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内皮型一氧化氮合酶基因对小鼠模型排卵和绝经的遗传贡献。

Genetic contributions of the endothelial nitric oxide synthase gene to ovulation and menopause in a mouse model.

作者信息

Tempfer C, Moreno R M, O'Brien W E, Gregg A R

机构信息

University of Vienna, Vienna, Austria.

出版信息

Fertil Steril. 2000 May;73(5):1025-31. doi: 10.1016/s0015-0282(00)00417-9.

DOI:10.1016/s0015-0282(00)00417-9
PMID:10785232
Abstract

OBJECTIVE

To investigate the influence of the endothelial nitric oxide synthase gene (Nos3) on ovulatory capacity and reproductive senescence.

DESIGN

Prospective, controlled study.

SETTING

Academic research institution.

SUBJECT(S): Laboratory mice with targeted mutagenesis of Nos3.

INTERVENTION(S): Hyperstimulation protocol, oocyte culture, and ovarian histology using wild-type (Nos3(+/+); n = 20), heterozygous (Nos3(+/m); n = 39), and homozygous deficient (Nos3(m/m); n = 11) female mice; observation of reproductive outcomes.

MAIN OUTCOME MEASURE(S): Number and survival of oocytes; onset of menarche and menopause.

RESULT(S): The mean number of superovulated oocytes (18 +/- 36 vs. 41 +/- 4) and the 48-hour overall survival rate of embryos (65% vs. 81%) were significantly reduced for Nos3(m/m) female mice compared with Nos3(+/+) female mice. Nos3(m/m) females showed a significantly reduced number and size of antral follicles and corpora lutea compared with wild-type controls. Compared with Nos3(+/m) x Nos3(+/m) breedings, Nos3(m/m) x Nos3(m/m) breedings showed a higher female age at first litter (76.2 +/- 10.3 vs. 107.8 +/- 26.6 days), fewer litters (10.5 +/- 3.6 vs. 7. 8 +/- 4.2), and a lower female age at reproductive senescence (400.2 +/- 64.5 vs. 332.1 +/- 27.4 days), respectively.

CONCLUSION(S): Our data suggest that Nos3 deficiency is associated with reduced ovulatory capacity and impaired early embryonic viability and that it influences the onset of menarche and menopause.

摘要

目的

研究内皮型一氧化氮合酶基因(Nos3)对排卵能力和生殖衰老的影响。

设计

前瞻性对照研究。

地点

学术研究机构。

研究对象

Nos3基因靶向突变的实验室小鼠。

干预措施

对野生型(Nos3(+/+);n = 20)、杂合子(Nos3(+/m);n = 39)和纯合缺陷型(Nos3(m/m);n = 11)雌性小鼠采用超促排卵方案、卵母细胞培养和卵巢组织学检查;观察生殖结局。

主要观察指标

卵母细胞数量和存活率;初潮和绝经时间。

结果

与Nos3(+/+)雌性小鼠相比,Nos3(m/m)雌性小鼠超排卵母细胞的平均数量(18±36对41±4)和胚胎48小时总体存活率(65%对81%)显著降低。与野生型对照组相比,Nos3(m/m)雌性小鼠的窦状卵泡和黄体数量及大小显著减少。与Nos3(+/m)×Nos3(+/m)交配相比,Nos3(m/m)×Nos3(m/m)交配的首次产仔时雌性年龄更高(76.2±10.3对107.8±26.6天),产仔数更少(10.5±3.6对7.8±4.2),生殖衰老时雌性年龄更低(400.2±64.5对332.1±27.4天)。

结论

我们的数据表明,Nos3缺陷与排卵能力降低、早期胚胎活力受损有关,并且影响初潮和绝经时间。

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