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Neuroprotective role of monocarboxylate transport during glucose deprivation in slice cultures of rat hippocampus

机译:单羧酸盐转运在大鼠海马切片培养物中葡萄糖剥夺过程中的神经保护作用

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摘要

The effects of energy substrate removal and metabolic pathway block have been examined on neuronal and glial survival in organotypic slice cultures of rat hippocampus.Slice cultures resisted 24 h of exogenous energy substrate deprivation. Application of 0.5 mM α-cyano-4-hydroxycinnamate (4-CIN) for 24 h resulted in specific damage to neuronal cell layers, which could be reversed by co-application of 5 mM lactate.Addition of 10 mM 2-deoxyglucose in the absence of exogenous energy supply produced widespread cell death throughout the slice. This was partly reversed by co-application of 5 mM lactate.These effects of metabolic blockade on cell survival were qualitatively similar to the effects on population spikes recorded in the CA1 cell layer following 60 min application of these agents.The data suggest that monocarboxylate trafficking from glia to neurons is an essential route for supply of energy substrates to neurons particularly when exogenous energy supply is restricted.
机译:已经研究了能量底物去除和代谢途径阻滞对大鼠海马器官型切片培养物中神经元和神经胶质存活的影响。切片培养物抵抗外源性能量底物剥夺24小时。 0.5 mMα-氰基-4-羟基肉桂酸酯(4-CIN)施加24小时会导致神经元细胞层的特定损伤,可通过共同施加5 mM乳酸来逆转。在大鼠中添加10 mM 2-脱氧葡萄糖没有外源能量供应会在整个切片中造成广泛的细胞死亡。共同应用5 mM乳酸可部分逆转这种情况。代谢阻断对细胞存活的影响在质量上类似于对这些药剂应用60分钟后对CA1细胞层记录的种群峰值的影响。数据表明单羧酸盐运输从神经胶质到神经元是向神经元提供能量底物的必经之路,特别是在外源能量供应受到限制时。

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