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通过追踪经鼻雾化的珠粒在气管中的荧光来测量小鼠的黏液纤毛清除率。

Mucociliary Clearance in Mice Measured by Tracking Trans-tracheal Fluorescence of Nasally Aerosolized Beads.

机构信息

Marsico Lung Institute, University of North Carolina School of Medicine, Chapel Hill, NC, 27599, USA.

出版信息

Sci Rep. 2018 Oct 3;8(1):14744. doi: 10.1038/s41598-018-33053-2.

Abstract

Mucociliary clearance (MCC) is the first line of defense in clearing airways. In genetically engineered mice, each component of this system (ciliary beat, mucus, airway surface hydration) can be studied separately to determine its contribution to MCC. Because MCC is difficult to measure in mice, MCC measurements are often omitted from these studies. We report a simple method to measure MCC in mice involving nasal inhalation of aerosolized fluorescent beads and trans-tracheal bead tracking. This method has a number of advantages over existing methods: (1) a small volume of liquid is deposited thus minimally disturbing the airway surface; (2) bead behavior on airways can be visualized; (3) useful for adult or neonatal mice; (4) the equipment is relatively inexpensive and easily obtainable. The type of anesthetic had no significant effect on the rate of MCC, but overloading the airways with beads significantly decreased MCC. In addition, the rate of bead transport was not different in alive (3.11 mm/min) vs recently euthanized mice (3.10 mm/min). A 5-min aerosolization of beads in a solution containing UTP significantly increased the rate of MCC, demonstrating that our method would be of value in testing the role of various pharmacological agents on MCC.

摘要

黏液纤毛清除(Mucociliary clearance,MCC)是清除气道的第一道防线。在基因工程小鼠中,可以分别研究该系统的各个组成部分(纤毛摆动、黏液、气道表面水合作用),以确定它们对 MCC 的贡献。由于 MCC 难以在小鼠中测量,因此这些研究通常会省略 MCC 测量。我们报告了一种简单的方法来测量小鼠中的 MCC,涉及鼻内吸入雾化荧光珠和经气管珠追踪。与现有方法相比,该方法具有许多优势:(1)仅沉积少量液体,因此对气道表面的干扰最小;(2)可以可视化珠在气道上的行为;(3)适用于成年或新生小鼠;(4)设备相对便宜且易于获得。麻醉类型对 MCC 速率没有显著影响,但珠的气道过载会显著降低 MCC。此外,在活着的(3.11mm/min)与最近安乐死的小鼠(3.10mm/min)之间,珠的运输速率没有差异。在含有 UTP 的溶液中进行 5 分钟的珠雾化显著增加了 MCC 速率,表明我们的方法将有助于测试各种药理学药物对 MCC 的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e57b/6170422/7f701a011c03/41598_2018_33053_Fig1_HTML.jpg

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