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鼻子与神经元:外周嗅觉通路中的诱导、形态发生及神经元分化

Noses and neurons: induction, morphogenesis, and neuronal differentiation in the peripheral olfactory pathway.

作者信息

Balmer Curtis W, LaMantia Anthony-Samuel

机构信息

Department of Cell and Molecular Physiology and UNC Neuroscience Center, The University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599, USA.

出版信息

Dev Dyn. 2005 Nov;234(3):464-81. doi: 10.1002/dvdy.20582.

Abstract

Non-axial mesenchymal/epithelial (M/E) induction guides peripheral olfactory pathway differentiation using cellular and molecular mechanisms similar to those in the developing limbs, aortic arches, and branchial arches. At each of these bilaterally symmetric sites off the midline axis, a thickened ectodermal epithelium is apposed to a specialized mesenchyme derived largely, but not exclusively, from the neural crest. The capacity of M/E interaction in the olfactory primordia (the combined olfactory placodal epithelium and adjacent mesenchyme) to induce a distinct class of sensory receptor neurons-olfactory receptor neurons-suggests that this mechanism has been modified to accommodate neurogenesis, neurite outgrowth, and axon guidance, in addition to musculoskeletal differentiation, chondrogenesis, and vasculogenesis. Accordingly, although the olfactory primordia share signaling molecules and transcriptional regulators with other bilaterally symmetric, non-axial sites such as limb buds, their activity may be adapted to mediate distinct aspects of cellular differentiation and process outgrowth during the initial assembly of a sensory pathway-the primary olfactory pathway-during early forebrain development.

摘要

非轴向间充质/上皮(M/E)诱导通过与发育中的肢体、主动脉弓和鳃弓相似的细胞和分子机制来引导外周嗅觉通路分化。在这些偏离中线轴的双侧对称部位中的每一个部位,增厚的外胚层上皮与主要但并非完全源自神经嵴的特化间充质相邻。嗅觉原基(联合的嗅觉基板上皮和相邻间充质)中M/E相互作用诱导一类独特的感觉受体神经元——嗅觉受体神经元的能力表明,除了肌肉骨骼分化、软骨形成和血管生成外,该机制已被调整以适应神经发生、神经突生长和轴突导向。因此,尽管嗅觉原基与其他双侧对称的非轴向部位(如肢芽)共享信号分子和转录调节因子,但它们的活性可能经过调整,以在早期前脑发育过程中感觉通路——初级嗅觉通路——的初始组装期间介导细胞分化和突起生长的不同方面。

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