Literature DB >> 1711164

Evidence for electrogenic sodium-dependent ascorbate transport in rat astroglia.

J X Wilson1, E M Jaworski, S J Dixon.   

Abstract

The dependence of ascorbate uptake on external cations was studied in primary cultures of rat cerebral astrocytes. Initial rates of ascorbate uptake were diminished by lowering the external concentrations of either Ca2+ or Na+. The Na(+)-dependence of astroglial ascorbate uptake gave Hill coefficients of approximately 2, consistent with a Na(+)-ascorbate cotransport system having stoichiometry of 2 Na+:1 ascorbate anion. Raising external K+ concentration incrementally from 5.4 to 100 mM, so as to depolarize the plasma membrane, decreased the initial rate of ascorbate uptake, with the degree of inhibition depending on the level of K+. The depolarizing ionophores gramicidin and nystatin slowed ascorbate uptake by astrocytes incubated in 5.4 mM K+; whereas, the nondepolarizing ionophore valinomycin did not. Qualitatively similar results were obtained whether or not astrocytes were pretreated with dibutyryl cyclic AMP (0.25 mM for 2 weeks) to induce stellation. These data are consistent with the existence of an electrogenic Na(+)-ascorbate cotransport system through which the rate of ascorbate uptake is modulated by endogenous agents, such as K+, that alter astroglial membrane potential.

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Year:  1991        PMID: 1711164      PMCID: PMC7089219          DOI: 10.1007/bf00965831

Source DB:  PubMed          Journal:  Neurochem Res        ISSN: 0364-3190            Impact factor:   3.996


  35 in total

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6.  Cholinergic nerve terminals contain ascorbic acid which induces Ca2+-dependent release of acetylcholine and ATP from isolated Torpedo synaptic vesicles.

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Authors:  H Kettenmann; M Schachner
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Journal:  J Biol Chem       Date:  1983-11-10       Impact factor: 5.157

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  6 in total

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4.  Effect of oxygen on ascorbic acid uptake and concentration in embryonic chick brain.

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Review 5.  Transport of vitamin C in animal and human cells.

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  6 in total

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