Tildon J T, McKenna M C, Stevenson J, Couto R
Department of Pediatrics, University of Maryland School of Medicine, Baltimore 21201.
Neurochem Res. 1993 Feb;18(2):177-84. doi: 10.1007/BF01474682.
Several reports indicate that lactate can serve as an energy substrate for the brain. The rate of oxidation of this substrate by cultured rat brain astrocytes was 3-fold higher than the rate with glucose, suggesting that lactate can serve as an energy source for these cells. Since transport into the astrocytes may play an important role in regulating nutrient use by individuals types of brain cells, we investigated the uptake of L-[U-14C]lactate by primary cultures of rat brain astrocytes. Measurement of the net uptake suggested two carrier-mediated mechanisms and an Eadie-Hofstee type plot of the data supported this conclusion revealing 2 Km values of 0.49 and 11.38 mM and Vmax values of 16.55 and 173.84 nmol/min/mg protein, respectively. The rate of uptake was temperature dependent and was 3-fold higher at pH 6.2 than at 7.4, but was 50% less at pH 8.2. Although the lactate uptake carrier systems in astrocytes appeared to be labile when incubated in phosphate buffered saline for 20 minutes, the uptake process exhibited an accelerative exchange mechanism. In addition, lactate uptake was altered by several metabolic inhibitors and effectors. Potassium cyanide and alpha-cyano-4-hydroxycinnamate inhibited lactate uptake, but mersalyl had little or no effect. Phenylpyruvate, alpha-ketoisocaproate, and 3-hydroxybutyrate at 5 and 10 mM greatly attenuated the rate of lactate uptake. These results suggest that the availability of lactate as an energy source is regulated in part by a biphasic transport system in primary astrocytes.
几份报告表明,乳酸盐可作为大脑的能量底物。培养的大鼠脑星形胶质细胞对这种底物的氧化速率比葡萄糖高3倍,这表明乳酸盐可作为这些细胞的能量来源。由于转运进入星形胶质细胞可能在调节各类脑细胞的营养物质利用方面发挥重要作用,我们研究了原代培养的大鼠脑星形胶质细胞对L-[U-¹⁴C]乳酸盐的摄取。净摄取量的测量表明存在两种载体介导机制,对数据进行伊迪-霍夫斯泰因(Eadie-Hofstee)类型的绘图支持了这一结论,显示两个米氏常数(Km)值分别为0.49和11.38 mM,最大反应速率(Vmax)值分别为16.55和173.84 nmol/min/mg蛋白质。摄取速率依赖于温度,在pH 6.2时比pH 7.4时高3倍,但在pH 8.2时降低50%。尽管星形胶质细胞中的乳酸盐摄取载体系统在磷酸盐缓冲盐水中孵育20分钟后似乎不稳定,但摄取过程表现出加速交换机制。此外,几种代谢抑制剂和效应剂会改变乳酸盐的摄取。氰化钾和α-氰基-4-羟基肉桂酸抑制乳酸盐摄取,但汞撒利几乎没有影响。5 mM和10 mM的苯丙酮酸、α-酮异己酸和3-羟基丁酸大大降低了乳酸盐的摄取速率。这些结果表明,原代星形胶质细胞中乳酸盐作为能量来源的可用性部分受双相转运系统调节。