Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity

Kinase inhibitors used in chemotherapy are known for their adverse effects on kidney physiology. Here, Calizo et al. show that dasatinib is associated with a higher risk of glomerular toxicity compared to other kinase inhibitors, due to deleterious effects on cytoskeletal biomechanics in podocytes.

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Autores principales: Rhodora C. Calizo, Smiti Bhattacharya, J. G. Coen van Hasselt, Chengguo Wei, Jenny S. Wong, Robert J. Wiener, Xuhua Ge, Nicholas J. Wong, Jia-Jye Lee, Christina M. Cuttitta, Gomathi Jayaraman, Vivienne H. Au, William Janssen, Tong Liu, Hong Li, Fadi Salem, Edgar A. Jaimes, Barbara Murphy, Kirk N. Campbell, Evren U. Azeloglu
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/8269d038cbb047b6863d44efd06fc28f
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spelling oai:doaj.org-article:8269d038cbb047b6863d44efd06fc28f2021-12-02T14:39:20ZDisruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity10.1038/s41467-019-09936-x2041-1723https://doaj.org/article/8269d038cbb047b6863d44efd06fc28f2019-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09936-xhttps://doaj.org/toc/2041-1723Kinase inhibitors used in chemotherapy are known for their adverse effects on kidney physiology. Here, Calizo et al. show that dasatinib is associated with a higher risk of glomerular toxicity compared to other kinase inhibitors, due to deleterious effects on cytoskeletal biomechanics in podocytes.Rhodora C. CalizoSmiti BhattacharyaJ. G. Coen van HasseltChengguo WeiJenny S. WongRobert J. WienerXuhua GeNicholas J. WongJia-Jye LeeChristina M. CuttittaGomathi JayaramanVivienne H. AuWilliam JanssenTong LiuHong LiFadi SalemEdgar A. JaimesBarbara MurphyKirk N. CampbellEvren U. AzelogluNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-15 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rhodora C. Calizo
Smiti Bhattacharya
J. G. Coen van Hasselt
Chengguo Wei
Jenny S. Wong
Robert J. Wiener
Xuhua Ge
Nicholas J. Wong
Jia-Jye Lee
Christina M. Cuttitta
Gomathi Jayaraman
Vivienne H. Au
William Janssen
Tong Liu
Hong Li
Fadi Salem
Edgar A. Jaimes
Barbara Murphy
Kirk N. Campbell
Evren U. Azeloglu
Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
description Kinase inhibitors used in chemotherapy are known for their adverse effects on kidney physiology. Here, Calizo et al. show that dasatinib is associated with a higher risk of glomerular toxicity compared to other kinase inhibitors, due to deleterious effects on cytoskeletal biomechanics in podocytes.
format article
author Rhodora C. Calizo
Smiti Bhattacharya
J. G. Coen van Hasselt
Chengguo Wei
Jenny S. Wong
Robert J. Wiener
Xuhua Ge
Nicholas J. Wong
Jia-Jye Lee
Christina M. Cuttitta
Gomathi Jayaraman
Vivienne H. Au
William Janssen
Tong Liu
Hong Li
Fadi Salem
Edgar A. Jaimes
Barbara Murphy
Kirk N. Campbell
Evren U. Azeloglu
author_facet Rhodora C. Calizo
Smiti Bhattacharya
J. G. Coen van Hasselt
Chengguo Wei
Jenny S. Wong
Robert J. Wiener
Xuhua Ge
Nicholas J. Wong
Jia-Jye Lee
Christina M. Cuttitta
Gomathi Jayaraman
Vivienne H. Au
William Janssen
Tong Liu
Hong Li
Fadi Salem
Edgar A. Jaimes
Barbara Murphy
Kirk N. Campbell
Evren U. Azeloglu
author_sort Rhodora C. Calizo
title Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
title_short Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
title_full Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
title_fullStr Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
title_full_unstemmed Disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
title_sort disruption of podocyte cytoskeletal biomechanics by dasatinib leads to nephrotoxicity
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/8269d038cbb047b6863d44efd06fc28f
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