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Journal of Cell Science
|
January 29, 2009
Cx43 has distinct mobility within plasma-membrane domains, indicative of progressive formation of gap-junction plaques
Jamie Simek, Jared Churko, Qing Shao, et al.
Free Radical Biology & Medicine
|
June 15, 2010
Hypoxia and reoxygenation-induced oxidant production increase in microvascular endothelial cells depends on connexin40
Guo Yu, Michael Bolon, Dale W Laird, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
April 5, 2024
Spatial and Temporal Localization of Connexins in Cells Using Confocal Microscopy
Sergiu A Lucaciu, Stephanie E Leighton, Dale W Laird
Experimental Cell Research
|
May 19, 2019
Destination and consequences of Panx1 and mutant expression in polarized MDCK cells
Michelle G Shum, Qing Shao, Patrick Lajoie, et al.
The Journal of Investigative Dermatology
|
July 1, 2011
The G60S connexin43 mutant regulates hair growth and hair fiber morphology in a mouse model of human oculodentodigital dysplasia
Jared M Churko, Jason Chan, Qing Shao, et al.
Breast Cancer Research : BCR
|
July 1, 2005
Connexin 43 mediated gap junctional communication enhances breast tumor cell diapedesis in culture
Mary-Ann Pollmann, Qing Shao, Dale W Laird, et al.
Journal of Cancer
|
June 14, 2017
Aberrant Cx43 Expression and Mislocalization in Metastatic Human Melanomas
Katanya C Alaga, Melissa Crawford, Lina Dagnino, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists
|
June 6, 2021
Connexin 43 contributes to phenotypic robustness of the mouse skull
Elizabeth Jewlal, Kevin Barr, Dale W Laird, et al.
Journal of Cell Science
|
September 12, 2015
Cx30 exhibits unique characteristics including a long half-life when assembled into gap junctions
John J Kelly, Qing Shao, Daniel J Jagger, et al.
The Journal of Biological Chemistry
|
August 13, 2014
Chemotherapeutic drugs induce ATP release via caspase-gated pannexin-1 channels and a caspase/pannexin-1-independent mechanism
Andrea Boyd-Tressler, Silvia Penuela, Dale W Laird, et al.
Page
of 14
Search research articles
Search
Showing results (31-40 of 136) with videos related to
Sort By:
Page
of 14
Journal of Cell Science
|
January 29, 2009
Cx43 has distinct mobility within plasma-membrane domains, indicative of progressive formation of gap-junction plaques
Jamie Simek, Jared Churko, Qing Shao, et al.
Free Radical Biology & Medicine
|
June 15, 2010
Hypoxia and reoxygenation-induced oxidant production increase in microvascular endothelial cells depends on connexin40
Guo Yu, Michael Bolon, Dale W Laird, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
April 5, 2024
Spatial and Temporal Localization of Connexins in Cells Using Confocal Microscopy
Sergiu A Lucaciu, Stephanie E Leighton, Dale W Laird
Experimental Cell Research
|
May 19, 2019
Destination and consequences of Panx1 and mutant expression in polarized MDCK cells
Michelle G Shum, Qing Shao, Patrick Lajoie, et al.
The Journal of Investigative Dermatology
|
July 1, 2011
The G60S connexin43 mutant regulates hair growth and hair fiber morphology in a mouse model of human oculodentodigital dysplasia
Jared M Churko, Jason Chan, Qing Shao, et al.
Breast Cancer Research : BCR
|
July 1, 2005
Connexin 43 mediated gap junctional communication enhances breast tumor cell diapedesis in culture
Mary-Ann Pollmann, Qing Shao, Dale W Laird, et al.
Journal of Cancer
|
June 14, 2017
Aberrant Cx43 Expression and Mislocalization in Metastatic Human Melanomas
Katanya C Alaga, Melissa Crawford, Lina Dagnino, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists
|
June 6, 2021
Connexin 43 contributes to phenotypic robustness of the mouse skull
Elizabeth Jewlal, Kevin Barr, Dale W Laird, et al.
Journal of Cell Science
|
September 12, 2015
Cx30 exhibits unique characteristics including a long half-life when assembled into gap junctions
John J Kelly, Qing Shao, Daniel J Jagger, et al.
The Journal of Biological Chemistry
|
August 13, 2014
Chemotherapeutic drugs induce ATP release via caspase-gated pannexin-1 channels and a caspase/pannexin-1-independent mechanism
Andrea Boyd-Tressler, Silvia Penuela, Dale W Laird, et al.
Page
of 14