[HTML][HTML] Megalencephalic leukoencephalopathy with subcortical cysts disease-linked MLC1 protein favors gap-junction intercellular communication by regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - mdpi.com
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

[HTML][HTML] Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - ncbi.nlm.nih.gov
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - europepmc.org
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - 2020 - agris.fao.org
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - cir.nii.ac.jp
抄録< jats: p> Astrocytes, the most numerous cells of the central nervous system, exert
critical functions for brain homeostasis. To this purpose, astrocytes generate a highly …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - search.proquest.com
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells, 2020 - pubmed.ncbi.nlm.nih.gov
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - Cells (2073 …, 2020 - search.ebscohost.com
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

[PDF][PDF] Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - academia.edu
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …

[PDF][PDF] Megalencephalic Leukoencephalopathy with Subcortical Cysts Disease-Linked MLC1 Protein Favors Gap-Junction Intercellular Communication by Regulating …

A Lanciotti, MS Brignone, M Belfiore… - academia.edu
Astrocytes, the most numerous cells of the central nervous system, exert critical functions for
brain homeostasis. To this purpose, astrocytes generate a highly interconnected intercellular …