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乳酸和葡萄糖作为大鼠海马急性切片和培养切片缺氧期间及之后的能量底物。

Lactate and glucose as energy substrates during, and after, oxygen deprivation in rat hippocampal acute and cultured slices.

作者信息

Cater Heather L, Chandratheva Arvind, Benham Christopher D, Morrison Barclay, Sundstrom Lars E

机构信息

Clinical Neurosciences, University of Southampton, Southampton Neurology Centre of Excellence for Drug Discovery, GlaxoSmithKline, Harlow, UK.

出版信息

J Neurochem. 2003 Dec;87(6):1381-90. doi: 10.1046/j.1471-4159.2003.02100.x.

Abstract

The effects of raised brain lactate levels on neuronal survival following hypoxia or ischemia is still a source of controversy among basic and clinical scientists. We have sought to address this controversy by studying the effects of glucose and lactate on neuronal survival in acute and cultured hippocampal slices. Following a 1-h hypoxic episode, neuronal survival in cultured hippocampal slices was significantly higher if glucose was present in the medium compared with lactate. However, when the energy substrate during the hypoxic period was glucose and then switched to lactate during the normoxic recovery period, the level of cell damage in the CA1 region of organotypic cultures was significantly improved from 64.3 +/- 2.1 to 74.6 +/- 2.1% compared with cultures receiving glucose during and after hypoxia. Extracellular field potentials recorded from the CA1 region of acute slices were abolished during oxygen deprivation for 20 min, but recovered almost fully to baseline levels with either glucose (82.6 +/- 10.0%) or lactate present in the reperfusion medium (108.1 +/- 8.3%). These results suggest that lactate alone cannot support neuronal survival during oxygen deprivation, but a combination of glucose followed by lactate provides for better neuroprotection than either substrate alone.

摘要

脑乳酸水平升高对缺氧或缺血后神经元存活的影响,在基础和临床科学家中仍然存在争议。我们试图通过研究葡萄糖和乳酸对急性和培养的海马切片中神经元存活的影响来解决这一争议。在经历1小时的缺氧期后,与乳酸相比,如果培养基中存在葡萄糖,培养的海马切片中的神经元存活率显著更高。然而,当缺氧期的能量底物为葡萄糖,然后在常氧恢复期切换为乳酸时,与在缺氧期间及之后接受葡萄糖的培养物相比,器官型培养物CA1区域的细胞损伤水平从64.3±2.1%显著改善至74.6±2.1%。在急性切片的CA1区域记录的细胞外场电位在缺氧20分钟期间消失,但在再灌注培养基中存在葡萄糖(82.6±10.0%)或乳酸(108.1±8.3%)时几乎完全恢复到基线水平。这些结果表明,单独的乳酸在缺氧期间不能支持神经元存活,但葡萄糖后接乳酸的组合比单独使用任何一种底物都能提供更好的神经保护作用。

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