Endogenous free choline levels and acetylcholine (ACh) synthesis in nerve terminals were investigated using cerebral cortical synaptosomes of C57BL/6 mice. Endogenous choline was produced at a rate tenfold faster than ACh to provide levels adequate for the formation of the latter. The combined pool
Choline and phospholipid metabolism and the synthesis of acetylcholine in rat brain
β Scribed by Dr. Richard S. Jope; Donald J. Jenden
- Publisher
- John Wiley and Sons
- Year
- 1979
- Tongue
- English
- Weight
- 820 KB
- Volume
- 4
- Category
- Article
- ISSN
- 0360-4012
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β¦ Synopsis
The metabolism of choline by rat brain, plasma, and liver was investigated using combined gas chromatography mass spectrometry following microwave irradiation and treatment with deuterium-labeled choline. Methods were established to measure simultaneously the concentrations of six choline-containing compounds and the incorporation of labeled choline into each of them. Intravenous injection of [ * H4 Icholine led t o initial labeling of choline, acetylcholine, and phosphocholine in rat brain, with all of the label eventually entering the phosphocholine pool. When labeled choline was administered in the diet its rate of incorporation into choline, phosphatidylcholine, and combined choline plasmalogen and lysophosphatidylcholine in the plasma and liver and into choline, acetylcholine, phosphocholine, glycerophosphorylcholine, phosphatidylcholine, and combined choline plasmalogen and lysophosphatidylcholine in the brain were determined, Choline, phosphatidylcholine, and combined choline plasmalogen and lysophosphatidylcholine in the plasma had similar specific activities. In the cortex and the striatum, choline and combined choline plasmalogen and lysophosphatidylcholine fraction generally had the highest specific activities. The time course of the postmortem release of choline by the brain was measured, and the sources of this choline were, sequentially, acetylcholine, glycerophosphorylcholine, and phospholipids.
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A simple, rapid, economical and sensitive method for the determination of acetylcholine and choline in neuronal tissue using a FIA system with immobilized enzyme and chemiluminescence detection is presented. The analytes were injected into a continuous stream of a simple medium flowing through a seq
In order to quantify the changes that occur in the cholinergic central nervous system with aging, we have compared acetylcholine (Ach) formation in brain cortex slice preparations from 2-year-old aged CBF-1 mouse brains and compared the findings with those in 2-4-month-old young adult mouse brain sl
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