DNA损伤
卵巢癌
化疗
卵巢储备
机制(生物学)
保持生育能力
自噬
卵巢
生育率
医学
癌症研究
抗苗勒氏激素
卵巢早衰
卵巢早衰
细胞凋亡
肿瘤科
生物信息学
生物
癌症
内科学
不育
激素
怀孕
遗传学
DNA
哲学
认识论
环境卫生
人口
作者
Peikun Zhao,Chenxi Guo,Huijia Du,Yuan Xiao,Jiaping Su,Xiaohui Wang,Willian S. B. Yeung,Guangxin Li,Tianren Wang
标识
DOI:10.1080/14647273.2023.2275764
摘要
More than 9.2 million women worldwide suffer from cancer, and about 5% of them are at reproductive age. Chemotherapy-induced impairment of fertility affects the quality of life of these women. Several chemotherapeutic agents have been proven to cause apoptosis and autophagy by inducing DNA damage and cellular stress. Injuries to the ovarian stroma and micro-vessel network are also considered as pivotal factors resulting in ovarian dysfunction induced by chemotherapeutic agents. Primordial follicle pool over-activation may also be the mechanism inducing damage to the ovarian reserve. Although many studies have explored the mechanisms involved in chemotherapy-induced reproductive toxicity, the exact molecular mechanisms have not been elucidated. It is essential to understand the mechanisms involved in ovarian damage, in order to develop potential protective treatments to preserve fertility. In this article, we reviewed the current knowledge on the mechanism of chemotherapy-induced ovarian damage and possible protective strategies that prevent the ovary from such damages.
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