Walz W, Mukerji S
Department of Physiology, College of Medicine, University of Saskatchewan, Saskatoon, Canada.
Neurosci Lett. 1988 Apr 12;86(3):296-300. doi: 10.1016/0304-3940(88)90499-5.
Intracellular lactate content and release of lactate into the surrounding medium of mouse astrocytes in primary culture was measured using the lactate dehydrogenase method. During culturing the cellular content of astrocytes decreased from 400 to 200 nmol/mg protein. The total lactate released into the extracellular space, however, amounted to 75,000 nmol/mg within 98 h, corresponding to a lactate concentration of 10 mM in the cell culture dish. In another set of experiments, cytotoxic swelling was evoked by exposure of the cells to 60 mM K+, this situation caused a 40% increase in cellular volume and an increase in the KCl content of astrocytes. Within 3 h of a change to 60 mM K+ the intracellular lactate content was increased by 100 nmol/mg (one third) and the lactate release in the extracellular space by about 2000 nmol/mg (twice as high as during exposure to 3 mM K+). However, due to the increased intracellular water content, the lactate concentration inside the cells remained unchanged. It is concluded that astrocytes produce substantial amounts of additional lactate during cytotoxic swelling. This lactate, however, is not increasing the intracellular osmolarity and most of the lactate is released into the extracellular space. Depending on the transmembrane transport mechanism it could have the capability to decrease the strong ion difference and contribute to acid shifts in the extracellular space.
采用乳酸脱氢酶法测定原代培养的小鼠星形胶质细胞内乳酸含量以及乳酸释放到周围培养基中的情况。在培养过程中,星形胶质细胞的细胞含量从400 nmol/mg蛋白质降至200 nmol/mg蛋白质。然而,在98小时内释放到细胞外空间的总乳酸量达到75,000 nmol/mg,相当于细胞培养皿中乳酸浓度为10 mM。在另一组实验中,通过将细胞暴露于60 mM K + 诱发细胞毒性肿胀,这种情况导致细胞体积增加40%,星形胶质细胞的KCl含量增加。在更换为60 mM K + 后的3小时内,细胞内乳酸含量增加了100 nmol/mg(增加了三分之一),细胞外空间中的乳酸释放量增加了约2000 nmol/mg(是暴露于3 mM K + 时的两倍)。然而,由于细胞内含水量增加,细胞内乳酸浓度保持不变。得出的结论是,星形胶质细胞在细胞毒性肿胀期间会产生大量额外的乳酸。然而,这种乳酸不会增加细胞内渗透压,并且大部分乳酸会释放到细胞外空间。根据跨膜转运机制,它可能有能力降低强离子差异并有助于细胞外空间的酸碱变化。