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In vitro systems: A new window to the segmentation clock

机译:体外系统:分割时钟的新窗口

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摘要

Segmental organization of the vertebrate body plan is established by the segmentation clock, a molecular oscillator that controls the periodicity of somite formation. Given the dynamic nature of the segmentation clock, in vivo studies in vertebrate embryos pose technical challenges. As an alternative, simpler models of the segmentation clock based on primary explants and pluripotent stem cells have recently been developed. These ex vivo and in vitro systems enable more quantitative analysis of oscillatory properties and expand the experimental repertoire applicable to the segmentation clock. Crucially, by eliminating the need for model organisms, in vitro models allow us to study the segmentation clock in new species, including our own. The human oscillator was recently recapitulated using induced pluripotent stem cells, providing a window into human development. Certainly, a combination of in vivo and in vitro work holds the most promising potential to unravel the mechanisms behind vertebrate segmentation.
机译:脊椎动物身体计划的节段组织是由节段时钟建立的,这是一种控制体节形成周期的分子振荡器。鉴于分割时钟的动态性质,脊椎动物胚胎的体内研究带来了技术挑战。另一种选择是,最近开发了基于原代外植体和多能干细胞的更简单的分割时钟模型。这些离体和体外系统能够对振荡特性进行更多定量分析,并扩展适用于分段时钟的实验曲目。至关重要的是,通过消除对模型生物的需求,体外模型使我们能够研究新物种的分割时钟,包括我们自己的物种。人类振荡器最近通过诱导多能干细胞被重新命名,为人类发育提供了一个窗口。当然,体内和体外研究的结合在揭示脊椎动物分割背后的机制方面具有最有希望的潜力。

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