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Sensory innervation of the external genital tract of female Guinea pigs and mice.

机译:雌性豚鼠和小鼠外生殖道的感觉神经支配。

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INTRODUCTION: The structural and neurochemical characterization of the sensory innervation of the external genitalia of females is poorly known. AIMS: To immunohistochemically map the sensory innervation of external genitalia and surrounding structures of female guinea pigs and mice. METHODS: Large-diameter sensory fibers, presumably mechanoreceptors, were identified by their immunoreactivity to neuron-specific enolase (NSE) or vesicular glutamate transporter 1 (VGluT1). Peptidergic sensory fibers, presumably unmyelinated nociceptors, were identified by their immunoreactivity to calcitonin gene-related peptide (CGRP), substance P, or both. Multiple-labelled tissues were examined with high-resolution confocal microscopy. MAIN OUTCOME MEASURES: Microscopic identification of sensory endings, including potential nociceptors, characteristic of the external genitalia. RESULTS: Large complex nerve endings immunoreactive for NSE and VGluT1 were abundant in dermal papillae of the clitoris. Each large ending was accompanied by one or two fine fibers immunoreactive for CGRP but neither substance P nor VGluT1. More simple NSE-immunoreactive endings occurred within dermal papillae in non-hairy skin of the labia and anal canal but were rare in pudendal or perineal hairy skin. Fine intra-epithelial fibers immunoreactive for NSE but not CGRP were abundant in hairy skin but rare in non-hairy genital skin and the clitoris. Only fine varicose fibers immunoreactive for both CGRP and substance P occurred in connective tissue underlying the mucosal epithelium of cervix and endometrium. CONCLUSION: Compared with surrounding tissues, the sensory innervation of the clitoris is highly specialized. The coactivation of nociceptors containing CGRP but not substance P within each mechanoreceptor complex could be the explanation of pain disorders of the external genitalia.
机译:简介:雌性外生殖器感觉神经支配的结构和神经化学特征鲜为人知。目的:以免疫组织化学方法绘制雌性豚鼠和小鼠的外生殖器及其周围结构的感觉神经。方法:通过对神经元特异性烯醇化酶(NSE)或囊泡谷氨酸转运蛋白1(VGluT1)的免疫反应,鉴定了大直径的感觉纤维,可能是机械感受器。通过对降钙素基因相关肽(CGRP),P物质或两者的免疫反应,鉴定出肽能感觉纤维(大概是无髓的伤害感受器)。使用高分辨率共聚焦显微镜检查了多个标记的组织。主要观察指标:微观鉴定感觉末梢,包括潜在的伤害感受器,是外生殖器的特征。结果:阴蒂真皮乳头中大量对NSE和VGluT1具有免疫反应性的复杂神经末梢。每个大末端都伴有一根或两根对CGRP具有免疫反应性的细纤维,但P物质和VGluT1均没有。 NSE免疫反应更简单的结局发生在阴唇和肛管的非多毛皮肤的真皮乳头内,但在阴部或会阴的多毛皮肤中很少见。对NSE具有免疫活性的细小上皮内纤维,但对CGRP没有免疫活性,在毛发皮肤中丰富,但在非毛发生殖器皮肤和阴蒂中很少。在宫颈和子宫内膜粘膜上皮下面的结缔组织中,只有对CGRP和P物质都具有免疫活性的细曲张纤维。结论:与周围组织相比,阴蒂的感觉神经支配高度专业化。每个机械感受器复合体内含CGRP而不包含P物质的伤害感受器的共激活可能是外生殖器疼痛疾病的解释。

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