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The intrinsic intracellular H+ buffering power of snail neurones.

机译:蜗牛神经元固有的细胞内H +缓冲能力。

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摘要

1. We measured intracellular pH (pHi) in snail neurones using pH-sensitive glass microelectrodes. We then calculated the intracellular buffering power (beta i) from the pHi changes associated with the influx or efflux of a variety of weak acids or bases. 2. The weak acid anions butyrate and propionate (20 mM) gave similar values for beta i but those measured using 20 mM-acetate were on average twice as great. 3. Although solutions were nominally CO2-free, blockage of pHi regulation with SITS (4-acetamido-4'-isothiocyanatostilbene-2,2'-disulphonic acid) increased the sizes of the pHi changes upon weak acid addition and removal. The corresponding measured values of beta i were on average 26% lower with SITS than without. 4. With pHi regulation blocked, the use of 2.7% CO2 to measure beta i gave beta i values similar to those measured with butyrate or propionate. These values were about 50% less than those previously measured in snail neurones using CO2. 5. beta i values calculated from the pHi changes due to the removal of 5 mM of the weak bases trimethylamine, procaine and NH4Cl were all similar and comparable to those measured using butyrate or propionate. Removing the influence of pHi regulation on the undershoots after NH4Cl removal was found to decrease the apparent measured values of beta i by 10%. 6. Combining all the data (except the values obtained using CO2 and acetate), and adjusting for the errors due to pHi regulation reducing the sizes of the pHi changes, we found that the mean value for beta i was 10.4 +/- 0.6 mM (+/- S.E.M.) at a mean pHi of 7.36 +/- 0.05. 7. We also investigated the relationship between beta i and pHi using ionophoretic acid injection. By means of step-wise injections, with pHi regulation blocked, we found that at normal pHi levels beta i remained relatively constant. However, at a pHi of less than about 6.8 beta i increased with decreasing pHi.
机译:1.我们使用pH敏感的玻璃微电极测量了蜗牛神经元的细胞内pH(pHi)。然后,我们根据与各种弱酸或弱碱的流入或流出相关的pHi变化计算了细胞内缓冲能力(beta i)。 2.丁酸和丙酸弱酸阴离子(20 mM)的βi值相似,但使用20 mM乙酸盐测得的平均值平均大两倍。 3.尽管溶液名义上不含CO2,但用SITS(4-乙酰氨基-4'-异硫氰酸根合sti烯-2,2'-二磺酸)阻止pHi调节会增加弱酸添加和去除后pHi改变的大小。使用SITS时,相应的beta i测量值平均比不使用时低26%。 4.在阻止pHi调节的情况下,使用2.7%的CO2来测量βi时,βi值类似于用丁酸酯或丙酸酯测得的值。这些值比以前使用CO2在蜗牛神经元中测得的值低约50%。 5.由pHi变化计算出的beta i值由于去除了5 mM的弱碱三甲胺,普鲁卡因和NH4Cl而相似,与使用丁酸酯或丙酸酯测量的结果相似。发现去除NH4Cl后消除pHi调节对下冲的影响可使βi的表观测量值降低10%。 6.结合所有数据(使用CO2和乙酸盐获得的值除外),并调整由于pHi调节导致的pHi变化大小减小的误差,我们发现beta i的平均值为10.4 +/- 0.6 mM (+/- SEM),平均pHi为7.36 +/- 0.05。 7.我们还研究了使用离子交换酸注射液中βi和pHi之间的关系。通过逐步注射,阻止pHi调节,我们发现在正常pHi水平下,βi保持相对恒定。然而,在pHi小于约6.8时,βi随着pHi的降低而增加。

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