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大鼠足垫表皮内神经纤维密度:神经病理学与神经生理学的相关性

Intraepidermal nerve fiber density in rat foot pad: neuropathologic-neurophysiologic correlation.

作者信息

Lauria Giuseppe, Lombardi Raffaella, Borgna Monica, Penza Paola, Bianchi Roberto, Savino Costanza, Canta Annalisa, Nicolini Gabriella, Marmiroli Paola, Cavaletti Guido

机构信息

Immunology and Muscular Pathology Unit, National Neurological Institute Carlo Besta, Via Celoria 11, 20133 Milan, Italy.

出版信息

J Peripher Nerv Syst. 2005 Jun;10(2):202-8. doi: 10.1111/j.1085-9489.2005.0010210.x.

Abstract

Quantification of cutaneous innervation in rat footpad is a useful tool to investigate sensory small-diameter nerve fibers, which are affected early in peripheral neuropathies. The aim of this work was to provide normative reference data on the density of intraepidermal nerve fibers (IENFs) and Langerhans cells in the hindpaw footpad of Sprague-Dawley and Wistar rats. We also evaluated the sensibility of IENF density by comparing neuropathologic findings with neurophysiologic examination and the presence of peripheral neuropathy in two well-characterized animal models of neuropathy. IENF density was quantified in 22 Sprague-Dawley rats and 13 Wistar rats and compared with 19 age-matched Sprague-Dawley rats with streptozotocin-induced diabetic neuropathy and 30 age-matched Wistar rats with cisplatin- or paclitaxel-induced neuropathy. Antidromic tail sensory nerve conduction velocity (SNCV) was assessed in all animals. IENF and Langerhans cell densities were constant in healthy Sprague-Dawley rats at any age, and they were similar to those observed in healthy Wistar rats. In neuropathic rats, both SNCV and IENF density were significantly reduced with respect to controls. Quantification of IENF density was significantly correlated with changes in conduction velocity. Diabetic neuropathy rats alone showed a significantly higher density of Langerhans cells compared with controls. Our study demonstrated that IENF density quantification correlates with SNCV changes and suggests that this might represent a useful outcome measurement in experimental neuropathies.

摘要

定量分析大鼠足垫的皮肤神经支配是研究感觉小直径神经纤维的有用工具,这些神经纤维在周围神经病变早期就会受到影响。本研究的目的是提供关于Sprague-Dawley大鼠和Wistar大鼠后足垫表皮内神经纤维(IENF)和朗格汉斯细胞密度的规范性参考数据。我们还通过比较神经病理学结果与神经生理学检查以及两种特征明确的神经病变动物模型中周围神经病变的存在情况,评估了IENF密度的敏感性。对22只Sprague-Dawley大鼠和13只Wistar大鼠的IENF密度进行了定量分析,并与19只年龄匹配的链脲佐菌素诱导的糖尿病性神经病变Sprague-Dawley大鼠和30只年龄匹配的顺铂或紫杉醇诱导神经病变的Wistar大鼠进行了比较。对所有动物评估了逆向尾巴感觉神经传导速度(SNCV)。在任何年龄的健康Sprague-Dawley大鼠中,IENF和朗格汉斯细胞密度都是恒定的,并且与在健康Wistar大鼠中观察到的密度相似。在神经病变大鼠中,与对照组相比,SNCV和IENF密度均显著降低。IENF密度的定量分析与传导速度的变化显著相关。单独的糖尿病性神经病变大鼠与对照组相比,朗格汉斯细胞密度显著更高。我们的研究表明,IENF密度定量分析与SNCV变化相关,并表明这可能是实验性神经病变中一种有用的结果测量指标。

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