Prince of Wales Medical Research Institute, Barker St., Randwick, NSW 2031, Australia.
Neurochem Res. 2009 Oct;34(10):1783-91. doi: 10.1007/s11064-009-9973-0. Epub 2009 Apr 29.
A novel inhibitor of lactate transport, AR-C122982, was used to study the effect of inhibiting the monocarboxylate transporters MCT1 and MCT2 on cortical brain slice metabolism. We studied metabolism of L-[3-13C]lactate, and D-[1-13C]glucose under a range of conditions. Experiments using L-[3-13C]lactate showed that the inhibitor AR-C122982 altered exchange of lactate. Under depolarizing conditions, net flux of label from D-[1-13C]glucose was barely altered by 10 or 100 nM AR-C122982. In the presence of AMPA or glutamate there were increases in net flux of label and metabolic pool sizes. These data suggest lactate may supply compartments in the brain not usually directly accessed by glucose. In general, it would appear that movement of lactate between cell types is not essential for metabolic activity, with the heavy metabolic workloads imposed being unaffected by inhibition of MCT1 and MCT2. Further experiments investigating the mechanism of operation of AR-C122982 are necessary to corroborate this finding.
一种新型的乳酸转运抑制剂 AR-C122982 被用于研究抑制单羧酸转运蛋白 MCT1 和 MCT2 对皮质脑片代谢的影响。我们研究了 L-[3-13C]乳酸和 D-[1-13C]葡萄糖在一系列条件下的代谢。使用 L-[3-13C]乳酸的实验表明,抑制剂 AR-C122982 改变了乳酸的交换。在去极化条件下,10 或 100 nM AR-C122982 对 D-[1-13C]葡萄糖的标记净通量几乎没有改变。在 AMPA 或谷氨酸存在下,标记的净通量和代谢池大小增加。这些数据表明,乳酸可能为大脑中的某些区域提供了通常无法直接从葡萄糖获得的物质。总的来说,细胞间乳酸的移动似乎对代谢活动不是必需的,而 MCT1 和 MCT2 的抑制并没有影响代谢活动的繁重工作量。需要进一步的实验来研究 AR-C122982 的作用机制,以证实这一发现。