Energy‐dependent volume regulation in primary cultured cerebral astrocytes
- 1 August 1986
- journal article
- research article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 128 (2) , 209-215
- https://doi.org/10.1002/jcp.1041280211
Abstract
Cell volume regulation and energy metabolism were studied in primary cultured cerebral astrocytes during exposure to media of altered osmolarity. Cells suspended in medium containing 1/2 the normal concentration of NaCl (hypoosmotic) swell immediately to a volume 40–50% larger than cells suspended in isoosmotic medium. The cell volume in hypoosmotic medium then decreases over 30 min to a volume approximately 25% larger than cells in isoosmotic medium. In hyperosmotic medium (containing twice the normal concentration of NaCl), astrocytes shrink by 29%. Little volume change occurs following this initial shrinkage. Cells resuspended in isoosmotic medium after a 30 min incubation in hypoosmotic medium shrink immediately to a volume 10% less than the volume of cells incubated continuously in isoosmotic medium. Thus, the regulatory volume decrease (RVD) in hypoosmotic medium involves a net reduction of intracellular osmoles. The RVD is partially blocked by inhibitors of mitochondrial electron transport but is unaffected by an inhibitor of glycolysis or by an uncoupler of oxidative phosphorylation. Inhibition of RVD by these metabolic agents is correlated with decreased cellular ATP levels. Ouabain, added immediately after hypoosmotic induced swelling, completely inhibits RVD, but does not alter cell volume if added after RVD has taken place. Ouabain also inhibits cell respiration 27% more in hypoosmotic medium than in isoosmotic medium indicating that the (Na, K)-ATPase-coupled ion pump is more active in the hypoosmotic medium. These data suggest that the cell volume response of astrocytes in hypoosmotic medium involves the net movement of osmoles by a mechanism dependent on cellular energy and tightly coupled to the (Na, K)-ATPase ion pump. This process may be important in the energy-dependent osmoregulation in the brain, a critical role attributed to the astrocyte in vivo.This publication has 26 references indexed in Scilit:
- Studies on the relationship between glycolysis and (Na++K+)-ATPase in cultured cellsBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 1984
- Sodium transport in astrocytesJournal of Neuroscience Research, 1984
- Osmoregulatory Salt Transporting Mechanisms: Control of Cell Volume in Anisotonic MediaAnnual Review of Physiology, 1981
- Volume regulation by Amphiuma red blood cells. The membrane potential and its implications regarding the nature of the ion-flux pathways.The Journal of general physiology, 1980
- Respiration in rat cerebral astrocytes from primary cultureJournal of Neuroscience Research, 1980
- Vascular Smooth Muscle: Aerobic Glycolysis Linked to Sodium and Potassium Transport ProcessesScience, 1979
- METABOLIC CHANGES ASSOCIATED WITH ISO‐OSMOTIC REGULATION IN BRAIN CORTEX SLICESJournal of Neurochemistry, 1977
- Volume regulation by flounder red blood cells in anisotonic mediaThe Journal of general physiology, 1977
- The Response of Duck Erythrocytes to Nonhemolytic Hypotonic MediaThe Journal of general physiology, 1971
- A micro-method for the study of oxidative phosphorylationBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1971