## Abstract In this study we investigated the prospect of microwaveβinduced alteration of ^45^Ca^2+^ efflux from rat neural tissue at low pulse repetition frequencies and low power densities under in vitro conditions. Rat cerebral tissue, preloaded with ^45^Ca^2+^, was exposed to pulsedβmicrowave r
Structural Effects of N -Arylcarbamoylpyrazolines on Calcium Uptake in Rat Brain Synaptosomes
β Scribed by Hasan, Riaz; Nishimura, Keiichiro; Nakagawa, Yoshiaki; Kurihara, Norio; Ueno, Tamio
- Publisher
- John Wiley and Sons
- Year
- 1996
- Tongue
- English
- Weight
- 435 KB
- Volume
- 46
- Category
- Article
- ISSN
- 1526-498X
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β¦ Synopsis
N-Arylcarbamoylpyrazolines with various substituents at the para position of the carbamoyl benzene ring inhibited ATP-dependent Ca2+-uptake in synaptosomes prepared from the rat brain. The activity of these compounds was evaluated as log( 1/15,), the reciprocal logarithm of half inhibitory concentration, I,, (M), from the concentration-response curve for the inhibition of Ca2 +uptake. Among the compounds tested, methyl 3-(4-chlorophenyl)-4-methyl-l -[ N -(4-trifluoromethylphenyl)carbamoyl]-2-pyrazoline-4-carboxylate was the most potent, the I,, value of which as 9.12 x lo-' M. Variations in the activity in terms of log( l/Is0) were quantitatively analysed using a substituent parameter, showing that the higher the electron-withdrawing effect of the substituent, the higher was the activity. The substituent effects were similar to those on insecticidal activity against the America1 cockroach. The higher the inhibitory activity against Ca2+ uptake, the higher seemed to be the insecticidal activity. Methyl (4S)-3-(4-chlorophenyl)-4-methyl-1 -[N-(4-chlorophenyl)carbamoyl]-2-pyrazoline-4-carboxylate had higher inhibitory activity against Ca2+-uptake and higher insecticidal activity than the R-isomer, but the difference was greater in the Ca2+-uptake system.
π SIMILAR VOLUMES
Glutamate (L-glu) is the most important excitatory neurotransmitter in the mammalian central nervous system. Its action is terminated by transporters located in the plasma membrane of neurons and glial cells, which have a critical role in preventing glutamate excitotoxicity under normal conditions.