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Developmental corneal innervation: Regulation by multiple factors and interactions between nerves and specialized corneal epithelial cells.

机译:发育性角膜神经支配:受多种因素的调节以及神经与特定角膜上皮细胞之间的相互作用。

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摘要

Proper sensory innervation is necessary for the health and maintenance of the cornea, as well as corneal sensation, which protects the cornea from damage. Previous studies have described the architecture of corneal nerves in the adult and the stages of corneal innervation during development. However, little is known about how these stages are regulated so that the cornea is properly innervated. Here, corneal innervation in the chicken embryo was examined to determine the mechanisms that regulate nerve growth into the cornea during development.;The stages of corneal innervation described previously by others were re-examined using more sensitive immunohistochemical techniques to label corneal nerves with the TuJ-1 antibody, which recognizes an isoform of beta-tubulin thought to be neuron specific. These studies determined that (1) the stages of corneal innervation occur considerably earlier than previously described, (2) the squamous apical corneal epithelial cells are also labeled by the TuJ-1 antibody and (3) the corneal nerves contact these TuJ-1+ epithelial cells during corneal innervation. Immunohistochemistry, electron microscopy and immuno-electron microscopy determined that the nerves and the TuJ-1 + cells form synapse-like contacts. Also, the TuJ-1+ apical epithelial cells are mitotically active. These data suggest the TuJ-1 + apical epithelial cells are a specialized population of cells involved in the formation of synapse-like contacts with corneal nerves.;Innervation has been shown to be regulated during development by both positive and negative guidance cues that result in the proper innervation of a tissue. Here, RT-PCR, qRT-PCR and in situ hybridization were used to correlate the expression of known guidance cues with the stages of corneal innervation. The negative guidance cues semaphorin3A and Slit2, along with their receptors neuropilin1 and roundabout2, were expressed in a pattern consistent with a function in regulating the first stage of corneal innervation. Slit2 has also been proposed to have positive effect on the branching of sensory neurons. Immunoneutralization of Slit2 in ovo during the later stages of corneal innervation reduced the branching of nerves within the corneal epithelium. These results suggest that corneal innervation is regulated by multiple factors, and least one of them, Slit2, has multiple functions during the different stages.
机译:适当的感觉神经支配对于角膜的健康和维护以及角膜感觉是必要的,这可以保护角膜免受损害。先前的研究已经描述了成人角膜神经的结构以及发育过程中角膜神经支配的阶段。但是,对于如何调节这些阶段以使角膜得到适当的神经知之甚少。在这里,检查了鸡胚中的角膜神经支配关系,以确定调节发育过程中调节神经向角膜生长的机制。使用更敏感的免疫组织化学技术用TuJ标记角膜神经,对其他人先前描述的角膜支配神经的阶段进行了重新检查。 -1抗体,它识别被认为是神经元特异性的β-微管蛋白的同种型。这些研究确定(1)角膜神经支配的发生时间比先前描述的要早得多;(2)鳞状顶端的角膜上皮细胞也被TuJ-1抗体标记;(3)角膜神经接触这些TuJ-1 +角膜神经支配过程中的上皮细胞。免疫组织化学,电子显微镜和免疫电子显微镜确定神经和TuJ-1 +细胞形成类似突触的接触。另外,TuJ-1 +顶端上皮细胞有丝分裂活性。这些数据表明,TuJ-1 +顶端上皮细胞是参与与角膜神经形成突触样接触的细胞的专门化群体。研究表明,神经发育在发育过程中受到正向和负向指导信号的调节,导致组织的适当神经支配。在这里,RT-PCR,qRT-PCR和原位杂交被用来关联已知的指导线索的表达与角膜神经支配的阶段。阴性指导信号semaphorin3A和Slit2以及它们的受体Neuropilin1和环形交叉口2的表达方式与调节角膜神经支配第一阶段的功能一致。还提出了Slit2对感觉神经元的分支具有积极作用。 Slit2在卵内的角膜神经支配的后期免疫原化减少了角膜上皮内神经的分支。这些结果表明,角膜神经支配受多种因素调控,其中至少一个Slit2在不同阶段具有多种功能。

著录项

  • 作者

    Kubilus, James Kenneth.;

  • 作者单位

    Sackler School of Graduate Biomedical Sciences (Tufts University).;

  • 授予单位 Sackler School of Graduate Biomedical Sciences (Tufts University).;
  • 学科 Biology Cell.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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