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Mechanisms of pHi regulation studied in individual neurons cultured from mouse cerebral cortex.

机译:在小鼠大脑皮层培养的单个神经元中研究了pHi调节机制。

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Maintenance and regulation of intracellular pH (pHi) was studied in single cultured mouse neocortical neurons using the fluorescent probe 2',7'-bis-(2-carboxyethyl)-5,6-carboxyfluorescein (BCECF). Reversal of the Na+ gradient by reduction of the extracellular Na+ concentration ([Na+]o) resulted in rapid intracellular acidification, inhibited by 5'-(N-ethyl-N-isopropyl)amiloride (EIPA), an inhibitor of Na+/H+ exchange. In the presence of EIPA and/or 4',4'-diisothiocyano-stilbene-2',2'-sulfonic acid (DIDS), an inhibitor of Na+-coupled anion exchangers and Na+-HCO3- cotransport, a slow decline of pHi was seen. Following intracellular acidification imposed by an NH4Cl prepulse, pHi recovered at a rapid rate, which was reduced by reduction of [Na+]o and was virtually abolished by EIPA and DIDS in combination. Creating an outward Cl- gradient by removal of extracellular Cl- significantly increased the rate of pHi recovery. In HCO3(-)-free media, the pHi recovery rate was reduced in control cells and was abolished at zero [Na+]o and by EIPA. After intracellular alkalinization imposed by an acetate prepulse, pHi recovery was unaffected by DIDS but was significantly reduced in the absence of extracellular Cl-, as well as in the presence of Zn2+, which is a blocker of proton channels. Together, this points toward a combined role of DIDS-insensitive Cl-/HCO3- and passive H+ influx in the recovery of pHi after alkalinization.
机译:使用荧光探针2',7'-双-(2-羧乙基)-5,6-羧基荧光素(BCECF)在单个培养的小鼠新皮层神经元中研究了细胞内pH(pHi)的维持和调节。通过降低细胞外Na +浓度([Na +] o)来逆转Na +梯度会导致细胞内快速酸化,并被Na + / H +交换抑制剂5'-(N-乙基-N-异丙基)阿米洛利(EIPA)抑制。在EIPA和/或4',4'-二异硫氰基-二苯乙烯-2',2'-磺酸(DIDS)的存在下,Na +偶联阴离子交换剂和Na + -HCO3-共转运的抑制剂,pHi缓慢下降被看见。在由NH4Cl预脉冲施加的细胞内酸化作用之后,pHi迅速恢复,由于[Na +] o的降低而降低,实际上被EIPA和DIDS联合废除了。通过去除细胞外Cl-产生向外的Cl-梯度,显着提高了pHi的回收率。在不含HCO3(-)的培养基中,pHi回收率在对照细胞中降低,并在零[Na +] o和EIPA取消。在醋酸盐预脉冲作用下进行细胞内碱化后,pHi的回收率不受DIDS的影响,但是在不存在细胞外Cl-以及存在质子通道的阻断剂Zn2 +的情况下,pHi的回收率显着降低。总之,这表明在碱化后,不敏感DIDS的Cl- / HCO3-和被动H +流入物在pHi的回收中具有联合作用。

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