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体内细胞内记录的小鼠皮肤感觉神经元的生理特性:温度对胞体膜特性的影响。

Physiological properties of mouse skin sensory neurons recorded intracellularly in vivo: temperature effects on somal membrane properties.

作者信息

Boada M Danilo, Woodbury C Jeffery

机构信息

Department of Zoology and Physiology, University of Wyoming, Laramie, WY 82071, USA.

出版信息

J Neurophysiol. 2007 Aug;98(2):668-80. doi: 10.1152/jn.00264.2007. Epub 2007 May 30.

Abstract

Recent combined analyses of the structural, functional, and molecular attributes of individual skin sensory neurons using semi-intact in vitro preparations from mice have provided a wealth of novel insights into nociceptor biology. How these findings translate to more natural conditions nevertheless remains unresolved. Toward this end, intracellular recordings were obtained from 362 physiologically identified dorsal root ganglion (DRG) neurons in a new in vivo mouse preparation developed for combined structure/function analyses of individual skin sensory neurons. Recordings were conducted at thoracic levels in adult decorticate mice for comparison with in vitro findings from the same trunk region. In all, 270 neurons were recorded at DRG temperatures tightly regulated at normal core values to establish a baseline and 137 skin sensory neurons were included in detailed analyses of somal properties for comparisons with similar data obtained under reduced temperatures mirroring in vitro conditions. Recovery of Neurobiotin-labeled central projections was crucial for verifying perceived afferent identity of certain neurons. Further, profound temperature dependency was seen across diverse physiological properties. Indeed, the broad, inflected somal spikes normally viewed as diagnostic of myelinated nociceptors were found to be a product of reduced temperatures and were not present at normal core values. Moreover, greater complexity was observed peripherally in the mechanical and thermal sensitivity profile of nociceptive and nonnociceptive populations than that seen under in vitro conditions. This novel in vivo preparation therefore holds considerable promise for future analyses of nociceptor function and plasticity in normal and transgenic models of pain mechanisms.

摘要

最近,利用小鼠的半完整体外制备物对单个皮肤感觉神经元的结构、功能和分子特性进行的联合分析,为伤害感受器生物学提供了大量新的见解。然而,这些发现如何转化为更自然的条件仍未得到解决。为此,在一种新的体内小鼠制备物中,从362个经生理学鉴定的背根神经节(DRG)神经元获得了细胞内记录,该制备物是为单个皮肤感觉神经元的结构/功能联合分析而开发的。记录在成年去皮质小鼠的胸段进行,以便与来自同一躯干区域的体外研究结果进行比较。总共在严格调节至正常核心值的DRG温度下记录了270个神经元,以建立基线,137个皮肤感觉神经元被纳入体细胞特性的详细分析,以便与在模拟体外条件的降低温度下获得的类似数据进行比较。Neurobiotin标记的中枢投射的恢复对于验证某些神经元的传入身份至关重要。此外,在各种生理特性中都观察到了深刻的温度依赖性。事实上,通常被视为有髓伤害感受器诊断特征的宽而弯曲的体细胞尖峰被发现是温度降低的产物,在正常核心值时并不存在。此外,与体外条件下相比,在伤害性和非伤害性群体的机械和热敏感性分布中,在外周观察到了更大的复杂性。因此,这种新的体内制备物对于未来在正常和转基因疼痛机制模型中分析伤害感受器功能和可塑性具有很大的前景。

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