[温参养血方对无排卵大鼠抑制-激活-卵泡抑素系统的影响]。

中国中西医结合杂志 Pub Date : 2016-12-01
Ming-Wei Xin, Qiu-Xia Zhang, Hui Zhao, Yi-Iong Yang, Jun-Qin He, Ying Zhang, Xin-Yun Liang, Ying Wu, Wei Yang, Xiao-Dan Yin
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引用次数: 0

摘要

目的探讨温参养血方对无排卵大鼠卵泡抑素(INH-ACT-FS)系统及性激素水平的影响。方法76只9日龄大鼠皮下注射丙酸睾酮(1)建立无卵巢大鼠模型。25毫克/ 0。(每只大鼠0.05 mL)。将成功造模的大鼠58只按随机数字表法分为5组,即造模组(n =10)、西药组(n =12)和WYR高、中、低剂量组(n =12)。另取10只22日龄大鼠作为正常组。正常组和模型组大鼠每日灌胃蒸馏水。柠檬酸克罗米芬(0。WM组大鼠每日给药58 mg/100 g,连续5 d。5岁。2、2。6、1。WYR高、中、低剂量组大鼠每日给药3 mg/100 g,连续21 d。采用放射免疫法检测卵泡刺激素(FSH)、黄体生成素(LH)、雌二醇(e2)、孕酮(P)、催乳素(PRL)水平。ELISA法测定抑制素(INH)、激活素(ACT)、卵泡抑素(FS)的含量。结果与正常组比较,模型组大鼠血清FSH、LH水平升高,P水平降低(P < 0.05)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effect of Wenshen Yangxue Recipe on Inhibin-Activin-Follistatin System in Anovulatory Rats].

Objective To explore the effect of Wenshen Yangxue Recipe (WYR) on inhibin-ac- tivin-follistatin (INH-ACT-FS) system and gonadal hormone level in anovulatory rats. Methods Anovula- tory rat model was established in 76 rats (9 days old) by subcutaneous injecting testosterone propionate (1. 25 mg/0. 05 mL for each rat) from the nape. Totally 58 successfully modeled rats were divided into 5 groups according to random digit table, i.e., the model group (n =10), the Western medicine (WM) group (n =12), high, middle, and low dose WYR groups (n =12). Besides, another ten 22-day old rats were recruited as a normal group. Distilled water was daily administered to rats in the normal group and the model group by gastrogavage. Clomiphene citrate (0. 58 mg/100 g) was daily administered to rats in the WM group for 5 successive days. WYR at 5. 2, 2. 6, 1. 3 mg/100 g was daily administered to rats in high, middle, and low dose WYR groups for 21 successive days. Levels of follicular stimulating hormone (FSH) , luteinizing hormone (LH) , estradiol (E₂) , progesterone (P) , and prolactin (PRL) were detected using radioimmunoassay. Contents of inhibin (INH) , activin (ACT) , and follistatin (FS) were measured using ELISA. Results Compared with the normal group, serum levels of FSH and LH increased, and P level decreased in the model group (P <0. 05) ; INH level decreased and FS level increased in the model group (P<0. 05). Compared with the model group, serum FSH level decreased in the WM group and 3 WYR groups, P level decreased in the WM group (P <0. 05); INH increased and FS levels decreased in the WM group and 3 WYR groups; ACT level increased in the high dose WYR group, with statistical differ- ence (P <0. 05). Conclusion WYR promoted follicular development possibly through regulating INH- ACT-FS system and gonadal hormone level.

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