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Mauricio P Boric

Showing results (11-20 of 26) with videos related to

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The Journal of Physiology|May 6, 2006
Endothelial nitric oxide synthase regulates microvascular hyperpermeability in vivoTakuya Hatakeyama, Peter J Pappas, Robert W Hobson, et al.
Journal of Diabetes Research|January 14, 2014
Boldine prevents renal alterations in diabetic ratsRomina Hernández-Salinas, Alejandra Z Vielma, Marlene N Arismendi, et al.
Nitric Oxide : Biology and Chemistry|November 21, 2007
Differential role of S-nitrosylation and the NO-cGMP-PKG pathway in cardiac contractilityDaniel R González, Ignacio C Fernández, Pablo P Ordenes, et al.
Microvascular Research|October 27, 2004
Histamine reduces gap junctional communication of human tonsil high endothelial cells in cultureXavier F Figueroa, Karina Alviña, Agustín D Martínez, et al.
American Journal of Physiology. Heart and Circulatory Physiology|May 9, 2006
Functional significance of differential eNOS translocationFabiola A Sánchez, Nirav B Savalia, Ricardo G Durán, et al.
Journal of Vascular Research|November 13, 2013
Coordinated endothelial nitric oxide synthase activation by translocation and phosphorylation determines flow-induced nitric oxide production in resistance vesselsXavier F Figueroa, Daniel R González, Mariela Puebla, et al.
Carcinogenesis|January 10, 2019
Galectin-8 induces endothelial hyperpermeability through the eNOS pathway involving S-nitrosylation-mediated adherens junction disassemblyPatricia Zamorano, Tania Koning, Claudia Oyanadel, et al.
American Journal of Physiology. Heart and Circulatory Physiology|February 28, 2016
S-nitrosylation regulates VE-cadherin phosphorylation and internalization in microvascular permeabilityAnita Guequén, Rodrigo Carrasco, Patricia Zamorano, et al.
Circulation Research|July 11, 2012
S-Nitrosation of β-catenin and p120 catenin: a novel regulatory mechanism in endothelial hyperpermeabilityNatalie Marín, Patricia Zamorano, Rodrigo Carrasco, et al.
Neuropharmacology|April 16, 2013
The ATP required for potentiation of skeletal muscle contraction is released via pannexin hemichannelsManuel A Riquelme, Luis A Cea, José L Vega, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
The Journal of Physiology|May 6, 2006
Endothelial nitric oxide synthase regulates microvascular hyperpermeability in vivoTakuya Hatakeyama, Peter J Pappas, Robert W Hobson, et al.
Journal of Diabetes Research|January 14, 2014
Boldine prevents renal alterations in diabetic ratsRomina Hernández-Salinas, Alejandra Z Vielma, Marlene N Arismendi, et al.
Nitric Oxide : Biology and Chemistry|November 21, 2007
Differential role of S-nitrosylation and the NO-cGMP-PKG pathway in cardiac contractilityDaniel R González, Ignacio C Fernández, Pablo P Ordenes, et al.
Microvascular Research|October 27, 2004
Histamine reduces gap junctional communication of human tonsil high endothelial cells in cultureXavier F Figueroa, Karina Alviña, Agustín D Martínez, et al.
American Journal of Physiology. Heart and Circulatory Physiology|May 9, 2006
Functional significance of differential eNOS translocationFabiola A Sánchez, Nirav B Savalia, Ricardo G Durán, et al.
Journal of Vascular Research|November 13, 2013
Coordinated endothelial nitric oxide synthase activation by translocation and phosphorylation determines flow-induced nitric oxide production in resistance vesselsXavier F Figueroa, Daniel R González, Mariela Puebla, et al.
Carcinogenesis|January 10, 2019
Galectin-8 induces endothelial hyperpermeability through the eNOS pathway involving S-nitrosylation-mediated adherens junction disassemblyPatricia Zamorano, Tania Koning, Claudia Oyanadel, et al.
American Journal of Physiology. Heart and Circulatory Physiology|February 28, 2016
S-nitrosylation regulates VE-cadherin phosphorylation and internalization in microvascular permeabilityAnita Guequén, Rodrigo Carrasco, Patricia Zamorano, et al.
Circulation Research|July 11, 2012
S-Nitrosation of β-catenin and p120 catenin: a novel regulatory mechanism in endothelial hyperpermeabilityNatalie Marín, Patricia Zamorano, Rodrigo Carrasco, et al.
Neuropharmacology|April 16, 2013
The ATP required for potentiation of skeletal muscle contraction is released via pannexin hemichannelsManuel A Riquelme, Luis A Cea, José L Vega, et al.
Pageof 3