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体外胚胎发生的非人灵长类动物胚胎及其进展。

Ex utero embryogenesis of non-human primate embryos and beyond.

机构信息

State Key Laboratory of Primate Biomedical Research, Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming, Yunnan 650500, China; Yunnan Key Laboratory of Primate Biomedical Research, Kunming, Yunnan 650500, China.

State Key Laboratory of Primate Biomedical Research, Institute of Primate Translational Medicine, Kunming University of Science and Technology, Kunming, Yunnan 650500, China; Yunnan Key Laboratory of Primate Biomedical Research, Kunming, Yunnan 650500, China.

出版信息

Curr Opin Genet Dev. 2023 Oct;82:102093. doi: 10.1016/j.gde.2023.102093. Epub 2023 Aug 11.

Abstract

Understanding cellular and molecular processes underlying the human early post-implantation development represents one of the most fundamental questions in development and stem cell biology. As embryos implant into the uterus a week after fertilization, human development beyond the blastocyst stage is extremely difficult to study due to the inaccessibility of embryos and ethical concerns. The advents in the human embryo in vitro culture system provide an easily accessible, tractable, and perturbable platform to dissect key developmental events of human early embryonic development. However, these studies stopped around gastrulation to technical and ethical limitations, and our understanding of human gastrulation and early organogenesis remains poor. As closely related species to humans, non-human primates (NHPs) are suitable surrogate species to interrogate mechanisms underpinning human embryonic development. Here, we review the most recent advances in embryo in vitro culture systems of NHP and discuss their potential optimization strategies and applications.

摘要

理解人类着床后早期胚胎发育的细胞和分子过程是发育和干细胞生物学中最基本的问题之一。在受精后一周,胚胎植入子宫,由于胚胎无法获取以及伦理问题,囊胚期以后的人类发育阶段极难研究。人类胚胎体外培养系统的出现为解析人类早期胚胎发育的关键发育事件提供了一个易于接近、易于处理和易于干扰的平台。然而,由于技术和伦理限制,这些研究在原肠胚形成期停止,我们对人类原肠胚形成和早期器官发生的理解仍然很差。作为与人类密切相关的物种,非人类灵长类动物(NHPs)是研究人类胚胎发育机制的合适替代物种。在这里,我们回顾了 NHP 胚胎体外培养系统的最新进展,并讨论了它们的潜在优化策略和应用。

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