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pH regulation in single CA1 neurons acutely isolated from the hippocampi of immature and mature rats.

机译:从未成熟和成熟大鼠海马急性分离的单个CA1神经元的pH调节。

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摘要

1. We used the pH-sensitive fluorescent dye 2',7'-bis(carboxyethyl)-5,6-carboxyfluorescein (BCECF) to study the regulation of intracellular pH (pHi) in single pyramidal neurons freshly isolated from the hippocampal CA1 region of immature (2- to 10-day-old) and more mature (21- to 30-day-old) rats. 2. Whether isolated from immature or mature rats, neurons had a broad range of initial pHi values (6.3-7.7) when the cells were examined in solutions buffered with Hepes and no CO2/HCO3-. The initial pHi distribution for neurons isolated from immature rats was best fitted with a Gaussian distribution with a mean of 6.95. In contrast, the initial pHi distribution for neurons isolated from mature rats was best fitted with the sum of two Gaussian distributions with means of 6.68 and 7.32. 3. When neurons with a relatively low initial pHi in Hepes-buffered solutions were acid loaded, pHi recovered very slowly. Neurons with a relatively high initial pHi recovered rapidly. The rate constant for the exponential pHi recovery increased with initial pHi. All pHi recoveries required Na+. 4. Both for neurons with a relatively high (> or = 7.05) and a relatively low (< 7.05) initial pHi, net acid extrusion rates (Jtotal = dpHi/dt x buffering power) decreased linearly with increasing pHi. Compared with the line for neurons with a relatively low initial pHi, that for neurons with a relatively high pHi had a significantly greater slope and was alkaline shifted by 0.6-0.7 pH units. 5. Removing external Na+ in the absence of CO2/HCO3- caused pHi to decrease by approximately 0.3 in neurons with a relatively low initial pHi, and by approximately 0.5 in neurons with a relatively high initial pHi. This initial acidification was followed by a slower, partial pHi recovery in approximately 32% of neurons with a relatively low initial pHi, but only approximately 14% of neurons with a relatively high pHi. 6. When exposed to CO2/HCO3-, all neurons initially acidified. Neurons with a relatively low initial pHi recovered to a pHi approximately 0.2 pH units greater than the initial value. Among neurons with higher initial pHi values, some did not recover at all, whereas others recovered to a value similar to or above the initial pHi. On average, the final CO2/HCO3- pHi for neurons with a relatively high initial pHi was similar to the pHi in Hepes buffer. Neurons with a relatively high pHi in Hepes buffer continued to be more alkaline (by approximately 0.2 pH units) in CO2/HCO3-. 7. When neurons with a relatively high initial pHi in Hepes (> or = 7.25) were exposed to CO2/HCO3- and then acid loaded, Jtotal values were more than twice the highest values observed in neurons with lower initial pHi values. Neurons with a moderate initial pHi in Hepes (7.05-7.24) had Jtotal values, at comparable pHi values, that were approximately 2-fold greater than for neurons with a relatively low initial pHi (< 7.05). 8. Thus, freshly isolated CA1 neurons of both mature and immature rats have a wide range of acid-base properties. Those with higher initial pHi values in a Hepes buffer tend to have greater Jtotal values in both Hepes and CO2/HCO3-, and tend to have higher steady-state pHi values in CO2/HCO3-.
机译:1.我们使用pH敏感的荧光染料2',7'-双(羧乙基)-5,6-羧基荧光素(BCECF)研究了从海马CA1区新鲜分离的单个锥体神经元中细胞内pH(pHi)的调节。未成熟(2至10天大)和更成熟(21至30天大)的大鼠。 2.无论是从未成熟的大鼠还是成熟的大鼠中分离,当在含有Hepes且无CO2 / HCO3-的溶液中检查细胞时,神经元的初始pHi值范围都很大(6.3-7.7)。从未成熟大鼠中分离出的神经元的初始pHi分布最适合高斯分布,平均值为6.95。相反,从成熟大鼠中分离出的神经元的初始pHi分布最适合两个高斯分布之和,平均值为6.68和7.32。 3.当在Hepes缓冲溶液中初始pHi相对较低的神经元被酸加载时,pHi的恢复非常缓慢。初始pHi较高的神经元迅速恢复。指数pHi恢复的速率常数随初始pHi增加。所有pHi回收都需要Na +。 4.对于初始pHi相对较高(>或= 7.05)和相对较低(<7.05)的神经元,净酸挤出速率(Jtotal = dpHi / dt x缓冲能力)随pHi的增加呈线性下降。与初始pHi相对较低的神经元的线相比,pHi较高的神经元的斜率明显更大,并且碱性移动了0.6-0.7个pH单位。 5.在没有CO 2 / HCO 3-的情况下去除外部Na +导致pHi在初始pHi相对较低的神经元中降低约0.3,而在初始pHi相对较高的神经元中降低约0.5。初始酸化后,初始pHi相对较低的神经元中约32%的pHi恢复较慢,部分pHi升高,而pHi较高的神经元中只有约14%。 6.暴露于CO2 / HCO3-时,所有神经元最初都被酸化。初始pHi相对较低的神经元恢复到的pHi比初始值大0.2个pH单位。在具有较高初始pHi值的神经元中,有些根本无法恢复,而其他一些恢复到与初始pHi相似或更高的值。平均而言,初始pHi相对较高的神经元的最终CO2 / HCO3- pHi与Hepes缓冲液中的pHi相似。在Hepes缓冲液中具有相对较高pHi的神经元在CO2 / HCO3-中继续保持更碱性(约0.2个pH单位)。 7.当Hepes中初始pHi相对较高(>或= 7.25)的神经元暴露于CO2 / HCO3-中,然后加酸时,Jtotal值是初始pHi较低的神经元中观察到的最高值的两倍以上。在Hepes中具有中等初始pHi(7.05-7.24)的神经元在可比较的pHi值下的Jtotal值大约是具有相对较低初始pHi(<7.05)的神经元的Jtotal值。 8.因此,成熟和未成熟大鼠的新鲜分离的CA1神经元均具有广泛的酸碱性质。在Hepes缓冲液中具有较高初始pHi值的样品在Hepes和CO2 / HCO3-中往往具有较高的Jtotal值,而在CO2 / HCO3-中则具有较高的稳态pHi值。

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