Department of Communication Science and Disorders, University of Pittsburgh, Pittsburgh, Pennsylvania, U.S.A.
Department of Hearing and Speech Sciences, Vanderbilt University, Nashville, Tennessee, U.S.A.
Laryngoscope. 2021 Apr;131(4):E1265-E1271. doi: 10.1002/lary.29243. Epub 2020 Nov 6.
This study's objective was to identify and compare the localization of Aquaporin (AQP) 1, 4, 7, Na+/K + -ATPase, E-cadherin, zona occludin (ZO)-1, and occludin in human and rabbit vocal folds (VF)s to inform the design of future studies to explore the function of these proteins in the regulation of VF homeostasis.
Four human larynges and five New Zealand white rabbit larynges were used. Samples were immunolabeled for primary antibodies against AQP1, AQP4, AQP7, the alpha subunit of Na+/K + -ATPase, E-cadherin, and ZO-1 and occludin and then captured digitally using a Nikon Eclipse 90i microscope and Hamamatsu C10600 Camera. Two raters familiar with human and rabbit VF histology identified positive labeling in tissue structures, including the apical epithelium, basal epithelium/basement membrane, and lamina propria (LP).
Samples from both species showed positive labeling for AQP1 in the basal epithelium/basement membrane, superficial LP, and deep/intermediate LP. Aquaporin 4, Aquaporin 7, Na+/K + -ATPase, and E-cadherin were primarily localized to the epithelium of both species. Zona occludin-1 was primarily localized apical epithelium and the superficial LP of both species. Occludin was primarily present in the apical epithelium in rabbit samples but not human.
These data provide evidence of the presence of key ion transport channels and cell adhesion proteins in human and rabbit VFs. Aquaporin 1, 4, 7, Na+/K + -ATPase, E-cadherin, and ZO-1 were similarly localized in both species. These findings will be useful to investigators interested in the exploration of VF homeostasis and barrier integrity in future studies.
N/A Laryngoscope, 131:E1265-E1271, 2021.
本研究旨在鉴定并比较水通道蛋白(AQP)1、4、7、Na+/K+ -ATP 酶、E-钙黏蛋白、紧密连接蛋白(ZO)-1 和闭合蛋白在人及兔声带中的定位,为进一步研究这些蛋白在调控声带内稳态中的作用提供参考。
使用 4 个人喉和 5 只新西兰白兔喉。对组织样本进行水通道蛋白 1、4、7、Na+/K+ -ATP 酶、E-钙黏蛋白和 ZO-1、occludin 的免疫标记,然后使用 Nikon Eclipse 90i 显微镜和 Hamamatsu C10600 相机对其进行数字化捕获。两位熟悉人及兔声带组织学的阅片者对组织结构中的阳性标记进行了鉴定,包括上皮的顶端、基底及固有层。
两种物种的样本在基底上皮/基底膜、浅层固有层和深层/中层固有层均有 AQP1 的阳性标记。AQP4、AQP7、Na+/K+ -ATP 酶和 E-钙黏蛋白主要定位于两种物种的上皮。ZO-1 主要定位于两种物种的上皮顶端和浅层固有层。occludin 主要存在于兔声带的上皮顶端,而人喉中则没有。
这些数据为关键离子转运通道和细胞黏附蛋白在人及兔声带中的存在提供了证据。AQP1、4、7、Na+/K+ -ATP 酶、E-钙黏蛋白和 ZO-1 在两种物种中的定位相似。这些发现将有助于对未来研究中声带内稳态和屏障完整性感兴趣的研究人员。
无。喉镜,131:E1265-E1271,2021。