Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Narumi Yamada
Hepatocyte Growth Factor Enhances the Barrier Function in Primary Cultures of Rat Brain Microvascular Endothelial Cells
Microvascular Research
Biochemistry
Cardiovascular Medicine
Cell Biology
Cardiology
Related publications
Pericytes From Brain Microvessels Strengthen the Barrier Integrity in Primary Cultures of Rat Brain Endothelial Cells
Cellular and Molecular Neurobiology
Medicine
Molecular Neuroscience
Cell Biology
Cellular
Establishment of Primary Cultures of Human Brain Microvascular Endothelial Cells to Provide an in Vitro Cellular Model of the Blood-Brain Barrier
Nature Protocols
Biochemistry
Genetics
Molecular Biology
PACAP27 Regulates Ciliary Function in Primary Cultures of Rat Brain Ependymal Cells
Neuropeptides
Molecular Neuroscience
Endocrine
Endocrinology
Autonomic Systems
Neurology
Cellular
Medicine
Initial Contact of Glioblastoma Cells With Existing Normal Brain Endothelial Cells Strengthen the Barrier Function via Fibroblast Growth Factor 2 Secretion: A New in Vitro Blood–Brain Barrier Model
Cellular and Molecular Neurobiology
Medicine
Molecular Neuroscience
Cell Biology
Cellular
Expression of .ALPHA.2- And .BETA.2-Adrenergic Responses by Hepatocyte Growth Factor and Platelet-Derived Growth Factor in Primary Cultures of Adult Rat Hepatocytes.
Biological and Pharmaceutical Bulletin
Medicine
Pharmacology
Pharmaceutical Science
An in Vitro Blood-Brain Barrier Model: Cocultures Between Endothelial Cells and Organotypic Brain Slice Cultures
Proceedings of the National Academy of Sciences of the United States of America
Multidisciplinary
Microvascular Endothelial Function and Primary Open Angle Glaucoma
Therapeutic Advances in Ophthalmology
Huntington’s Disease iPSC-Derived Brain Microvascular Endothelial Cells Reveal WNT-Mediated Angiogenic and Blood-Brain Barrier Deficits
Cell Reports
Biochemistry
Genetics
Molecular Biology
Hepatocyte Growth Factor Triggers Distinct Mechanisms of Asef and Tiam1 Activation to Induce Endothelial Barrier Enhancement
Cellular Signalling
Cell Biology