Artigo Revisado por pares

Cation permeability change caused by l-glutamate in cultured rat hippocampal neurons

1988; Elsevier BV; Volume: 443; Issue: 1-2 Linguagem: Inglês

10.1016/0006-8993(88)91601-0

ISSN

1872-6240

Autores

Seiji Ozawa, Tomoko Nakamura, Michisuke Yuzaki,

Tópico(s)

Lipid Membrane Structure and Behavior

Resumo

The ionic mechanism of the membrane permeability changes caused by L-glutamate in hippocampal neurons prepared from 17- to 19-day-old fetal rat in dispersed cell cultures was studied with the whole-cell variation of the patch electrode voltage-clamp technique. The cultured hippocampal neurons became sensitive to glutamate 7 days after plating, and thereafter the sensitivity gradually increased. The conductance increase caused by glutamate was voltage-sensitive, decreasing with membrane hyperpolarization at potentials more negative than -40 mV. The relative permeability of glutamate-activated channels to alkali metal and alkaline earth cations was estimated by reversal potential measurements. The alkali metal cations, Li+, Na+, K+, Rb+ and Cs+ were permeant to the glutamate channels, and the selectivity among them was weak. The alkaline earth cations, Ca2+, Sr2+ and Ba2+ were more permeant than the alkali metals. The permeability ratios of these divalent cations relative to Na+ were 2.4 (Ca2+), 2.4 (Sr2+) and 2.8 (Ba2+), respectively. Mg2+ was much less permeant and the permeability ratio (PMg/PNa) was only 0.1. Anion conductance made no contribution to the glutamate-induced current. Functional implications of the glutamate-induced increased in Ca2+-influx were discussed.

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