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Development of Mechanosensory Innervation in the Frog, Xenopus Laevis

机译:青蛙,非洲爪蟾的机械感觉神经的发展。

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摘要

This study aims to investigate whether a specific target cell in the epidermis of the African clawed frog, Xenopus laevis, guides the initial outgrowth and pattern of Rohon-Beard (RB) cells and their survival. RB cells are primary mechanosensory neurons present during the early developmental stages of X. laevis. These neurons provide sensory input to the frog throughout embryonic and larval development before initiating apoptosis around the start of metamorphosis. The innervation of embryonic skin cells by RB neurons exhibits a distinct pattern that features encircling of a specific subset of epidermal cells. We hypothesize that encircled cells could be a recently discovered cell type that synthesizes and secretes serotonin. To test whether these small secretory cells (SSC) play a chemoattractive role in the innervation of primary mechanosensory neurons in X. laevis , we used a variety of approaches. By immunolabeling RB processes in the epidermis, we established the wild-type pattern and quantity of innervation. Gain of function and loss of function tests utilizing pharmacological modulators of serotonin, directly examined the role of SSCs. We showed that serotonin levels can be over or under expressed, and that there is a quantifiable response of the resulting mechanosensory innervation. RB neurons innervating larval skin lacking serotonin showed a lower frequency of encircled SSCs as well as a greater number of retraction bulbs. We also showed a correlation between behavior and serotonin levels in the epidermis. Loss of function treatments showed a higher proportion of animals failing to respond to stimuli and an increase in inappropriate escape responses. Finally, we related changes in X. laevis larval skin and mechanosensory neurons during metamorphosis to tissue remodeling and the transition to adult sensory function. This research provides insight into axonal guidance and the patterning of mechanosensory innervation in X. laevis. It stands as an example of how the innervation of the vertebrate skin is established and maintained between developmental stages.
机译:这项研究旨在调查非洲爪蛙Xenopus laevis表皮中的特定靶细胞是否指导Rohon-Beard(RB)细胞的初始生长和模式及其存活。 RB细胞是X.laevis早期发育阶段中存在的主要机械感觉神经元。这些神经元在整个胚胎和幼虫的发育过程中为青蛙提供感觉输入,然后在变态开始前后启动细胞凋亡。 RB神经元对胚胎皮肤细胞的神经支配表现出独特的模式,其特征是表皮细胞的特定子集环绕。我们假设被包围的细胞可能是合成和分泌5-羟色胺的最近发现的细胞类型。为了测试这些小分泌细胞(SSC)在X.laevis的主要机械感觉神经元的神经支配中是否发挥化学吸引作用,我们使用了多种方法。通过免疫标记表皮中的RB过程,我们建立了野生型模式和神经支配的数量。利用5-羟色胺的药理调节剂进行功能获得和功能丧失测试,直接检查了SSC的作用。我们表明,血清素水平可以高表达或低表达,并且所产生的机械感觉神经支配存在可量化的反应。缺乏血清素的支配幼虫皮肤的RB神经元显示出较低的环绕SSC频率以及大量的回缩球。我们还显示了表皮中行为与血清素水平之间的相关性。功能丧失治疗表明,较高比例的动物对刺激无反应,不适当的逃逸反应增加。最后,我们将变态X.laevis幼虫皮肤和机械感觉神经元的变化与组织重塑和向成人感觉功能的转变相关。这项研究提供了对X.laevis的轴突指导和机械感觉神经支配模式的见解。它代表了如何在发育阶段之间建立和维持脊椎动物皮肤的神经支配。

著录项

  • 作者

    Feuk, Peter Andrew.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Biology.;Developmental biology.;Neurosciences.
  • 学位 M.S.
  • 年度 2017
  • 页码 49 p.
  • 总页数 49
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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