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Transient recovery of synaptic transmission is related to rapid energy depletion during hypoxia.

机译:突触传递的短暂恢复与缺氧期间能量的快速消耗有关。

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摘要

Transient recovery (TR) of evoked synaptic potential during the late stage of hypoxic hypoglycemia (HH) insult was investigated in rat hippocampal slices using extracellular recording methods. TR was observed in association with a rapid deterioration of antidromic population spikes (aPSs) following HH insult. TR was not elicited in normoglycemic hypoxia (NH), in which a gradual and delayed deterioration of aPSs was noted. TR was not modulated by either Ca(2+)- or PKC-dependent processes. When a glycolytic inhibitor was added, NH resulted in a rapid deterioration of aPSs and prompted appearance of TR. TR was also seen in slices using lactate to generate energy via oxidative phosphorylation, when hypoxic conditions were subsequently created. Other pharmacological interventions that aimed to cause rapid deterioration of aPSs without depleting energy stores failed to reproduce TR. The evidence thus suggests that the underlying mechanisms of TR appearance during HH insult are highly correlated with rapid energy depletion.
机译:使用细胞外记录方法在大鼠海马切片中研究了低氧性低血糖(HH)损伤晚期诱发的突触电位的瞬时恢复(TR)。观察到TR与HH侮辱后抗病人群高峰(aPSs)的快速恶化有关。在正常血糖低氧(NH)中未引发TR,其中注意到aPS逐渐和延迟的恶化。 TR不受Ca(2+)或PKC依赖过程的调制。当添加糖酵解抑制剂时,NH导致aPS的快速降解并提示TR的出现。随后在缺氧条件下,使用乳酸通过氧化磷酸化产生能量的切片中也可见到TR。其他旨在引起aPS快速降解而不消耗能量存储的药理干预措施未能重现TR。因此,证据表明,HH损伤期间TR出现的潜在机制与能量快速消耗高度相关。

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