R882A-05N
Rat Astrocytes: RA, neonatal
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About This Item
Produits recommandés
Source biologique
rat brain (Rat brain)
Niveau de qualité
Conditionnement
pkg of 500,000 cells
Fabricant/nom de marque
Cell Applications, Inc
Mode de croissance
Adherent
Morphologie
glial
Technique(s)
cell culture | mammalian: suitable
Maladie(s) pertinente(s)
seizures
Conditions d'expédition
dry ice
Température de stockage
−196°C
Catégories apparentées
Description générale
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Rat astrocytes (RA) are derived from rat cerebral cortex. Astrocytes are the most abundant cells in the central nervous system where they perform many functions, such as providing mechanical support and nutrients to neurons and removal of wastes from neurons; providing signaling to endothelial cells; regulating neurogenesis and controlling synaptic function. As the recognition of the importance of astrocytes in nervous system is increasing, RA serve as a useful in vitro model for exploring the diversity of astrocytes functions.Characterization: Stained positive for GFAP.Rat Astrocytes (RA) and Rat Brain Microvascular Endothelial Cells (RBMEC), both from Cell Applications, Inc., have been used to assess neuroprotective capabilities of bioenergy stabilizers in an in vitro model of stroke (Liu, 2013) and to investigates the effects of astrocytes on brain microvascular endothelial cells in relation to iron transport pathway (McCarthy, 2014).
Rat astrocytes (RA) are derived from rat cerebral cortex. Astrocytes are the most abundant cells in the central nervous system where they perform many functions, such as providing mechanical support and nutrients to neurons and removal of wastes from neurons; providing signaling to endothelial cells; regulating neurogenesis and controlling synaptic function. As the recognition of the importance of astrocytes in nervous system is increasing, RA serve as a useful in vitro model for exploring the diversity of astrocytes functions.Characterization: Stained positive for GFAP.Rat Astrocytes (RA) and Rat Brain Microvascular Endothelial Cells (RBMEC), both from Cell Applications, Inc., have been used to assess neuroprotective capabilities of bioenergy stabilizers in an in vitro model of stroke (Liu, 2013) and to investigates the effects of astrocytes on brain microvascular endothelial cells in relation to iron transport pathway (McCarthy, 2014).
Origine de la lignée cellulaire
Brain
Application
Neuroscience research, mechanical & biochemical support, ion balance, nutrient provision, waste removal, cell signaling, regulation of neurogenesis, control of synaptic function, astrocyte function, gene expressino, injury repair, gliotransmitter release, neuronal excitability.
Composants
Basal Medium containing 10% FBS & 10% DMSO
Qualité
Each lot was tested for proper morphology, Population Doublings, Negative for HIV, Hepatitis B, Hepatitis C, mycoplasma, bacteria, and fungi.
Notes préparatoires
- 2nd passage, >500,000 cells in Basal Medium containing 10% FBS & 10% DMSO
- Can be cultured at least 10 doublings
Code de la classe de stockage
10 - Combustible liquids
Classe de danger pour l'eau (WGK)
WGK 3
Point d'éclair (°F)
Not applicable
Point d'éclair (°C)
Not applicable
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