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激光热刺激在培养的大鼠伤害感受神经元中的时空总和。

Temporal and spatial summation of laser heat stimuli in cultured nociceptive neurons of the rat.

机构信息

Department of Neurophysiology, Mannheim Center for Translational Neuroscience (MCTN), Medical Faculty Mannheim, Heidelberg University, Ludolf-Krehl-Str. 13-17, 68167, Mannheim, Germany.

Department of Child and Adolescent Psychiatry, Psychotherapy and Psychosomatics, Rheinhessen Clinics, Hartmühlenweg 2-4, 55122, Mainz, Germany.

出版信息

Pflugers Arch. 2022 Sep;474(9):1003-1019. doi: 10.1007/s00424-022-02728-1. Epub 2022 Jul 22.

Abstract

We studied the efficacy of a near-infrared laser (1475 nm) to activate rat dorsal root ganglion (DRG) neurons with short punctate radiant heat pulses (55 µm diameter) and investigated temporal and spatial summation properties for the transduction process for noxious heat at a subcellular level. Strength-duration curves (10-80 ms range) indicated a minimum power of 30.2mW for the induction of laser-induced calcium transients and a chronaxia of 13.9 ms. However, threshold energy increased with increasing stimulus duration suggesting substantial radial cooling of the laser spot. Increasing stimulus duration demonstrated suprathreshold intensity coding of calcium transients with less than linear gains (Stevens exponents 0.29/35mW, 0.38/60mW, 0.46/70mW). The competitive TRPV1 antagonist capsazepine blocked responses to short near-threshold stimuli and significantly reduced responses to longer duration suprathreshold heat. Heating 1/3 of the soma of a neuron was sufficient to induce calcium transients significantly above baseline (p < 0.05), but maximum amplitude was only achieved by centering the laser over the entire neuron. Heat-induced calcium increase was highest in heated cell parts but rapidly reached unstimulated areas reminiscent of spreading depolarization and opening of voltage-gated calcium channels. Full intracellular equilibrium took about 3 s, consistent with a diffusion process. In summary, we investigated transduction mechanisms for noxious laser heat pulses in native sensory neurons at milliseconds temporal and subcellular spatial resolution and characterized strength duration properties, intensity coding, and spatial summation within single neurons. Thermal excitation of parts of a nociceptor spread via both membrane depolarization and intracellular calcium diffusion.

摘要

我们研究了近红外激光(1475nm)通过短点状辐射热脉冲(55µm 直径)激活大鼠背根神经节(DRG)神经元的功效,并在亚细胞水平上研究了有害热的转导过程的时程和空间总和特性。强度-持续时间曲线(10-80ms 范围)表明,激光诱导钙瞬变的诱导最小功率为 30.2mW,驰豫时间为 13.9ms。然而,随着刺激持续时间的增加,阈值能量增加,表明激光点的径向冷却很大。增加刺激持续时间显示钙瞬变的超阈值强度编码具有小于线性的增益(Stevens 指数 0.29/35mW、0.38/60mW、0.46/70mW)。竞争性 TRPV1 拮抗剂辣椒素阻断了对短近阈值刺激的反应,并显著降低了对较长持续时间超阈值热的反应。加热神经元的 1/3 体可以引起钙瞬变显著高于基线(p<0.05),但只有将激光聚焦在整个神经元上才能达到最大幅度。加热引起的钙增加在加热的细胞部分最高,但很快达到未刺激区域,类似于扩散去极化和电压门控钙通道的开放。完全的细胞内平衡大约需要 3 秒,与扩散过程一致。总之,我们在毫秒时间和亚细胞空间分辨率下研究了天然感觉神经元中有害激光热脉冲的转导机制,并描述了单个神经元内的强度-持续时间特性、强度编码和空间总和。伤害感受器的部分热激发通过膜去极化和细胞内钙扩散来传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b7/9393153/af822fb343b7/424_2022_2728_Fig1_HTML.jpg

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