New directions to understand and learn from embryonic diapause in mammals

P. Comizzoli
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引用次数: 3

Abstract

Embryonic diapause is a key strategy to extend pregnancy until conditions are ideal for birth and postnatal survival. There is still a lot to discover about this unique phenomenon observed in more than 130 mammalian species. The present review aims at complementing existing research efforts by (1) identifying new directions for a better understanding of embryonic diapause in mammals and (2) considering this complex mechanism as a source of inspiration for other areas in cellular biology. Comparative explorations in different species of new molecular players associated with the use of emerging technologies in the study of embryos (epigenetics for instance), the uterus (immune cells, microbiota, cell-free DNA), and the whole organism (remote sensing, systems biology) will shed some new lights on embryonic diapause characterizations. Collective results of advanced studies should be integrated into the measurement of climate and environmental changes potentially influencing the physiology of females and their arrested embryos. Interestingly, lessons from nonmammalian species using similar strategies (killifish for instance) could also improve our understanding of this unique phenomenon. Furthermore, studying embryonic diapause offers a great opportunity to decipher other cellular mechanisms and develop new applications (stem cell technologies, cancer treatments, contraceptive methods, short-term storage of embryos, or early fetal loss prevention). Overall, these new ideas and directions should define some themes for a future International Symposium on Embryonic Diapause.
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理解和学习哺乳动物胚胎滞育的新方向
胚胎滞育是延长妊娠的关键策略,直到条件是理想的出生和产后生存。在130多种哺乳动物中观察到的这种独特现象还有很多有待发现的地方。本综述旨在通过(1)为更好地理解哺乳动物的胚胎滞育确定新的方向(2)将这一复杂的机制作为细胞生物学其他领域的灵感来源来补充现有的研究工作。在胚胎(例如表观遗传学)、子宫(免疫细胞、微生物群、无细胞DNA)和整个生物体(遥感、系统生物学)的研究中,利用新兴技术对不同物种的新分子参与者进行比较探索,将为胚胎滞育表征提供一些新的亮点。应将先进研究的集体结果纳入对气候和环境变化的测量中,这些变化可能影响到雌性及其胚胎的生理机能。有趣的是,非哺乳动物物种使用类似策略(例如鳉鱼)的经验教训也可以提高我们对这种独特现象的理解。此外,研究胚胎滞育为破译其他细胞机制和开发新的应用(干细胞技术、癌症治疗、避孕方法、胚胎短期储存或早期胎儿丢失预防)提供了很好的机会。总的来说,这些新的想法和方向应该为未来的胚胎滞育国际研讨会确定一些主题。
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