Literature DB >> 33155693

A Comparison of the Localization of Integral Membrane Proteins in Human and Rabbit Vocal Folds.

Gary J Gartling1, Lea Sayce1, Emily E Kimball2, Shintaro Sueyoshi3, Bernard Rousseau1.   

Abstract

OBJECTIVES: 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.
METHODS: 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).
RESULTS: 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.
CONCLUSION: 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. LEVEL OF EVIDENCE: N/A Laryngoscope, 131:E1265-E1271, 2021.
© 2020 American Laryngological, Rhinological and Otological Society Inc, "The Triological Society" and American Laryngological Association (ALA).

Entities:  

Keywords:  RRID:AB_10708724; RRID:AB_11149931; RRID:AB_1119051; RRID:AB_2336789; RRID:AB_2336790; RRID:AB_2534091; RRID:AB_2629482; RRID:AB_306023; RRID:AB_397581; RRID:AB_87181; Vocal fold; epithelium; human; rabbit; voice

Mesh:

Substances:

Year:  2020        PMID: 33155693      PMCID: PMC8150924          DOI: 10.1002/lary.29243

Source DB:  PubMed          Journal:  Laryngoscope        ISSN: 0023-852X            Impact factor:   3.325


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