[三七总皂苷对肺动脉高压大鼠肺血管重构的影响及其机制]。

Q4 Medicine
Zheng-Yang Song, Xin-Yu Wang, Yun-Na Tian, Zhuo-Lun Li, Xiao-Ting Wang, Lin-Bo Yuan, Wan-Tie Wang
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引用次数: 0

摘要

目的:探讨三七皂苷(PNS)对肺动脉高压(PAH)大鼠肺血管重构及SIRT1/FOXO3a/p27通路的影响。方法:将体重200~250g的雄性SD大鼠随机分为对照组、单苦参碱组(MCT)和单苦参碱+三七皂苷组(MCT+PNS),每组10只。对照组大鼠第1天腹腔注射生理盐水3 ml/kg,此后每天腹腔注射生理盐水2.5 ml/kg。MCT组大鼠第1天腹腔注射MCT 60 mg/kg,随后每日注射生理盐水2.5 ml/kg。MCT+PNS组第1天腹腔注射MCT 60 mg/kg,每天腹腔注射PNS 50 mg/kg。上述模型均按常规饲喂4周。造模完成后,采用右心导管法检测各组大鼠平均肺动脉压(mPAP)、右心室收缩压(RVSP),称重计算右心室肥厚指数(RVHI), HE染色、Masson染色观察肺血管结构及形态变化。采用qPCR和Western blot检测SIRT1、FOXO3a、p27、PCNA和Caspase-3蛋白及基因的表达。结果:与对照组比较,MCT组mPAP、RVSP、RVHI均显著升高(P<0.01),肺血管明显增厚,胶原纤维增多,SIRT1、FOXO3a、p27、Caspase-3蛋白及基因表达均降低(P<0.05或P<0.01)。PCNA蛋白及基因表达量显著升高(P<0.05)。与MCT组比较,MCT+PNS组mPAP、RVSP、RVHI水平均显著或极显著降低(P<0.05或P<0.01),肺血管增厚减轻,胶原纤维减少。SIRT1、FOXO3a、p27、Caspase-3蛋白及基因表达量升高(P<0.05或P<0.01), PCNA蛋白及基因表达量降低(P<0.05或P<0.01)。结论:三七皂苷可通过激活SIRT1/FOXO3a/p27通路,缓解肺动脉高压大鼠肺血管重构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effects of panax notoginseng saponins on pulmonary vascular remodeling in rats with pulmonary hypertension and its mechanisms].

Objective: To investigate the effects of panax notoginseng saponins (PNS) on pulmonary vascular remodeling and SIRT1/FOXO3a/p27 pathway in pulmonary arterial hypertension (PAH) rats. Methods: Male SD rats weighing 200~250g were randomly divided into control group, monocrotaline group (MCT) and monocrotaline + panax notoginseng saponins group (MCT+PNS), with 10 rats in each group. The rats in control group were injected intraperitoneally with normal saline 3 ml/kg on the first day, then injected intraperitoneally with normal saline 2.5 ml/kg every day. The rats in MCT group were injected intraperitoneally with MCT 60 mg/kg on the first day, followed by daily injection of normal saline 2.5 ml/kg. In MCT+PNS group, 60 mg/kg MCT was injected intraperitoneally on the first day, and 50 mg/kg PNS was injected intraperitoneally every day. The above models were fed conventionally for 4 weeks. After the modeling was completed, the mean pulmonary artery pressure (mPAP) and right ventricular systolic pressure (RVSP) of rats in each group were detected by right heart catheter method, weighed and calculated right ventricular hypertrophy index (RVHI), and the pulmonary vascular structure and morphological changes were observed by HE and Masson staining. The protein and gene expressions of SIRT1, FOXO3a, p27, PCNA and Caspase-3 were detected by qPCR and Western blot. Results: Compared with control group, mPAP, RVSP and RVHI in MCT group were increased significantly (P<0.01), pulmonary vessels were thickened significantly and collagen fibers were increased, protein and gene expressions of SIRT1, FOXO3a, p27 and Caspase-3 were decreased (P<0.05 or P<0.01). The protein and gene expressions of PCNA were increased (P<0.05). Compared with MCT group, the levels of mPAP, RVSP and RVHI in MCT+PNS group were decreased significantly (P<0.05 or P<0.01), pulmonary vascular thickening was alleviated and collagen fibers were reduced. The protein and gene expressions of SIRT1, FOXO3a, p27 and Caspase-3 were increased (P<0.05 or P<0.01), while the protein and gene expressions of PCNA were decreased (P<0.05 or P<0.01). Conclusion: Panax notoginseng saponins can relieve pulmonary vascular remodeling in rats with pulmonary hypertension by activating SIRT1/FOXO3a/p27 pathway.

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