Synaptic plasma membrane protein synthesis: Selective inhibition by chloramphenicol in vivo
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry,Biophysics
Reference10 articles.
1. Amino acid incorporation into nerve ending structuresin vitro
2. Highly Purified Synaptosomal Membranes from Rat Brain
3. The Interaction of Drugs and Subcellular Components in Animal Cells;Weisberger,1968
4. Biogenesis of mitochondria
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1. Chloramphenicol decreases brain glucose utilization and modifies the sleep-wake cycle architecture in rats;Journal of Neurochemistry;2005-04-26
2. Protein synthesis in axons and terminals: significance for maintenance, plasticity and regulation of phenotype;Progress in Neurobiology;2000-09
3. Chloramphenicol prevents carbachol-induced REM sleep in cats;Neuroscience Letters;1993-05
4. Le sommeil paradoxal: Est-il le gardien de l'individuation psychologique?;Canadian Journal of Psychology/Revue canadienne de psychologie;1991
5. Chloramphenicol modifies benzodiazepine receptor rhythm in the pontomesencephalic formation of the rat;Brain Research;1990-05
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