Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a

SPAK kinase is a master regulator of cation-Cl− cotransporters. Here the authors describe a new SPAK inhibitor with robust protective effects in rodent hydrocephalous and ischemic stroke models.

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Autores principales: Jinwei Zhang, Mohammad Iqbal H. Bhuiyan, Ting Zhang, Jason K. Karimy, Zhijuan Wu, Victoria M. Fiesler, Jingfang Zhang, Huachen Huang, Md Nabiul Hasan, Anna E. Skrzypiec, Mariusz Mucha, Daniel Duran, Wei Huang, Robert Pawlak, Lesley M. Foley, T. Kevin Hitchens, Margaret B. Minnigh, Samuel M. Poloyac, Seth L. Alper, Bradley J. Molyneaux, Andrew J. Trevelyan, Kristopher T. Kahle, Dandan Sun, Xianming Deng
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/3b3910c818a141759af3688133b30605
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spelling oai:doaj.org-article:3b3910c818a141759af3688133b306052021-12-02T14:41:26ZModulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a10.1038/s41467-019-13851-62041-1723https://doaj.org/article/3b3910c818a141759af3688133b306052020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13851-6https://doaj.org/toc/2041-1723SPAK kinase is a master regulator of cation-Cl− cotransporters. Here the authors describe a new SPAK inhibitor with robust protective effects in rodent hydrocephalous and ischemic stroke models.Jinwei ZhangMohammad Iqbal H. BhuiyanTing ZhangJason K. KarimyZhijuan WuVictoria M. FieslerJingfang ZhangHuachen HuangMd Nabiul HasanAnna E. SkrzypiecMariusz MuchaDaniel DuranWei HuangRobert PawlakLesley M. FoleyT. Kevin HitchensMargaret B. MinnighSamuel M. PoloyacSeth L. AlperBradley J. MolyneauxAndrew J. TrevelyanKristopher T. KahleDandan SunXianming DengNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-17 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jinwei Zhang
Mohammad Iqbal H. Bhuiyan
Ting Zhang
Jason K. Karimy
Zhijuan Wu
Victoria M. Fiesler
Jingfang Zhang
Huachen Huang
Md Nabiul Hasan
Anna E. Skrzypiec
Mariusz Mucha
Daniel Duran
Wei Huang
Robert Pawlak
Lesley M. Foley
T. Kevin Hitchens
Margaret B. Minnigh
Samuel M. Poloyac
Seth L. Alper
Bradley J. Molyneaux
Andrew J. Trevelyan
Kristopher T. Kahle
Dandan Sun
Xianming Deng
Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
description SPAK kinase is a master regulator of cation-Cl− cotransporters. Here the authors describe a new SPAK inhibitor with robust protective effects in rodent hydrocephalous and ischemic stroke models.
format article
author Jinwei Zhang
Mohammad Iqbal H. Bhuiyan
Ting Zhang
Jason K. Karimy
Zhijuan Wu
Victoria M. Fiesler
Jingfang Zhang
Huachen Huang
Md Nabiul Hasan
Anna E. Skrzypiec
Mariusz Mucha
Daniel Duran
Wei Huang
Robert Pawlak
Lesley M. Foley
T. Kevin Hitchens
Margaret B. Minnigh
Samuel M. Poloyac
Seth L. Alper
Bradley J. Molyneaux
Andrew J. Trevelyan
Kristopher T. Kahle
Dandan Sun
Xianming Deng
author_facet Jinwei Zhang
Mohammad Iqbal H. Bhuiyan
Ting Zhang
Jason K. Karimy
Zhijuan Wu
Victoria M. Fiesler
Jingfang Zhang
Huachen Huang
Md Nabiul Hasan
Anna E. Skrzypiec
Mariusz Mucha
Daniel Duran
Wei Huang
Robert Pawlak
Lesley M. Foley
T. Kevin Hitchens
Margaret B. Minnigh
Samuel M. Poloyac
Seth L. Alper
Bradley J. Molyneaux
Andrew J. Trevelyan
Kristopher T. Kahle
Dandan Sun
Xianming Deng
author_sort Jinwei Zhang
title Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
title_short Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
title_full Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
title_fullStr Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
title_full_unstemmed Modulation of brain cation-Cl− cotransport via the SPAK kinase inhibitor ZT-1a
title_sort modulation of brain cation-cl− cotransport via the spak kinase inhibitor zt-1a
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/3b3910c818a141759af3688133b30605
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