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Huangqi Shengmai Yin Protects against Radiation-Induced Cardiac Fibrosis Injury by Regulating the TGF-β1/Smads and MMPs

机译:黄岐胜迈尹通过调节TGF-β1/ Smads和MMP来保护辐射诱导的心肌纤维化损伤

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摘要

Background. Radiation-induced heart damage is considered to be a progressive process of fibrosis. Emerging evidence has indicated that the Smads and matrix metalloproteinases (MMPs)/tissue inhibitors of MMPs (TIMP) may be involved in radiation-induced cardiac fibrosis (RICF) by regulating the activation of TGF-β1 signaling pathway. Based on this, the present study was undertaken to characterize the effect of Huangqi Shengmai Yin (HSY) on RICF in a rat model. Methods. Precardiac region of rats was irradiated with 25 Gy X-rays, and their myocardial pathology scores in terms of injury and collagen volume fraction (CVF) and the expression levels of fibrotic molecules were detected. Results. The pathology scores and CVF in myocardial tissue increased after irradiation, and the expression of TGF-β1, Col1, and Col3 increased. This change indicated that such irradiation promoted the fibrosis damage in rat hearts. The damage was accompanied by an increase in the expression of Smad 2, Smad3, Smad4, and MMP14 and a decrease in the expression of Smad 7 and TIMP1. Administration of HSY weakened the RICF by decreasing pathology score and CVF and decreased the expression of TGF-β1, Col1, and Col3 in irradiated rat hearts. In addition, Smad2, Smad3, Smad4, and MMP14 were downregulated, while Smad 7 and TIMP1 were upregulated during intervention with HSY. Conclusions. The involvement of the TGF-β1/Smads and MMPs/TIMP system in RICF was confirmed. This study demonstrated, for the first time, that HSY attenuates the effects of RICF in a rat model. The effect HSY was found to be closely related to the TGF-β1/Smads signaling pathway and MMPs system. These results suggest that HSY is a prospective drug for clinical treatment of RICF.
机译:背景。辐射诱导的心脏损伤被认为是纤维化的渐进过程。新兴的证据表明,通过调节TGF-β1信号通路的激活,MMPS(TIMP)的Smads和基质金属蛋白酶(MMPS)/组织抑制剂可以参与辐射诱导的心肌纤维化(RICF)。基于这一点,本研究旨在表征黄岐胜迈尹(HST)对大鼠大鼠RICF的影响。方法。用25gy X射线照射大鼠的预前部区域,检测损伤和胶原体积分数(CVF)的心肌病理学分数和纤维分子的表达水平。结果。在照射后心肌组织的病理学分数和CVF增加,并且TGF-β1,COL1和COL3的表达增加。这种变化表明,这种辐照促进了大鼠心中的纤维化损伤。损害伴随着Smad 2,Smad3,Smad4和MMP14表达的增加以及Smad 7和Timp1表达的减少。通过降低病理评分和CVF,HST施用HST削弱了RICF,并降低了TGF-β1,COL1和COL3在辐照的大鼠心中的表达。此外,SMAD2,SMAD3,SMAD4和MMP14下调,而SMAD 7和TIMP1在用HSY干预期间上调。结论。 TGF-β1/ smads和MMPS / TIMP系统的参与在RICF中得到了确认。这项研究首次展示了HST衰减了RICF在大鼠模型中的影响。发现HSY的影响与TGF-β1/ SMADS信号通路和MMPS系统密切相关。这些结果表明HSY是一种用于RICF临床治疗的前瞻性药物。

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