[Functional-biochemical characteristics of neuroglia].
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Biomedical subjects
Publications and source records attributed to L Z Pevzner.
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Albino rats were kept for a year under conditions of everyday motor loading or of a constant hypokinesia. An increase of the motor activity results in rise in the acetylcholinesterase activity determined in the synaptosomal and purified mitochondrial fractions while hypokinesia induces a pronounced decrease in this enzyme activity. The butyrylcholinesterase activity somewhat decreases in the synaptosomal fraction after hypokinesa but does not change under the motor loading regime. Motor loading causes an increase in the amount of synaptosomal water-soluble proteins possessing an intermediate electrophoretic mobility and seem to correspond to the brain-specific protein 14-3-2. In the synaptosomal fraction the amount of membrane proteins with a low electrophoretic mobility and with the cholinesterase activity rises. Hypokinesia, on the contrary, decreases the amount of these membrane proteins.
Double-beam recording visible cytospectrophotometry showed that 30-minute convulsions due to 6 at. ga. hyperoxia result in a decrease in the RNA and protein content per cell in layer V neurons of the cerebral motor cortex and in the motoneurons of spinal cord anterior horn in albino rats. A decrease is also found in the glial cells, except for a spinal cord neuroglia. A decrease in the RNA content in the neurons as well as the protein content in the neurons and glia of the spinal cord is more pronounced than in similar structures of the cerebral motor cortex. The quantity of RNA and protein in the neurons and neuroglia of the cerebral cortex remins decreased for 24 h after hyperoxia cessation. In the spinal cord motoneurons the level of the RNA and protein becomes normal 3 h after hyperoxia, and 24 h later it exceeds the initial one.
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