首页> 美国卫生研究院文献>The Journal of Physiology >The effect of extracellular weak acids and bases on the intracellular buffering power of snail neurones.
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The effect of extracellular weak acids and bases on the intracellular buffering power of snail neurones.

机译:细胞外弱酸和弱碱对蜗牛神经元细胞内缓冲能力的影响。

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摘要

1. Intracellular pH (pHi) was measured in snail neurones using pH-sensitive glass microelectrodes. The influence of externally applied weak acids and bases on the total intracellular buffering power (beta T) was investigated by monitoring the pHi changes caused by the intracellular ionophoretic injection of HCl. 2. In the absence of weak acids or bases a reduction in the extracellular HEPES concentration had no effect on pHi or on beta T. It did, however, reduce slightly the rate of pHi recovery following HCl injection. 3. The presence of CO2 greatly increased beta T. However, as predicted for an open buffer system, the contributions to intracellular buffering by CO2 (beta CO2) decreased as pHi decreased. 4. When added to the superfusate, procaine, 4-aminopyridine, trimethylamine and NH4Cl (1-10 mM) all increased steady-state pHi. Procaine was fastest at increasing pHi and 4-aminopyridine the slowest. All four of these weak bases increased beta T. 5. The intracellular buffering action by these weak bases varied. HCl injection in the presence of procaine usually resulted in steady-state pHi changes with no pHi transients. In the presence of the other three weak bases HCl injections resulted in intracellular acidifications which were followed by pHi recovery-like transients. However, these were not blocked by SITS (4-acetamido-4'-isothiocyanatostilbene-2,2'-disulphonic acid) or by CaCl2 and I thus conclude that these transients were as a result of slow or incomplete intracellular buffering by the weak bases. 6. In many cells there was a good correlation between the measured contributions to intracellular buffering by the weak bases (beta base) and those predicted assuming a simple two-compartment open system. In all cases, as predicted, beta base increased as pHi decreased. 7. I found a clear relationship between the concentration of external buffer (HEPES) and the rate at which weak bases, applied to the superfusate, were able to increase pHi. The greater the extracellular buffer concentration the greater was the speed of intracellular alkalinization. 8. Lowering the extracellular buffer concentration reduced the efficiency of intracellular buffering by weak bases in response to an intracellular acid load. HCl injection in the presence of weak base caused a larger initial intracellular acidification if the extracellular HEPES concentration was reduced. 9. In conclusion, both weak acids and weak bases can make very large, pHi-dependent contributions to intracellular buffering by way of open buffer systems.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用pH敏感的玻璃微电极在蜗牛神经元中测量细胞内pH(pHi)。通过监测细胞内离子注入HCl引起的pHi变化,研究了外部施加的弱酸和碱对总细胞内缓冲能力(βT)的影响。 2.在不存在弱酸或弱碱的情况下,降低细胞外HEPES浓度对pHi或βT无影响。但是,确实确实降低了注射HCl后pHi的回收率。 3. CO2的存在大大增加了βT。但是,正如开放缓冲系统所预测的那样,随着pHi的降低,CO2对胞内缓冲的贡献(βCO2)也随之降低。 4.当添加到超熔液中时,普鲁卡因,4-氨基吡啶,三甲胺和NH4Cl(1-10 mM)都增加了稳态pHi。普鲁卡因在增加pHi方面最快,而4-氨基吡啶最慢。所有这四个弱碱都增加了βT。5.这些弱碱的细胞内缓冲作用各不相同。在普鲁卡因存在下注射盐酸通常会导致稳态pHi变化,而不会出现pHi瞬变现象。在存在其他三个弱碱的情况下,HCl注入会导致细胞内酸化,然后发生pHi回收样的瞬变。然而,这些并没有被SITS(4-乙酰氨基-4'-异硫氰酸根合二苯乙烯-2,2'-二磺酸)或CaCl2所阻止,因此我得出结论,这些瞬变是弱碱基对细胞内缓冲作用缓慢或不完全的结果。 。 6.在许多细胞中,弱碱基(β碱基)对细胞内缓冲的测量贡献与假设简单的两室开放系统所预测的贡献之间存在良好的相关性。在所有情况下,正如所预测的,β碱随着pHi的降低而增加。 7.我发现外部缓冲液(HEPES)的浓度与施加于超融合液的弱碱能够增加pHi的速率之间存在明显的关系。细胞外缓冲液浓度越高,细胞内碱化的速度就越大。 8.降低细胞外缓冲液浓度会降低细胞内酸负荷导致弱碱对细胞内缓冲的效率。如果降低细胞外HEPES浓度,在弱碱存在下注射HCl会引起较大的初始细胞内酸化。 9.总之,弱酸和弱碱都可以通过开放式缓冲液系统对细胞内缓冲做出很大的,pHi依赖性的贡献。(摘要截短为400字)

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