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人鼻黏膜中的神经肽Y(NPY)。

Neuropeptide Y (NPY) in human nasal mucosa.

作者信息

Baraniuk J N, Castellino S, Lundgren J D, Goff J, Mullol J, Merida M, Shelhamer J H, Kaliner M A

机构信息

Allergic Diseases Section, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892.

出版信息

Am J Respir Cell Mol Biol. 1990 Aug;3(2):165-73. doi: 10.1165/ajrcmb/3.2.165.

Abstract

Neuropeptide Y (NPY), a potent vasoconstrictor peptide found in sympathetic neurons, was analyzed in human inferior turbinate nasal mucosal tissue. NPY content determined by radioimmunoassay was 3.13 +/- 0.79 pmol/g tissue (n = 6) in mucosa extracted with ethanol-acetic acid. NPY-immunoreactive nerves were found around small muscular arteries, arterioles, arteriovenous anastomoses, and as free fibers near arteriolar and venous vessels. They formed a plexus around the arterial vessels, and were also present between vascular smooth muscle cells. Few NPY fibers were present near glands or the epithelium. [125I]NPY binding sites were localized by autoradiography to small muscular arteries, arterioles, and a few venous sinusoids. In explant culture experiments, 4 microM NPY did not stimulate release of [3H]glucosamine-labeled glycoconjugates or lactoferrin (a product of serous cells) from nasal mucosal fragments. Degradation of NPY by a tissue homogenate was rapid (t1/2 = 13.5 +/- 2.3 min). The degradation was inhibited by thiorphan and phosphoramidon, inhibitors of neutral endopeptidase activity. NPY released from sympathetic neurons may play a role as a constrictor of arterial vessels and regulate vasomotor tone in the human nasal mucosa.

摘要

神经肽Y(NPY)是一种在交感神经元中发现的强效血管收缩肽,对其在人下鼻甲鼻黏膜组织中进行了分析。用乙醇-乙酸提取的黏膜中,通过放射免疫测定法测定的NPY含量为3.13±0.79 pmol/g组织(n = 6)。在小肌性动脉、小动脉、动静脉吻合处周围以及小动脉和静脉血管附近的游离纤维中发现了NPY免疫反应性神经。它们在动脉血管周围形成丛,也存在于血管平滑肌细胞之间。在腺体或上皮附近几乎没有NPY纤维。通过放射自显影将[125I]NPY结合位点定位到小肌性动脉、小动脉和一些静脉血窦。在组织块培养实验中,4μM NPY不会刺激鼻黏膜碎片释放[3H]葡糖胺标记的糖结合物或乳铁蛋白(浆液细胞的产物)。组织匀浆对NPY的降解很快(t1/2 = 13.5±2.3分钟)。中性内肽酶活性抑制剂硫磷酰胺和磷酰胺可抑制这种降解。交感神经元释放的NPY可能作为动脉血管的收缩剂发挥作用,并调节人鼻黏膜的血管运动张力。

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