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完整气道黏膜下腺体液分泌的测量。

Measurement of fluid secretion from intact airway submucosal glands.

作者信息

Wine Jeffrey J, Joo Nam Soo, Choi Jae Young, Cho Hyung-Ju, Krouse Mauri E, Wu Jin V, Khansaheb Monal, Irokawa Toshiya, Ianowski Juan, Hanrahan John W, Cuthbert Alan W, Tran Kim V

机构信息

Cystic Fibrosis Research Laboratory, Stanford University, Stanford, CA 94305-2130, USA.

出版信息

Methods Mol Biol. 2011;742:93-112. doi: 10.1007/978-1-61779-120-8_6.

Abstract

Human airways are kept sterile by a mucosal innate defense system that includes mucus secretion. Mucus is secreted in healthy upper airways primarily by submucosal glands and consists of defense molecules mixed with mucins, electrolytes, and water and is also a major component of sputum. Mucus traps pathogens and mechanically removes them via mucociliary clearance while inhibiting their growth via molecular (e.g., lysozyme) and cellular (e.g., neutrophils, macrophages) defenses. Fluid secretion rates of single glands in response to various mediators can be measured by trapping the primary gland mucus secretions in an oil layer, where they form spherical bubbles that can be optically measured at any desired interval to provide detailed temporal analysis of secretion rates. The composition and properties of the mucus (e.g., solids, viscosity, pH) can also be determined. These methods have now been applied to mice, ferrets, cats, pigs, sheep, and humans, with a main goal of comparing gland secretion in control and CFTR-deficient humans and animals.

摘要

人类气道通过包括黏液分泌在内的黏膜固有防御系统保持无菌状态。健康的上呼吸道黏液主要由黏膜下腺分泌,由与黏蛋白、电解质和水混合的防御分子组成,也是痰液的主要成分。黏液捕获病原体,并通过黏液纤毛清除机制将其机械性清除,同时通过分子(如溶菌酶)和细胞(如中性粒细胞、巨噬细胞)防御机制抑制病原体生长。通过将单个腺体的主要黏液分泌物捕获在油层中,可以测量单个腺体对各种介质的液体分泌速率,在油层中它们形成球形气泡,可以在任何所需的时间间隔进行光学测量,以提供分泌速率的详细时间分析。黏液的组成和特性(如固体成分、粘度、pH值)也可以确定。这些方法现已应用于小鼠、雪貂、猫、猪、羊和人类,主要目的是比较对照人群和囊性纤维化跨膜传导调节因子(CFTR)缺陷的人类及动物的腺体分泌情况。

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