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Effect of Genistein on the Onset of Puberty in Female Rats KCI 등재

암컷 흰쥐의 사춘기 개시에 미치는 Genistein의 효과

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Development & Reproduction (발생과 생식)
한국발생생물학회 (The Korea Society Of Developmental Biology)
초록

콩류 섭취가 유방암이나 골다공증, 그리고 심혈관계 질환 예방에 도움이 된다는 사실은 학계는 물론 일반인들에까지 큰 관심을 불러 일으키고 있다. 그러나 콩류, 특히 그 주성분인 genistein(GS)이 상기한 긍정적인 효과 외에도 여성의 생식계에 잠재적으로 부정적인 영향을 미칠 가능성에 대한 의문이 계속되어 왔다. 본 연구에서는 GS가 암컷 흰쥐의 사춘기 개시에 미치는 효과와 호르몬 수용체 등 이때의 다양한 생식 지표들의 변화들 조사하였다. GS(100

There is growing concern that dietary soy intake is associated with protection of breast cancer. However, questions persist on the potential adverse effects of the main soy constituent genistein(GS) on female reproductive physiology. In this study, we examined whether prepubertal exposure to GS affected on the onset of puberty and the associated reproductive parameters such as hormone receptor expressions in female rats. GS(100mg/kg/day) was administrated daily from postnatal day 25(PND 25) to the day when the first vaginal opening(VO) was observed, and the animals were sacrificed on the day after VO occurred. Gross anatomy and tissue weight were compared to test the GS's effect on the cell proliferation. Furthermore, histological studies were performed to assess the structural alterations in tissues. Specific radioimmunoassay(RIA) were carried out to measure serum LH levels. To determine the transcriptional changes in progesterone receptors(PR), total RNAs were extracted from ovary and uterus and were applied to semi-quantitative reverse transcription polymerase chain reaction(RT-PCR). As a results, advanced VO was shown in the GS group(PND ) compared to the vehicle group (PND ). GS treatment significantly increased wet weight of ovaries and uteri compared to the vehicle group. Increased serum LH levels were also shown in the GS group. Graafian follicles and corpora lutea(CL) were observed only in the ovaries from GS treated animals. Similarly, hypertrophy of luminal and glandular uterine epithelium were found only in the GS group. Collectively, these effects were probably due to the estrogenic effects of GS. In the semi-quantitative RT-PCR studies, the transcriptional activities of PR in both ovary and uterus from GS-treated group were significantly higher than those from the vehicle group. The present studies demonstrated that acute exposure to GS, at levels comparable to the ranges of human exposure, during the critical period of prepubertal stage activates the reproductive system resulting precocious puberty in immature female rats.

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