表观遗传时钟为解开子宫老化之谜提供了线索。

IF 14.8 1区 医学 Q1 OBSTETRICS & GYNECOLOGY Human Reproduction Update Pub Date : 2023-05-02 DOI:10.1093/humupd/dmac042
Pavel I Deryabin, Aleksandra V Borodkina
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引用次数: 5

摘要

背景:产妇年龄上升和与年龄相关的生育率下降是现代生殖医学面临的全球性挑战。临床医生和研究人员在这方面特别关注卵巢老化和激素不足。然而,子宫衰老往往被排除在画面之外,大多数生殖临床医生几乎一致认为子宫组织中没有与年龄相关的功能衰退。因此,大多数现有的治疗年龄相关性着床率下降的技术主要是基于激素补充和卵母细胞捐赠。解决子宫老化问题可能会导致对这些方法的调整。目的和理由:随着衰老信息理论的发展,对子宫衰老及其减缓的可能性的关注出现了,该理论认为基因组不稳定和表观遗传景观的侵蚀是大多数细胞和组织功能与年龄相关的衰退的重要驱动因素。通过测量表观遗传时钟的滴答声,可以评估与年龄相关的这种景观的平滑和组织功能的下降。在这篇综述中,我们探讨子宫是否经历与年龄相关的改变使用这种优雅的方法。我们分析了子宫内膜表观遗传时钟的现有数据,强调了提高这种循环组织中时钟准确性的方法,推测了子宫内膜病理的进展可能通过表观遗传时钟的改变速度来预测,并讨论了减缓这些时钟滴答声的可能性。检索方法:本综述的数据通过Medline、PubMed和Google Scholar进行检索。从相关文章中选择了使用搜索词“衰老”、“母亲年龄”、“女性生殖”、“子宫”、“子宫内膜”、“植入”、“去个性化”、“表观遗传时钟”、“生物年龄”、“DNA甲基化”、“生育能力”和“不孕症”的参考文献。从1985年到2022年,共收录了95篇英文文章,其中6篇描述了使用表观遗传时钟来评估子宫/子宫内膜老化。结果:Horvath和DNAm表型表观遗传时钟的应用表明,子宫内膜与实足年龄的相关性较差。提出了几种方法来增强表观遗传时钟对子宫内膜的预测能力。第一种方法是增加训练数据集中的样本数量,就像Zang时钟一样,或者使用更复杂的时钟构建算法,就像AltumAge时钟一样。第二种方法是根据子宫内膜的动态特性来调整生物钟。使用任何一种方法都显示子宫内膜与实足年龄有很强的相关性,为该组织与年龄相关的功能衰退提供了确凿的证据。此外,通过表观遗传时钟估计的年龄加速/减速可能是一种很有前途的工具,可以预测或深入了解各种子宫内膜病理的起源,包括复发性植入失败、癌症和子宫内膜异位症。最后,有几种策略可以减缓甚至逆转表观遗传时钟,从而降低与年龄相关的子宫损伤的风险。更广泛的影响:应该考虑子宫因素,以及卵巢问题,以纠正女性生育能力随着年龄的下降。表观遗传时钟可以测试,以获得对各种子宫内膜疾病更深入的了解。
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Epigenetic clocks provide clues to the mystery of uterine ageing.

Background: Rising maternal ages and age-related fertility decline are a global challenge for modern reproductive medicine. Clinicians and researchers pay specific attention to ovarian ageing and hormonal insufficiency in this regard. However, uterine ageing is often left out of the picture, with the majority of reproductive clinicians being close to unanimous on the absence of age-related functional decline in the uterine tissues. Therefore, most existing techniques to treat an age-related decline in implantation rates are based primarily on hormonal supplementation and oocyte donation. Solving the issue of uterine ageing might lead to an adjustment to these methods.

Objective and rationale: A focus on uterine ageing and the possibility of slowing it emerged with the development of the information theory of ageing, which identifies genomic instability and erosion of the epigenetic landscape as important drivers of age-related decline in the functionality of most cells and tissues. Age-related smoothing of this landscape and a decline in tissue function can be assessed by measuring the ticking of epigenetic clocks. Within this review, we explore whether the uterus experiences age-related alterations using this elegant approach. We analyse existing data on epigenetic clocks in the endometrium, highlight approaches to improve the accuracy of the clocks in this cycling tissue, speculate on the endometrial pathologies whose progression might be predicted by the altered speed of epigenetic clocks and discuss the possibilities of slowing down the ticking of these clocks.

Search methods: Data for this review were identified by searches of Medline, PubMed and Google Scholar. References from relevant articles using the search terms 'ageing', 'maternal age', 'female reproduction', 'uterus', 'endometrium', 'implantation', 'decidualization', 'epigenetic clock', 'biological age', 'DNA methylation', 'fertility' and 'infertility' were selected. A total of 95 articles published in English between 1985 and 2022 were included, six of which describe the use of the epigenetic clock to evaluate uterine/endometrium ageing.

Outcomes: Application of the Horvath and DNAm PhenoAge epigenetic clocks demonstrated a poor correlation with chronological age in the endometrium. Several approaches were suggested to enhance the predictive power of epigenetic clocks for the endometrium. The first was to increase the number of samples in the training dataset, as for the Zang clock, or to use more sophisticated clock-building algorithms, as for the AltumAge clock. The second method is to adjust the clocks according to the dynamic nature of the endometrium. Using either approach revealed a strong correlation with chronological age in the endometrium, providing solid evidence for age-related functional decline in this tissue. Furthermore, age acceleration/deceleration, as estimated by epigenetic clocks, might be a promising tool to predict or to gain insights into the origin of various endometrial pathologies, including recurrent implantation failure, cancer and endometriosis. Finally, there are several strategies to slow down or even reverse epigenetic clocks that might be applied to reduce the risk of age-related uterine impairments.

Wider implications: The uterine factor should be considered, along with ovarian issues, to correct for the decline in female fertility with age. Epigenetic clocks can be tested to gain a deeper understanding of various endometrial disorders.

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来源期刊
Human Reproduction Update
Human Reproduction Update 医学-妇产科学
CiteScore
28.80
自引率
1.50%
发文量
38
期刊介绍: Human Reproduction Update is the leading journal in its field, boasting a Journal Impact FactorTM of 13.3 and ranked first in Obstetrics & Gynecology and Reproductive Biology (Source: Journal Citation ReportsTM from Clarivate, 2023). It specializes in publishing comprehensive and systematic review articles covering various aspects of human reproductive physiology and medicine. The journal prioritizes basic, transitional, and clinical topics related to reproduction, encompassing areas such as andrology, embryology, infertility, gynaecology, pregnancy, reproductive endocrinology, reproductive epidemiology, reproductive genetics, reproductive immunology, and reproductive oncology. Human Reproduction Update is published on behalf of the European Society of Human Reproduction and Embryology (ESHRE), maintaining the highest scientific and editorial standards.
期刊最新文献
Defects in mRNA splicing and implications for infertility: a comprehensive review and in silico analysis. Parental conditions, modifiable lifestyle factors, and first trimester growth and development: a systematic review. Fertility in transgender and gender diverse people: systematic review of the effects of gender-affirming hormones on reproductive organs and fertility Functional hypothalamic amenorrhoea and polycystic ovarian morphology: a narrative review about an intriguing association. Celebrating 30 years at Human Reproduction Update.
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