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胚胎发育重大挑战:交联技术进展

Embryonic development grand challenge: crosslinking advances.

作者信息

Brand-Saberi Beate

机构信息

Department of Anatomy and Molecular Embryology, Institute of Anatomy Universitaetsstrasse, Ruhr University Bochum, Bochum, Germany.

出版信息

Front Cell Dev Biol. 2024 Sep 19;12:1467261. doi: 10.3389/fcell.2024.1467261. eCollection 2024.

DOI:10.3389/fcell.2024.1467261
PMID:39364136
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11446776/
Abstract

Research on embryonic development is entering into a new era. As a traditionally descriptive discipline within anatomy, embryologists have formed international consortia and digitized important histological collections for preservation and open access. Embryonic development has recently received a wider attention in context with temporo-spatial transcriptomics at single cell level. These can be expected to fuel the realization of the transdisciplinary significance of efforts to decipher embryonic development. Addressing its complexities encompasses a wealth of challenges that intersect across the domains of science, society, and politics underlining its outstanding importance as well as its inherently interdisciplinary nature. The challenges of this field are by no means confined to understanding the intricate biological mechanisms but also have humanitarian implications. To fully appreciate the mechanisms underlying human development, principles of embryogenesis have predominantly been analyzed employing animal models which allow us to broaden our view on developmental processes. As a result of recent pioneering work and technical progress centered around stem cell-based 3D approaches, we are entering into a historical new phase of learning about mammalian embryonic development. In vertebrates, a growing concern now focuses the reduction of animal experimentation. This perspective article outlines the major challenges in this amazing field that offer an enormous potential for basic biomedical sciences as well as related translational approaches if they are tackled in a multidisciplinary discourse.

摘要

胚胎发育研究正进入一个新时代。作为解剖学领域传统的描述性学科,胚胎学家们已经组建了国际联盟,并将重要的组织学馆藏数字化,以进行保存和开放获取。近期,胚胎发育在单细胞水平的时空转录组学背景下受到了更广泛的关注。这些有望推动人们认识到解读胚胎发育所做努力的跨学科意义。应对其复杂性涉及大量挑战,这些挑战跨越科学、社会和政治领域,凸显了其极其重要性以及固有的跨学科性质。该领域的挑战绝不仅限于理解复杂的生物学机制,还具有人道主义影响。为了充分理解人类发育的潜在机制,胚胎发生的原理主要通过动物模型进行分析,这使我们能够拓宽对发育过程的认识。由于近期围绕基于干细胞的三维方法开展的开创性工作和技术进步,我们正进入一个了解哺乳动物胚胎发育的历史性新阶段。在脊椎动物研究中,减少动物实验的问题日益受到关注。这篇观点文章概述了这个令人惊叹的领域中的主要挑战,如果通过多学科讨论来应对这些挑战,它们将为基础生物医学科学以及相关的转化方法带来巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f28a/11446776/5284d6c14c45/fcell-12-1467261-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f28a/11446776/5284d6c14c45/fcell-12-1467261-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f28a/11446776/5284d6c14c45/fcell-12-1467261-g001.jpg

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本文引用的文献

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A comprehensive review: synergizing stem cell and embryonic development knowledge in mouse and human integrated stem cell-based embryo models.全面综述:在基于小鼠和人类整合干细胞的胚胎模型中融合干细胞与胚胎发育知识
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A human embryonic limb cell atlas resolved in space and time.人类胚胎肢细胞时空图谱解析。
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Histone Modifications and Chondrocyte Fate: Regulation and Therapeutic Implications.组蛋白修饰与软骨细胞命运:调控及治疗意义
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Remodeling the epigenome and (epi)cytoskeleton: a new paradigm for co-regulation by methylation.重塑表观基因组和(表观)细胞骨架:甲基化共同调控的新范例。
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