ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs

Understanding how SARS-CoV-2 gains initial entry into the human body is a key step towards the development of prophylaxes and therapeutics for COVID-19. Here, the authors show that ACE2, the receptor for SARS-CoV-2, is abundantly expressed in the motile cilia of the human nasal and respiratory tract...

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Autores principales: Ivan T. Lee, Tsuguhisa Nakayama, Chien-Ting Wu, Yury Goltsev, Sizun Jiang, Phillip A. Gall, Chun-Kang Liao, Liang-Chun Shih, Christian M. Schürch, David R. McIlwain, Pauline Chu, Nicole A. Borchard, David Zarabanda, Sachi S. Dholakia, Angela Yang, Dayoung Kim, Han Chen, Tomoharu Kanie, Chia-Der Lin, Ming-Hsui Tsai, Katie M. Phillips, Raymond Kim, Jonathan B. Overdevest, Matthew A. Tyler, Carol H. Yan, Chih-Feng Lin, Yi-Tsen Lin, Da-Tian Bau, Gregory J. Tsay, Zara M. Patel, Yung-An Tsou, Alexandar Tzankov, Matthias S. Matter, Chih-Jaan Tai, Te-Huei Yeh, Peter H. Hwang, Garry P. Nolan, Jayakar V. Nayak, Peter K. Jackson
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/46b19154257e4119b14a2d65b124b2f3
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spelling oai:doaj.org-article:46b19154257e4119b14a2d65b124b2f32021-12-02T14:40:52ZACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs10.1038/s41467-020-19145-62041-1723https://doaj.org/article/46b19154257e4119b14a2d65b124b2f32020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19145-6https://doaj.org/toc/2041-1723Understanding how SARS-CoV-2 gains initial entry into the human body is a key step towards the development of prophylaxes and therapeutics for COVID-19. Here, the authors show that ACE2, the receptor for SARS-CoV-2, is abundantly expressed in the motile cilia of the human nasal and respiratory tract and is not affected by the use of angiotensin-converting enzyme inhibitors or angiotensin II receptor blockers.Ivan T. LeeTsuguhisa NakayamaChien-Ting WuYury GoltsevSizun JiangPhillip A. GallChun-Kang LiaoLiang-Chun ShihChristian M. SchürchDavid R. McIlwainPauline ChuNicole A. BorchardDavid ZarabandaSachi S. DholakiaAngela YangDayoung KimHan ChenTomoharu KanieChia-Der LinMing-Hsui TsaiKatie M. PhillipsRaymond KimJonathan B. OverdevestMatthew A. TylerCarol H. YanChih-Feng LinYi-Tsen LinDa-Tian BauGregory J. TsayZara M. PatelYung-An TsouAlexandar TzankovMatthias S. MatterChih-Jaan TaiTe-Huei YehPeter H. HwangGarry P. NolanJayakar V. NayakPeter K. JacksonNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ivan T. Lee
Tsuguhisa Nakayama
Chien-Ting Wu
Yury Goltsev
Sizun Jiang
Phillip A. Gall
Chun-Kang Liao
Liang-Chun Shih
Christian M. Schürch
David R. McIlwain
Pauline Chu
Nicole A. Borchard
David Zarabanda
Sachi S. Dholakia
Angela Yang
Dayoung Kim
Han Chen
Tomoharu Kanie
Chia-Der Lin
Ming-Hsui Tsai
Katie M. Phillips
Raymond Kim
Jonathan B. Overdevest
Matthew A. Tyler
Carol H. Yan
Chih-Feng Lin
Yi-Tsen Lin
Da-Tian Bau
Gregory J. Tsay
Zara M. Patel
Yung-An Tsou
Alexandar Tzankov
Matthias S. Matter
Chih-Jaan Tai
Te-Huei Yeh
Peter H. Hwang
Garry P. Nolan
Jayakar V. Nayak
Peter K. Jackson
ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
description Understanding how SARS-CoV-2 gains initial entry into the human body is a key step towards the development of prophylaxes and therapeutics for COVID-19. Here, the authors show that ACE2, the receptor for SARS-CoV-2, is abundantly expressed in the motile cilia of the human nasal and respiratory tract and is not affected by the use of angiotensin-converting enzyme inhibitors or angiotensin II receptor blockers.
format article
author Ivan T. Lee
Tsuguhisa Nakayama
Chien-Ting Wu
Yury Goltsev
Sizun Jiang
Phillip A. Gall
Chun-Kang Liao
Liang-Chun Shih
Christian M. Schürch
David R. McIlwain
Pauline Chu
Nicole A. Borchard
David Zarabanda
Sachi S. Dholakia
Angela Yang
Dayoung Kim
Han Chen
Tomoharu Kanie
Chia-Der Lin
Ming-Hsui Tsai
Katie M. Phillips
Raymond Kim
Jonathan B. Overdevest
Matthew A. Tyler
Carol H. Yan
Chih-Feng Lin
Yi-Tsen Lin
Da-Tian Bau
Gregory J. Tsay
Zara M. Patel
Yung-An Tsou
Alexandar Tzankov
Matthias S. Matter
Chih-Jaan Tai
Te-Huei Yeh
Peter H. Hwang
Garry P. Nolan
Jayakar V. Nayak
Peter K. Jackson
author_facet Ivan T. Lee
Tsuguhisa Nakayama
Chien-Ting Wu
Yury Goltsev
Sizun Jiang
Phillip A. Gall
Chun-Kang Liao
Liang-Chun Shih
Christian M. Schürch
David R. McIlwain
Pauline Chu
Nicole A. Borchard
David Zarabanda
Sachi S. Dholakia
Angela Yang
Dayoung Kim
Han Chen
Tomoharu Kanie
Chia-Der Lin
Ming-Hsui Tsai
Katie M. Phillips
Raymond Kim
Jonathan B. Overdevest
Matthew A. Tyler
Carol H. Yan
Chih-Feng Lin
Yi-Tsen Lin
Da-Tian Bau
Gregory J. Tsay
Zara M. Patel
Yung-An Tsou
Alexandar Tzankov
Matthias S. Matter
Chih-Jaan Tai
Te-Huei Yeh
Peter H. Hwang
Garry P. Nolan
Jayakar V. Nayak
Peter K. Jackson
author_sort Ivan T. Lee
title ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
title_short ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
title_full ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
title_fullStr ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
title_full_unstemmed ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs
title_sort ace2 localizes to the respiratory cilia and is not increased by ace inhibitors or arbs
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/46b19154257e4119b14a2d65b124b2f3
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