›› 2015, Vol. 33 ›› Issue (3): 284-.doi: 10.3969j.issn.1000-3606.2015.03.021

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Effects of Astragalus membranaous on the proliferation and transforming growth factor β1 production of cardiac fibroblasts 

RUAN Tao, HE Xuehua, LIU Liping, YUAN Yonghua, PAN Li, LIU Zhenyu, LUO Jianhong, HU Shaya   

  1. Department of Pediatric Cardiology, The First Affiliated Clinical College, Hunan Normal University, Changsha 410005, Hunan, China
  • Received:2015-03-15 Online:2015-03-15 Published:2015-03-15

Abstract: Objective To observe the effect of Astragalus membranaous on angiotensin Ⅱ (Ang Ⅱ)-induced transforming growth factor β1 (TGF-β1) production of cardiac fibroblasts. Methods  Cardiac fibroblasts were cultured in vitro. Cells were allocated into 3 groups: control group, Astragalus membranaous groups (50, 100, 200 mg/ml), Ang II group (10-7 mol/L) and AngⅡ/Astragalus membranaous groups (50, 100, 200 mg/ml). The proliferation of each group was tested by methyl thiazolyl tetrazolium method. TGF-β1 was measured by ELISA. Results  The proliferation of cardiac fibroblasts had significant difference between each groups (F=71.84, P=0.000). The proliferation of cardiac fibroblasts with Ang II stimulation was higher than that of cells without Ang II stimulation (P<0.05). Astragalus membranaous inhibited Ang II-induced cardiac fibroblasts proliferation dose dependently (P<0.05). The TGF-β1 production had significant difference between each groups (F=786.81, P=0.000). The TGF-β1 production in AngII/astragalus membranaous groups was lower than that in Ang II group (P<0.05). The TGF-β1 production in Ang II group was the highest, and had significant difference as compared to other groups (P<0.05). Astragalus membranaous inhibited Ang II-induced TGF-β1 production dose dependently (P<0.05). Conclusions  Ang II can stimulate the proliferation of cardiac fibroblasts, and promote the TGF-β1 production. Astragalus membranaous can inhibit the proliferation of Ang II-induced cardiac fibroblasts, and reduce the TGF-β1 production of cardiac fibroblasts.