[生脉诚谷胶囊对血管内皮细胞增殖及血管内皮生长因子分泌的影响]。

Yue-guang Fan, Chang-qing Zhao
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引用次数: 0

摘要

目的:研究中药制剂生脉诚谷胶囊(SMCGC)对体外培养ECV304细胞增殖及血管内皮生长因子(VEGF)分泌的影响。方法:取不同剂量SMCGC灌胃家兔含药血清用于体外培养的ECV304细胞,空白血清和川芎嗪处理为对照。MTT法检测ECV304细胞的增殖情况,ELISA法检测细胞培养液中VEGF浓度。透射电镜观察血清作用12 h后ECV304细胞的超微结构。结果:含SMCGC的兔血清分别作用12和36 h后,各剂量组ECV304细胞的增殖均无显著增加(P>0.05),中、高剂量SMCGC作用36 h后,兔血清中ECV304细胞的增殖均明显受到抑制(P>0.05)。SMCGC不促进ECV304细胞的增殖,低剂量SMCGC处理家兔血清可刺激ECV304细胞的VEGF分泌,这可能是SMCGC刺激血管生成的主要机制。
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 Shengmai Chenggu capsule on proliferation and vascular endothelial growth factor secretion of vascular endothelial cells].

Objective: To study the effect of the serum of rabbits fed with Shengmai Chenggu capsule (SMCGC), a preparation of traditional Chinese medicine, on the proliferation and vascular endothelial growth factor (VEGF) secretion of cultured ECV304 cells.

Methods: The drug-containing serum from rabbits with intragastric administration of SMCGC at different doses was obtained for treatment of ECV304 cells cultured in vitro, with the cells treated with blank serum and ligustrazine serving as the control. The proliferation of ECV304 cells was detected by MTT assay and VEGF concentration in the culture medium of the cells measured by means of ELISA. The ultrastructure of ECV304 cells treated with the sera for 12 h was observed by transmission electron microscopy.

Results: After treatment with SMCGC-containing rabbit serum for 12 and 36 h, respectively, the proliferation of ECV304 cells in all dosage groups showed no significant increases (P>0.05), and the sera of rabbits fed with medium and high doses of SMCGC significantly inhibited the proliferation of ECV304 cells after a 36-hour treatment (P<0.01). The high-dose rabbit serum might even cause apoptosis of ECV304 cells, and low-dose serum significantly stimulated VEGF secretion of the ECV304 cells (P<0.01).

Conclusions: SMCGC does not promote the proliferation of ECV304 cells, and the serum of low-dose SMCGC-treated rabbits may stimulate VEGF secretion of the ECV304 cells, which might be the main mechanism of SMCGC in stimulating angiogenesis.

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