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A general mathematical model of transduction events in mechano-sensory stretch receptors

机译:力学感觉拉伸受体中转导事件的通用数学模型

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摘要

Crayfish (Astacus astacus) muscle stretch receptors show strong homology to mammalian muscle spindles and bipolar neurons in D. melanogaster. All are typical, non-ciliated, stretch-sensitive, afferent neurons. Such receptors are observed in many species and perform an important sensory role. However, they are poorly characterised. A previous study reported a bio-mechanical and behavioural model of A. astacus stretch receptors, which used the principles of elasticity and tension in a spring to describe the adaptation of a mechano-sensory ending. This model described the changing mechano-sensory currents in the receptor when subjected to a stretch protocol. Here, we re-implement and extend this model. Notably, we introduce additional descriptions of voltage-gated channels that are suggested to contribute to stretch receptor mechano-transduction. Our model presents a more complete picture of the initiation of the mechano-receptor potential in response to a stretching stimulus. The inclusion of voltage-dependent sodium and potassium currents in addition to the initial mechano-sensitive sodium current allowed the model to account for most of the initial stretch response of the receptor. This preliminary model has potential for extension to describe fully the behaviour of non-ciliated mechano-sensors across species and predict the molecular mediators of mechano-transduction.
机译:小龙虾(Astacus astacus)肌肉拉伸受体与D. melanogaster中的哺乳动物肌肉纺锤体和双极神经元具有很强的同源性。所有这些都是典型的,非纤毛,伸展敏感的传入神经元。在许多物种中都观察到这种受体,并且它们起着重要的感觉作用。但是,它们的特征很差。先前的研究报道了一种A. astacus拉伸受体的生物力学和行为模型,该模型利用弹簧中的弹性和张力原理来描述机械感觉末端的适应性。该模型描述了接受拉伸方案时受体中机械感应电流的变化。在这里,我们重新实现并扩展此模型。值得注意的是,我们介绍了电压门控通道的其他描述,这些描述有助于伸张受体机械转导。我们的模型提供了响应于拉伸刺激的机械受体电位启动的更完整图片。除了初始的对机械敏感的钠电流外,还包括电压依赖性钠电流和钾电流,使得该模型可以解释受体的大部分初始拉伸反应。该初步模型具有扩展潜力,可以全面描述跨物种的非纤毛机械传感器的行为,并预测机械转导的分子介体。

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  • 来源
    《Network》 |2011年第4期|p.133-142|共10页
  • 作者单位

    Doctoral Training Centre in Neuroinformatics and Neural Computation University of Edinburgh, 10 Crichton St., Edinburgh, UK,Thomas Suslak, Informatics Forum, 10 Crichton St., Edinburgh, UK, EH8 9AB;

    Institute for Adaptive and Neural Computation, and University of Edinburgh, 10 Crichton St., Edinburgh, UK;

    Centre for Integrative Physiology,University of Edinburgh, 10 Crichton St., Edinburgh, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ion channel; mechanosensation; muscle spindle; stretch receptor; modelling;

    机译:离子通道机械感觉肌梭;拉伸感受器造型;
  • 入库时间 2022-08-18 01:49:59

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