Effect of oxotremorine, physostigmine, and scopolamine on brain acetylcholine synthesis: A study using HPLC

Author:

Bertrand N.,Beley A.

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,General Medicine,Biochemistry

Reference18 articles.

1. Schuberth, J., Sparf, B., and Sundwall, A. 1969. A technique for the study of acetylcholine turnover in mouse brain in vivo. J. Neurochem.16:695?700.

2. Saelens, J. K., Simke, J. P., Schuman, J., and Allen, M. P. 1974. Studies with agents which influence acetylcholine metabolism in mouse brain. Arch. Int. Pharmacodyn.209:250?258.

3. Trabucchi, M., Cheney, D. L., Hanin, I., and Costa, E. 1975. Application of principles of steady-state kinetics to the estimation of brain acetylcholine turnover rate: effects of oxotremorine and physostigmine. J. Pharmacol. Exp. Ther.194:57?64.

4. Nordberg, A. 1978. Effect of oxotremorine on the apparent regional turnover of acetylcholine in mouse brain. J. Neurochem.30:383?389.

5. Karlen, B., Lundgren, G., Lundin, J., and Holmstedt, B. 1979. Effect of physostigmine and atropine on acetylcholine turnover in mouse brain. Arch. Pharm.308:61?65.

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