气道内神经源性血浆外渗的特点。

P R Germonpré, G F Joos, R A Pauwels
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引用次数: 0

摘要

从感觉神经释放神经肽引起血管通透性增加、血浆外渗和水肿。迷走神经的电刺激或化学和机械刺激物(如辣椒素、高渗生理盐水、异压性呼吸急促和香烟烟雾)可激活气道中的感觉神经。在啮齿动物气道中,神经源性血浆外渗是由辣椒素传入神经纤维释放的速激肽介导的,并涉及神经激肽-1速激肽受体的激活。在外周豚鼠气道中,神经激肽-2速激肽受体也与神经源性血浆渗出有关。速激素可以通过直接作用于静脉内皮和间接作用于肥大细胞活化和血清素释放来增加血管通透性。速激素及其受体存在于人体呼吸道中。快速激肽的释放,抗原攻击后,已证明在鼻子和下气道。在人类中,速激肽已被证明可增加鼻黏膜的血浆渗出,但神经源性炎症是否也发生在下呼吸道仍有待证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the neurogenic plasma extravasation in the airways.

Release of neuropeptides from sensory nerves causes an increase in vascular permeability, plasma extravasation and edema. The sensory nerves in the airways can be activated by electrical stimulation of the vagus nerve or by application of chemical and mechanical irritants, such as capsaicin, hypertonic saline, isocapnic hyperpnea and cigarette smoke. In rodent airways, the neurogenic plasma extravasation is mediated by tachykinins released from the capsaicin-afferent nerve fibres, and involves activation of neurokinin-1 tachykinin receptors. In peripheral guinea-pig airways, neurokinin-2 tachykinin receptors have also been implicated in the neurogenic plasma exudation. The tachykinins can increase vascular permeability by both a direct effect on venular endothelium, and indirect mechanisms involving mast cell activation and serotonin release. Tachykinins and their receptors are present in the human airways. Release of tachykinins, following antigen challenge, has been demonstrated in the nose and lower airways. In humans, tachykinins have been shown to increase plasma exudation in the nasal mucosa, but whether neurogenic inflammation also occurs in the lower airways still remains to be proven.

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