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首页> 外文期刊>Annals of the New York Academy of Sciences >Hedgehog Signaling A Biophysical or Biomechanical Modulator in Embryonic Development?
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Hedgehog Signaling A Biophysical or Biomechanical Modulator in Embryonic Development?

机译:刺猬信号在胚胎发育中的生物物理或生物力学调节剂?

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摘要

Although embryonic development is inevitably affected by biophysical or biomechanical processes, it has yet to be elucidated to what extent molecular mechanisms of development are modulated by such physical factors. The hedgehog family, including Sonic hedgehog (Shh), is the most well-known morphogens involved in the developmental pattern formation of various organs, such as the nervous system, face, limbs, and skin appendages. There are several unique features in hedgehog signaling including long-range diffusion or positive and negative feedback loops, suggesting the possible modification of hedgehog signaling by biophysical or biomechanical factors. Especially, the period of embryonic day 8-10 is characterized by various biomechanically regulated processes in mouse development, such as axial rotation and vasculoangiogenesis. We executed a series of experiments using a mouse whole embryo culture system to investigate the biomechanical roles of hedgehog signaling during this period. In this review, we examine various examples in which biophysical and biomechanical aspects of hedgehog signaling in development are revealed, including our own data using the mouse whole embryo culture system.
机译:尽管胚胎的发育不可避免地受到生物物理或生物力学过程的影响,但尚未阐明胚胎的发育在多大程度上受到这些物理因素的调节。包括声波刺猬(Shh)在内的刺猬家族是与各种器官(例如神经系统,面部,四肢和皮肤附件)的发育模式形成有关的最著名的形态发生子。刺猬信号有几个独特的特征,包括远距离扩散或正反馈回路和负反馈回路,表明刺猬信号可能被生物物理或生物力学因素修饰。特别地,胚胎第8-10天的时期的特征是小鼠发育中各种生物力学调节的过程,例如轴向旋转和血管新生。我们使用小鼠全胚培养系统执行了一系列实验,以研究此期间刺猬信号的生物力学作用。在这篇综述中,我们研究了揭示发育中刺猬信号的生物物理和生物力学方面的各种例子,包括我们使用小鼠整个胚胎培养系统的数据。

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