Intracellular pH response to anoxia in acutely dissociated adult rat hippocampal CA1 neurons

被引:36
作者
Sheldon, C
Church, J
机构
[1] Univ British Columbia, Dept Anat, Vancouver, BC V6T 1Z3, Canada
[2] Univ British Columbia, Dept Physiol, Vancouver, BC V6T 1Z3, Canada
关键词
D O I
10.1152/jn.2002.87.5.2209
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The effects of anoxia on intracellular pH (pH(i)) were examined in acutely isolated adult rat hippocampal CA1 neurons loaded with the H+-sensitive fluorophore, 2', 7'- bis-(2-carboxyethyl)-5-( and-6)-carboxyfluorescein. During perfusion with HCO3-/CO2- or HEPES-buffered media (pH 7.35) at 37degrees C, 5- or 10-min anoxic insults were typified by an intracellular acidification on the induction of anoxia, a subsequent rise in pHi in the continued absence of O-2, and a further internal alkalinization on the return to normoxia. The steady-state pH(i) changes were not consequent on changes in [Ca2+](i) and, examined in the presence of HCO3-, were not significantly affected by (DIDS). In the absence of HCO3-, the magnitude of the postanoxic alkalinization was attenuated when external Na+ was reduced by substitution with N-methyl-D-glucamine (NMDG(+)), but not Li+, suggesting that increased Na+/H+ exchange activity contributes to this phase of the pH(i) response. In contrast, 100-500 muM Zn2+, a known blocker of H+-conductive pathways, reduced the magnitudes of the internal alkalinizations that occurred both during and following anoxia. The effects of NMDG(+)-substituted medium and Zn2+ to reduce the increase in pH(i) that occurred after anoxia were additive. Consistent with the steady-state pH(i) changes, rates of pHi recovery from internal acid loads imposed immediately after anoxia were increased, and the application of Zn2+ and/ or perfusion with NMDG(+)-substituted medium slowed pHi recovery. Reducing extracellular pH from 7.35 to 6.60, or reducing ambient temperature from 37degrees C to room temperature, also attenuated the increases in steady-state pH(i) observed during and after anoxia and reduced rates of pHi recovery from acid loads imposed in the immediate postanoxic period. Finally, inhibition of the cAMP/protein kinase A second-messenger system reduced the magnitude of the rise in pHi after anoxia in a manner that was dependent on external Na+; conversely, activation of the system with isoproterenol increased the postanoxic alkalinization, an effect that was attenuated by pretreatment with propranolol, Rp-cAMPS, or when NMDG(+) (but not Li-)(+) was employed as an external Na+ substitute. The results suggest that a Zn2+-sensitive acid efflux mechanism, possibly a H+-conductive pathway activated by membrane depolarization, contributes to the internal alkalinization observed during anoxia in adult rat CA1 neurons. The rise in pH(i) after anoxia reflects acid extrusion via the H+-conductive pathway and also Na+/H+ exchange, activation of the latter being mediated, at least in part, through a cAMP-dependent signaling pathway.
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页码:2209 / 2224
页数:16
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