Department of Analytical Chemistry, School of Pharmacy, Meiji Pharmaceutical University, Tokyo, Japan.
Department of Pathophysiology, School of Pharmacy, Meiji Pharmaceutical University, Tokyo, Japan.
Biochimie. 2021 Sep;188:2-6. doi: 10.1016/j.biochi.2021.03.014. Epub 2021 Mar 29.
Water transport in the brain is tightly controlled by blood-brain-barrier (BBB) composed of capillary endothelial cells expressing AQP1/AQP11 and glial foot processes expressing AQP4. Here we examined each AQP mRNA expression in acute hyponatremic and hypernatremic mouse models of wild type (WT) and AQP11 KO mice (KO). The expressions of AQP1, AQP4 and AQP11 mRNAs were quantified by real-time qRT-PCR analysis of whole brain RNA. Acute hyponatremia enhanced AQP4 expression without changing AQP1 expression in KO, whereas it did not change the expression of all AQPs in WT. On the other hand, acute hypernatremia increased AQP4 but decreased AQP1 expression by half in KO, whereas it decreased AQP1 and AQP11 by half without changing AQP4 expression in WT. Enhanced AQP4 expression by osmotic challenges with sodium in KO seems to be a compensation for the loss of AQP11. A stronger hypertonic stimulation with mannitol decreased all AQPs by 30-80% in WT. Since AQP4 plays an important role in the regulation of brain edema at BBB, the results suggest that AQP11 may also be involved in the osmotic regulation of the brain.
水在大脑中的运输受到血脑屏障(BBB)的严格控制,该屏障由表达 AQP1/AQP11 的毛细血管内皮细胞和表达 AQP4 的神经胶质足突组成。在这里,我们检查了野生型(WT)和 AQP11 KO 小鼠的急性低钠血症和高钠血症模型中每种 AQP mRNA 的表达。通过实时 qRT-PCR 分析整个大脑 RNA 来定量 AQP1、AQP4 和 AQP11 mRNA 的表达。急性低钠血症增强了 KO 中 AQP4 的表达,而不改变 AQP1 的表达,而在 WT 中,所有 AQPs 的表达均未改变。另一方面,急性高钠血症增加了 KO 中 AQP4 的表达,但将 AQP1 的表达降低了一半,而在 WT 中,它将 AQP1 和 AQP11 的表达均降低了一半,而不改变 AQP4 的表达。在 KO 中,钠的渗透挑战增强了 AQP4 的表达,这似乎是对 AQP11 缺失的一种补偿。甘露醇的更强的高渗刺激使 WT 中所有 AQP 降低了 30-80%。由于 AQP4 在 BBB 处的脑水肿调节中发挥重要作用,因此这些结果表明 AQP11 也可能参与脑的渗透调节。