滋阴清火中药组合对延缓光照诱导的大鼠性早熟的影响

Sun Yanyan, Xue Yuanyuan, Sun Wen, Wang Yonghong, Y U Jian
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引用次数: 0

摘要

目的阐明滋阴清火中药复方制剂(NYPF)延缓光照诱导的大鼠性早熟的机制:将21天大的雌性Sprague-Dawley大鼠随机分为正常组(N)、长光照组(L)、NYPF组和生理盐水组(NS)。L组、NYPF组和NS组的大鼠接受16 h:光照时间为 16 小时:350 勒克斯/8 小时:暗,而 N 组大鼠的光照时间为 12 小时:50 勒克斯/12 小时:暗。从第 21 天起,分别给 NYPF 组或 NS 组大鼠注射 NYPF 和生理盐水。第28天(P28),L组大鼠外阴张开之日(L-VO),L组大鼠第一次发情间期之日(L-E1),L组大鼠第二次发情间期之日(L-E2),每组各5只大鼠,于晚上9点处死:第34天,L组所有大鼠、NS组80%大鼠、N组40%大鼠和NYPF组20%大鼠的外阴完全张开。P28时,L组下丘脑吻肽(Kiss-1)的mRNA水平显著高于N组(P 0.05)。L组和NS组大鼠下丘脑精氨酸-苯丙氨酸酰胺(RFamide)相关肽3(RFRP-3)mRNA水平明显低于N组(P 0.05),而NYPF组RFRP-3 mRNA水平明显高于L组(P 0.05)。在L-VO时,L组和NS组的卵巢指数明显高于N组(P 0.05),NYPF组的雌二醇(E2)水平明显低于N组和NS组(P 0.05);L组和NS组下丘脑Kiss-1 mRNA水平明显高于N组和NYPF组(P 0.05),而L组、NYPF组和NS组下丘脑RFRP-3 mRNA水平明显低于N组(P 0.05)。在L-E1时,L组和NS组的E2水平明显高于N组(P 0.01),而NYPF组则明显低于N组、L组和NS组(P 0.01),L组和NS组血清促黄体生成素水平明显高于N组(P 0.05);L组、NYPF组和NS组血清褪黑素和卵巢褪黑素受体1(MT-1)mRNA水平明显低于N组(P 0.05)。在L-E2期,NYPF组的子宫器官指数明显低于L组(P 0.05);L组和NS组的卵巢MT-1 mRNA水平明显低于N组(P 0.05):结论:NYPF能延缓长期暴露于强光下的大鼠青春期的到来,其机制之一是调节下丘脑中Kiss-1和RFRP-3基因的表达。
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 nourishing and purging fire Chinese herbal mixture on delaying light-induced premature puberty in rats.

Objective: To elucidate the mechanism of the nourishing Yin and purging fire Chinese herbal mixture (NYPF) in delaying light-induced premature puberty in rats.

Methods: Twenty-one days old female Sprague-Dawley rats were randomly assigned to normal group (N), long light exposure group (L), NYPF and normal saline group (NS). Rats in the L, NYPF and NS groups were exposed to 16 h: 350 lux light/8 h: dark, while rats in the N group were exposed to 12 h: 50 lux light/12 h: dark. NYPF and normal saline was administered to the rats in the NYPF group or NS group, respectively, from day 21. Five rats in every group were sacrificed at 9 p.m. on day 28 (P28), on the day when rat's vulva opened in the L group (L-VO), on the day when the first estrous interphase occurred in rats of L group (L-E1), and on the day when the second estrous interphase occurred in rats of L group (L-E2), respectively.

Resulits: On day 34, all rats in the L group, 80% of rats in the NS group, 40% of rats in the N group, and 20% of rats in the NYPF group showed complete opening of the vulva. At P28, mRNA level of hypothalamic kisspeptin (Kiss-1) in the L group was significantly higher than that in the N group (P < 0.05). The rats in the L and NS groups had significantly lower hypothalamic arginine-phenylalanine-amide (RFamide)-related peptide 3 (RFRP-3) mRNA levels than those in the N group (P < 0.05), whereas RFRP-3 mRNA level was significantly higher in the NYPF group than that in the L group (P < 0.05). At L-VO, the ovarian index of the L and NS groups was significantly higher than that of the N group (P < 0.05) and estradiol (E2) level of the NYPF group was significantly lower than that of the N and NS groups (P < 0.05); hypothalamic Kiss-1 mRNA level in the L and NS groups was significantly higher than that in the N and NYPF groups (P < 0.05), whereas hypothalamic RFRP-3 mRNA level in the L, NYPF, and NS groups was significantly lower than that in the N group (P < 0.05). At L-E1, E2 level of the L and NS groups was significantly higher than that of the N group (P < 0.01), whereas it was significantly lower in the NYPF group than that of the N, L, and NS groups (P < 0.01), and serum luteinizing hormone level of the L and NS groups was significantly higher than that of the N group (P < 0.05); levels of serum melatonin and ovarian melatonin receptor 1 (MT-1) mRNA in the L, NYPF, and NS groups were significantly lower than those in the N group (P < 0.05). At L-E2, the uterine organ index of the NYPF group was significantly lower than that of the L group (P < 0.05); and ovarian MT-1 mRNA level of the L and NS groups was significantly lower than that in the N group (P < 0.05).

Conclusions: NYPF can delay puberty onset in rats exposed to strong light for a prolonged duration, and regulation of the gene expression of Kiss-1 and RFRP-3 in the hypothalamus has been suggested as one of the mechanisms.

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