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Sáez, Juan Carlos.[Characterization of a Novel Water Pocket Inside the Human Cx26 Hemichannel Structure]Characterization of a Novel Water Pocket Inside the Human Cx26 Hemichannel Structure

Abstract Background Mutations in the gene encoding for dysferlin cause recessive autosomal muscular dystrophies called dysferlinopathies. These mutations induce several alterations in skeletal muscles, including, inflammation, increased membrane perm...


Cea Pisani, Luis Andrés.Sáez, Juan Carlos.Bevilacqua, Jorge A.Arriagada, Christian.Cárdenas, Ana M.Bigot, Anne.Mouly, Vincent.Caviedes, Pablo.[The absence of dysferlin induces the expression of functional connexin-based hemichannels in human myotubes]The absence of dysferlin induces the expression of functional connexin-based hemichannels in human myotubes

Sagredo Baeza, Rafael, 1959-Sáez, Juan Carlos.[Fuentes para la Historia de los Ferrocarriles del Estado. Chile, Siglo XIX]Fuentes para la Historia de los Ferrocarriles del Estado. Chile, Siglo XIX

Johnson, R. G.Sáez, Juan Carlos.[We've Had Important Advances in the Connexin/Pannexin Field, Yet There Is Still Much to Do]We've Had Important Advances in the Connexin/Pannexin Field, Yet There Is Still Much to Do

Fiori, M.Sáez, Juan Carlos.[Permeation of Calcium through Purified Connexin 26 Hemichannels]Permeation of Calcium through Purified Connexin 26 Hemichannels

Orellana Roca, Juan Andrés.Hernández Trejo, Diego Eduardo.Velarde Aliaga, María Victoria.Sáez, Juan Carlos.[Hypoxia in High Glucose Followed by Reoxygenation in Normal Glucose Reduces the Viability of Cortical Astrocytes Through Increased Permeability of Connexin 43 Hemichannels]Hypoxia in High Glucose Followed by Reoxygenation in Normal Glucose Reduces the Viability of Cortical Astrocytes Through Increased Permeability of Connexin 43 Hemichannels

Cisterna Irrazabal, Bruno Alejandro.Sáez, Juan Carlos.[Neuronal involvement in muscular atrophy]Neuronal involvement in muscular atrophy

Orellana Roca, Juan Andrés.Maturana Fourniel, Carola Jeannette.Sáez, Juan Carlos.[Restraint stress increases hemichannel activity in hippocampal glial cells and neurons]Restraint stress increases hemichannel activity in hippocampal glial cells and neurons

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