首页> 外文期刊>British Journal of Pharmacology >Fading and rebound of P2X2 currents at millimolar ATP concentrations caused by low pH.
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Fading and rebound of P2X2 currents at millimolar ATP concentrations caused by low pH.

机译:低pH引起的毫摩尔ATP浓度下P2X2电流的衰减和反弹。

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When ATP is applied at high concentrations (above 1 mM) to PC12 cells, it produces a rapidly desensitizing peak current followed by a rebound of the current after termination of the ATP application. We expressed P2X2 receptors, which are thought to mediate the ATP currents of PC12 cells, in HEK293 cells and studied the effects of acidification on this 'fading and rebound' phenomenon. We found that the desensitization disappeared after adjusting the low pH (<5.0) of the millimolar ATP concentrations to a more physiological value (pH 7.3). Furthermore, the fading and rebound could also be induced at much lower ATP concentrations by decreasing the pH of the ATP containing application solutions. Thus, it appears this phenomenon is not caused directly by high concentrations of ATP, but is due to a concomitant acidification that occurs when high concentrations of ATP are dissolved in only moderately buffered application solutions.
机译:当以高浓度(高于1 mM)将ATP应用于PC12细胞时,它会产生快速脱敏的峰值电流,随后在ATP终止后电流反弹。我们在HEK293细胞中表达了P2X2受体(据称可介导PC12细胞的ATP电流),并研究了酸化作用对这种“褪色和反弹”现象的影响。我们发现将毫摩尔ATP浓度的低pH(<5.0)调整为更高的生理值(pH 7.3)后,脱敏作用消失了。此外,还可以通过降低含ATP的应用溶液的pH值,在低得多的ATP浓度下诱导褪色和反弹。因此,这种现象似乎不是直接由高浓度的ATP引起的,而是由于将高浓度的ATP仅溶解在中等缓冲的应用溶液中而引起的伴随酸化。

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