Do the Mammalian Artificial Oocytes Repair Reproductive Dysfunctions in Mammalian Species?: A Review

A.A. Mohammed, I. AlGherair, S. Al-Suwaiegh, S. Al-Awaid, A. Mohammed
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Abstract

Artificial oocytes were used of different mammalian species for repairing reproductive dysfunctions. Artificial oocytes are those created in vitro using enucleated germinal vesicle, metaphase I and metaphase II oocytes followed by embryonic cells, somatic cells, pluripotent stem cells and germ cells nuclear transfer. Artificial oocytes are under development, they have the potential to revolutionize reproduction in mammalian species. The potential applications of artificial oocytes include 1) treatment of infertility as premature ovarian failure, ovarian cancer, or other conditions that damage the ovaries, 2) preservation of fertility, 3) creating cloned and transgenic animals. While artificial oocytes have the potential to revolutionize reproductive medicine, there are still a number of challenges that need to be addressed before they can be effectively and safely used in humans including the adapting efficient and safe enucleation techniques. Furthermore, cellular reprogramming is the biggest obstacle for creating artificial oocytes in addition to activation procedures to ensure that artificial oocytes are genetically and epigenetically normal and producing healthy offspring. Several studies are designed to overcome these challenges and there is significant progresses being made. Offspring are obtained in several animals species whereas developed blastocysts were obtained in humans. This review is developed and implemented to discuss the progress in creation of “artificial oocytes” in addition to the factors affecting the developmental competence of reconstructed oocytes.
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哺乳动物人工卵母细胞能修复哺乳动物的生殖功能障碍吗?综述
人工卵母细胞用于修复不同哺乳动物的生殖功能障碍。人造卵母细胞是利用无核生殖泡、胚胎细胞、体细胞、多能干细胞和生殖细胞核移植后的Ⅰ期和Ⅱ期卵母细胞在体外制造的。人造卵母细胞正在开发中,它们有可能彻底改变哺乳动物的生殖方式。人工卵母细胞的潜在应用包括:1)治疗卵巢早衰、卵巢癌或其他损害卵巢的不孕症;2)保留生育能力;3)创造克隆动物和转基因动物。虽然人造卵母细胞有可能给生殖医学带来革命性的变化,但在有效、安全地用于人类之前,仍有许多挑战需要解决,包括适应高效、安全的去核技术。此外,细胞重编程是创建人工卵母细胞的最大障碍,此外还需要激活程序,以确保人工卵母细胞的基因和表观遗传正常,并产生健康的后代。一些研究旨在克服这些挑战,并取得了重大进展。在多个动物物种中获得了后代,而在人类中则获得了发育成熟的囊胚。本综述旨在讨论 "人造卵母细胞 "的创造进展,以及影响重建卵母细胞发育能力的因素。
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