首页> 外文期刊>The Journal of Physiology >Sensory and electrophysiological properties of guinea-pig sensory neurones expressing Na(v)1.7 (PN1) Na(+) channel alphasubunit protein.
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Sensory and electrophysiological properties of guinea-pig sensory neurones expressing Na(v)1.7 (PN1) Na(+) channel alphasubunit protein.

机译:豚鼠感觉神经元表达Na(v)1.7(PN1)Na(+)通道alpha亚基蛋白的感觉和电生理特性。

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摘要

The TTX-sensitive Na(v)1.7 (PN1) Na(+) channel alpha subunit protein is expressed mainly in small dorsal root ganglion (DRG) neurones. This study examines immunocytochemically whether it is expressed exclusively or preferentially in nociceptive primary afferent DRG neurones, and determines the electrophysiological properties of neurones that express it. Intracellular somatic action potentials (APs) evoked by dorsal root stimulation were recorded in L6/S1 DRG neurones at 30 +/- 2 degrees C in vivo in deeply anaesthetised young guinea-pigs. Each neurone was classified, from its dorsal root conduction velocity (CV) as a C-, Adelta- or Aalpha/beta-fibre unit and from its response to mechanical and thermal stimuli, as a nociceptive, low threshold mechanoreceptive (LTM) or unresponsive unit. Fluorescent dye was injected into the soma and Na(v)1.7-like immunoreactivity (Na(v)1.7-LI) was examined on sections of dye-injected neurones. All C-, 90 % of Adelta- and 40 % of Aalpha/beta-fibre units, including both nociceptive and LTM units, showed Na(v)1.7-LI. Positive units included 1/1 C-LTM, 6/6 C-nociceptive, 4/4 C-unresponsive (possible silent nociceptive) units, 5/6 Adelta-LTM (D hair), 13/14 Adelta-nociceptive, 2/9 Aalpha/beta-nociceptive, 10/18 Aalpha/beta-LTM cutaneous and 0/9 Aalpha/beta-muscle spindle afferent units. Overall, a higher proportion of nociceptive than of LTM neurones was positive, and the median relative staining intensity was greater in nociceptive than LTM units. Na(v)1.7-LI intensity was clearly positively correlated with AP duration and (less strongly) negatively correlated with CV and soma size. Since nociceptive units tend overall to have longer duration APs, slower CVs and smaller somata, these correlations may be related to the generally greater expression of Na(v)1.7 in nociceptive units.
机译:TTX敏感的Na(v)1.7(PN1)Na(+)通道alpha亚基蛋白主要在小背根神经节(DRG)神经元中表达。这项研究通过免疫细胞化学检查了它是在伤害感受性原发性DRG神经元中是专门表达还是优先表达,并确定了表达它的神经元的电生理特性。在深麻醉的年轻豚鼠体内,在30 +/- 2摄氏度下,在L6 / S1 DRG神经元中记录了由背根刺激引起的细胞内体细胞动作电位(APs)。每个神经元从其背根传导速度(CV)分为C,Adelta或Aalpha /β纤维单位,并从其对机械和热刺激的反应分为伤害性,低阈值机械感受性(LTM)或无反应性单元。将荧光染料注射到体细胞中,并在注射染料的神经元切片上检查Na(v)1.7-样免疫反应性(Na(v)1.7-LI)。所有C-,90%的Adelta-和40%的Aalpha /β纤维单元(包括伤害性和LTM单元)均显示Na(v)1.7-LI。阳性单位包括1/1 C-LTM,6/6 C伤害感受,4/4 C无反应(可能沉默伤害感受)单位,5/6 Adelta-LTM(D毛),13/14 Adelta伤害感受,2 / 9个Aalpha / beta伤害感受性皮肤,10/18 Aalpha / beta-LTM皮肤刺激和0/9 Aalpha / beta肌肉纺锤传入单位。总体而言,伤害感受比LTM神经元的阳性率更高,并且伤害感受的中位相对染色强度大于LTM单位。 Na(v)1.7-LI强度与AP持续时间明显正相关,而与CV和躯体大小负相关(不那么强)。由于伤害感受单元总体上倾向于具有更长的持续时间AP,较慢的CV和较小的躯体,因此这些相关性可能与伤害感受单元中Na(v)1.7的普遍表达有关。

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