghu S. Nagalingam,Sikta Chattopadhyaya,Danah S. Al‐Hattab,David Cheung,Leah Y Schwartz,Sayantan Jana,Nina Aroutiounova,D. Allison Ledingham,Teri L. Moffatt,Natalie M. Landry,Rushita A. Bagchi,Ian Dixon,Jeffrey T. Wigle,Gavin Y. Oudit,Zamaneh Kassiri,Davinder S. Jassal,Michael P. Czubryt
出处
期刊:European Heart Journal [Oxford University Press]
卷期号:43 (45): 4739-4750 被引量:46
标识
DOI:10.1093/eurheartj/ehac362
摘要

Abstract Aims In response to pro-fibrotic signals, scleraxis regulates cardiac fibroblast activation in vitro via transcriptional control of key fibrosis genes such as collagen and fibronectin; however, its role in vivo is unknown. The present study assessed the impact of scleraxis loss on fibroblast activation, cardiac fibrosis, and dysfunction in pressure overload-induced heart failure. Methods and results Scleraxis expression was upregulated in the hearts of non-ischemic dilated cardiomyopathy patients, and in mice subjected to pressure overload by transverse aortic constriction (TAC). Tamoxifen-inducible fibroblast-specific scleraxis knockout (Scx-fKO) completely attenuated cardiac fibrosis, and significantly improved cardiac systolic function and ventricular remodelling, following TAC compared to Scx+/+ TAC mice, concomitant with attenuation of fibroblast activation. Scleraxis deletion, after the establishment of cardiac fibrosis, attenuated the further functional decline observed in Scx+/+ mice, with a reduction in cardiac myofibroblasts. Notably, scleraxis knockout reduced pressure overload-induced mortality from 33% to zero, without affecting the degree of cardiac hypertrophy. Scleraxis directly regulated transcription of the myofibroblast marker periostin, and cardiac fibroblasts lacking scleraxis failed to upregulate periostin synthesis and secretion in response to pro-fibrotic transforming growth factor β. Conclusion Scleraxis governs fibroblast activation in pressure overload-induced heart failure, and scleraxis knockout attenuated fibrosis and improved cardiac function and survival. These findings identify scleraxis as a viable target for the development of novel anti-fibrotic treatments.
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