Institute of Neurobiology, Heinrich Heine University Düsseldorf, Universitätsstraße 1, D-40225 Düsseldorf, Germany.
Department of Physics, University of South Florida, Tampa, FL 33620, USA.
Cells. 2023 Nov 21;12(23):2675. doi: 10.3390/cells12232675.
Ischemic conditions cause an increase in the sodium concentration of astrocytes, driving the breakdown of ionic homeostasis and exacerbating cellular damage. Astrocytes express high levels of the electrogenic sodium-bicarbonate cotransporter1 (NBCe1), which couples intracellular Na homeostasis to regulation of pH and operates close to its reversal potential under physiological conditions. Here, we analyzed its mode of operation during transient energy deprivation via imaging astrocytic pH, Na, and ATP in organotypic slice cultures of the mouse neocortex, complemented with patch-clamp and ion-selective microelectrode recordings and computational modeling. We found that a 2 min period of metabolic failure resulted in a transient acidosis accompanied by a Na increase in astrocytes. Inhibition of NBCe1 increased the acidosis while decreasing the Na load. Similar results were obtained when comparing ion changes in wild-type and -deficient mice. Mathematical modeling replicated these findings and further predicted that NBCe1 activation contributes to the loss of cellular ATP under ischemic conditions, a result confirmed experimentally using FRET-based imaging of ATP. Altogether, our data demonstrate that transient energy failure stimulates the inward operation of NBCe1 in astrocytes. This causes a significant amelioration of ischemia-induced astrocytic acidification, albeit at the expense of increased Na influx and a decline in cellular ATP.
缺血条件会导致星形胶质细胞钠离子浓度增加,破坏离子平衡稳态,并加重细胞损伤。星形胶质细胞表达高水平的电活性钠-碳酸氢盐共转运蛋白 1(NBCe1),该蛋白将细胞内 Na 稳态与 pH 调节偶联,并在生理条件下接近其反转电位运行。在这里,我们通过对培养的小鼠新皮层器官型切片进行 pH、Na 和 ATP 的成像分析,以及膜片钳和离子选择性微电极记录和计算建模,研究了 NBCe1 在短暂能量剥夺期间的工作模式。我们发现,代谢衰竭 2 分钟会导致星形胶质细胞短暂酸中毒,同时 Na 增加。NBCe1 抑制会增加酸中毒,同时减少 Na 负荷。在野生型和 -缺陷型小鼠中比较离子变化时得到了类似的结果。数学模型复制了这些发现,并进一步预测 NBCe1 激活有助于在缺血条件下导致细胞 ATP 的丧失,这一结果通过使用基于 FRET 的 ATP 成像实验得到了证实。总的来说,我们的数据表明,短暂的能量衰竭会刺激星形胶质细胞中 NBCe1 的内向运转。这会显著减轻缺血诱导的星形胶质细胞酸化,尽管是以增加 Na 内流和细胞 ATP 下降为代价。