Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node

The role of of voltage-gated sodium channels (Nav) in pacemaking and conduction of the human sinoatrial node is unclear. Here, the authors investigate existence and function of neuronal and cardiac Nav in human sinoatrial nodes, and demonstrate their alterations in explanted human diseased hearts.

Guardado en:
Detalles Bibliográficos
Autores principales: Ning Li, Anuradha Kalyanasundaram, Brian J. Hansen, Esthela J. Artiga, Roshan Sharma, Suhaib H. Abudulwahed, Katelynn M. Helfrich, Galina Rozenberg, Pei-Jung Wu, Stanislav Zakharkin, Sandor Gyorke, Paul ML. Janssen, Bryan A. Whitson, Nahush A. Mokadam, Brandon J. Biesiadecki, Federica Accornero, John D. Hummel, Peter J. Mohler, Halina Dobrzynski, Jichao Zhao, Vadim V. Fedorov
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/f630452532e74b488261b252cd5af083
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:f630452532e74b488261b252cd5af083
record_format dspace
spelling oai:doaj.org-article:f630452532e74b488261b252cd5af0832021-12-02T17:33:14ZImpaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node10.1038/s41467-019-14039-82041-1723https://doaj.org/article/f630452532e74b488261b252cd5af0832020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14039-8https://doaj.org/toc/2041-1723The role of of voltage-gated sodium channels (Nav) in pacemaking and conduction of the human sinoatrial node is unclear. Here, the authors investigate existence and function of neuronal and cardiac Nav in human sinoatrial nodes, and demonstrate their alterations in explanted human diseased hearts.Ning LiAnuradha KalyanasundaramBrian J. HansenEsthela J. ArtigaRoshan SharmaSuhaib H. AbudulwahedKatelynn M. HelfrichGalina RozenbergPei-Jung WuStanislav ZakharkinSandor GyorkePaul ML. JanssenBryan A. WhitsonNahush A. MokadamBrandon J. BiesiadeckiFederica AccorneroJohn D. HummelPeter J. MohlerHalina DobrzynskiJichao ZhaoVadim V. FedorovNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ning Li
Anuradha Kalyanasundaram
Brian J. Hansen
Esthela J. Artiga
Roshan Sharma
Suhaib H. Abudulwahed
Katelynn M. Helfrich
Galina Rozenberg
Pei-Jung Wu
Stanislav Zakharkin
Sandor Gyorke
Paul ML. Janssen
Bryan A. Whitson
Nahush A. Mokadam
Brandon J. Biesiadecki
Federica Accornero
John D. Hummel
Peter J. Mohler
Halina Dobrzynski
Jichao Zhao
Vadim V. Fedorov
Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
description The role of of voltage-gated sodium channels (Nav) in pacemaking and conduction of the human sinoatrial node is unclear. Here, the authors investigate existence and function of neuronal and cardiac Nav in human sinoatrial nodes, and demonstrate their alterations in explanted human diseased hearts.
format article
author Ning Li
Anuradha Kalyanasundaram
Brian J. Hansen
Esthela J. Artiga
Roshan Sharma
Suhaib H. Abudulwahed
Katelynn M. Helfrich
Galina Rozenberg
Pei-Jung Wu
Stanislav Zakharkin
Sandor Gyorke
Paul ML. Janssen
Bryan A. Whitson
Nahush A. Mokadam
Brandon J. Biesiadecki
Federica Accornero
John D. Hummel
Peter J. Mohler
Halina Dobrzynski
Jichao Zhao
Vadim V. Fedorov
author_facet Ning Li
Anuradha Kalyanasundaram
Brian J. Hansen
Esthela J. Artiga
Roshan Sharma
Suhaib H. Abudulwahed
Katelynn M. Helfrich
Galina Rozenberg
Pei-Jung Wu
Stanislav Zakharkin
Sandor Gyorke
Paul ML. Janssen
Bryan A. Whitson
Nahush A. Mokadam
Brandon J. Biesiadecki
Federica Accornero
John D. Hummel
Peter J. Mohler
Halina Dobrzynski
Jichao Zhao
Vadim V. Fedorov
author_sort Ning Li
title Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
title_short Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
title_full Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
title_fullStr Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
title_full_unstemmed Impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
title_sort impaired neuronal sodium channels cause intranodal conduction failure and reentrant arrhythmias in human sinoatrial node
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f630452532e74b488261b252cd5af083
work_keys_str_mv AT ningli impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT anuradhakalyanasundaram impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT brianjhansen impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT esthelajartiga impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT roshansharma impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT suhaibhabudulwahed impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT katelynnmhelfrich impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT galinarozenberg impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT peijungwu impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT stanislavzakharkin impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT sandorgyorke impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT paulmljanssen impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT bryanawhitson impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT nahushamokadam impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT brandonjbiesiadecki impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT federicaaccornero impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT johndhummel impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT peterjmohler impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT halinadobrzynski impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT jichaozhao impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
AT vadimvfedorov impairedneuronalsodiumchannelscauseintranodalconductionfailureandreentrantarrhythmiasinhumansinoatrialnode
_version_ 1718380037156110336