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膳食补充硒可改善衰老小鼠的雌性生殖效率。

Dietary Selenium Supplementation Ameliorates Female Reproductive Efficiency in Aging Mice.

作者信息

Yang Haoxuan, Qazi Izhar Hyder, Pan Bo, Angel Christiana, Guo Shichao, Yang Jingyu, Zhang Yan, Ming Zhang, Zeng Changjun, Meng Qingyong, Han Hongbing, Zhou Guangbin

机构信息

Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu 611130, China.

Department of Veterinary Anatomy and Histology, Shaheed Benazir Bhutto University of Veterinary and Animal Sciences, Sakrand 67210, Pakistan.

出版信息

Antioxidants (Basel). 2019 Dec 11;8(12):634. doi: 10.3390/antiox8120634.

Abstract

Female reproductive (ovarian) aging is distinctively characterized by a markedly reduced reproductive function due to a remarkable decline in quality and quantity of follicles and oocytes. Selenium (Se) has been implicated in playing many important biological roles in male fertility and reproduction; however, its potential roles in female reproduction, particularly in aging subjects, remain poorly elucidated. Therefore, in the current study we used a murine model of female reproductive aging and elucidated how different Se-levels might affect the reproductive efficiency in aging females. Our results showed that at the end of an 8-week dietary trial, whole-blood Se concentration and blood total antioxidant capacity (TAOC) were significantly reduced in Se-deficient (0.08 mg Se/kg; Se-D) mice, whereas both of these biomarkers were significantly higher in inorganic (0.33 mg/kg; ISe-S) and organic (0.33 mg/kg; OSe-S) Se-supplemented groups. Similarly, compared to the Se-D group, Se supplementation significantly ameliorated the maintenance of follicles and reduced the rate of apoptosis in ovaries. Meanwhile, the rate of in vitro-produced embryos resulting from germinal vesicle (GV) oocytes was also significantly improved in Se-supplemented (ISe-S and OSe-S) groups compared to the Se-D mice, in which none of the embryos developed to the hatched blastocyst stage. RT-qPCR results revealed that mRNA expression of , , , , and genes in ovaries of aging mice was differentially modulated by dietary Se levels. A considerably higher mRNA expression of , , , and was observed in Se-supplemented groups compared to the Se-D group. Similarly, mRNA expression of and was significantly lower in Se-supplemented groups. Immunohistochemical assay also revealed a significantly higher expression of GPX4 in Se-supplemented mice. Our results reasonably indicate that Se deficiency (or marginal levels) can negatively impact the fertility and reproduction in females, particularly those of an advancing age, and that the Se supplementation (inorganic and organic) can substantiate ovarian function and overall reproductive efficiency in aging females.

摘要

女性生殖(卵巢)衰老的显著特征是由于卵泡和卵母细胞的数量和质量显著下降,导致生殖功能明显降低。硒(Se)在男性生育和生殖中发挥着许多重要的生物学作用;然而,其在女性生殖中的潜在作用,特别是在衰老个体中的作用,仍未得到充分阐明。因此,在本研究中,我们使用了女性生殖衰老的小鼠模型,阐明了不同硒水平如何影响衰老雌性小鼠的生殖效率。我们的结果表明,在为期8周的饮食试验结束时,缺硒(0.08 mg Se/kg;Se-D)小鼠的全血硒浓度和血液总抗氧化能力(TAOC)显著降低,而在无机硒(0.33 mg/kg;ISe-S)和有机硒(0.33 mg/kg;OSe-S)补充组中,这两种生物标志物均显著升高。同样,与Se-D组相比,补充硒显著改善了卵泡的维持,并降低了卵巢中的细胞凋亡率。同时,与Se-D小鼠相比,补充硒(ISe-S和OSe-S)组中由生发泡(GV)卵母细胞产生的体外胚胎率也显著提高,在Se-D小鼠中没有胚胎发育到孵化囊胚阶段。RT-qPCR结果显示,衰老小鼠卵巢中、、、、和基因的mRNA表达受饮食硒水平的差异调节。与Se-D组相比,补充硒组中、、和的mRNA表达明显更高。同样,补充硒组中和的mRNA表达明显更低。免疫组织化学分析还显示,补充硒的小鼠中GPX4的表达明显更高。我们的结果合理地表明,缺硒(或边缘水平)会对雌性动物的生育和生殖产生负面影响,特别是对年龄较大的雌性动物,而补充硒(无机硒和有机硒)可以增强衰老雌性动物的卵巢功能和整体生殖效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/890b/6969897/f025568e93db/antioxidants-08-00634-g001.jpg

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