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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Immunohistochemical co-localization of transient receptor potential vanilloid (TRPV)1 and sensory neuropeptides in the guinea-pig respiratory system.
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Immunohistochemical co-localization of transient receptor potential vanilloid (TRPV)1 and sensory neuropeptides in the guinea-pig respiratory system.

机译:豚鼠呼吸系统中瞬时受体电位类香草酸(TRPV)1和感觉神经肽的免疫组织化学共定位。

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摘要

Electrophysiological studies within the lung have documented the presence of heterogenous groups of afferent fibers composed of Adelta and C-fibers and studies of somatosensory nerves within the skin reveal a complex pattern of distribution of sensory neuropeptides and transient receptor potential vanilloid (TRPV)1 positive nerves. However, the anatomical location of these different subpopulations of nerves within the lung has not been extensively studied. In the present study we have demonstrated that TRPV1 axons represented only a small proportion of the total number of PGP9.5 staining nerves within guinea-pig tracheal epithelium and only half the number of TRPV1 axons was immunopositive for substance P. In contrast, most TRPV1 positive neurones found within guinea-pig intrapulmonary airways were found to co-localize with sensory neuropeptides substance P and calcitonin gene-related peptide within and beneath the epithelium, around blood vessels, within airway smooth muscle and alveoli, indicative ofheterogeneity of TRPV1 positive axons throughout the airways. However, in the smooth muscle layer of the trachea there was evidence of substance P and calcitonin gene-related peptide containing nerves that did not stain for TRPV1. We also demonstrated a complete loss of TRVP1 positive axons in the trachea and intrapulmonary airways and associated loss of bronchoconstriction induced by capsaicin, in animals chronically treated with capsaicin. However, some neuropeptide immunoreactive axons remained in the smooth muscle layer of capsaicin-treated animals which could represent the small subset of neuropeptide containing fibers which do not co-localize with TRPV1. We have provided evidence of heterogeneity of TRPV1 positive nerve fibers, including fibers characterized by lack of co-localization with neuropeptides in various regions of the airways and the existence of neuropeptide containing fibers that were not TRPV1 positive in guinea-pigs.
机译:肺内的电生理学研究已证明存在由Adelta和C纤维组成的异种传入纤维组,对皮肤内的体感神经的研究表明,感觉神经肽和短暂受体电位类香草素(TRPV)1阳性神经分布复杂。然而,尚未广泛研究肺中这些神经的不同亚群的解剖学位置。在本研究中,我们证明了TRPV1轴突仅占豚鼠气管上皮内PGP9.5染色神经总数的一小部分,而TRPV1轴突的一半仅对P物质呈阳性。相反,大多数TRPV1在豚鼠肺内气道中发现的阳性神经元与感觉神经肽物质P和降钙素基因相关肽共定位于上皮内和下,上皮周围,血管周围,气道平滑肌和肺泡内,表明整个TRPV1阳性轴突均不均一气道。然而,在气管的平滑肌层中,有证据表明含有P物质和降钙素基因相关肽的神经对TRPV1没有染色。我们还证明了在长期用辣椒素治疗的动物中,气管和肺内气道中TRVP1阳性轴突的完全丧失,以及由辣椒素引起的支气管收缩的相关丧失。但是,在辣椒素处理过的动物的平滑肌层中仍然保留了一些神经肽免疫反应性轴突,这可能代表了神经肽的一小部分含纤维的纤维,这些纤维不与TRPV1共同定位。我们提供了TRPV1阳性神经纤维异质性的证据,包括以在呼吸道各个区域与神经肽缺乏共定位为特征的纤维,以及存在豚鼠中非TRPV1阳性的神经肽的纤维。

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