Neuroscience Research Institute & Department of Neurobiology, School of Basic Medical Sciences, Peking University, Beijing 100191, China.
Glia. 2013 Oct;61(10):1748-65. doi: 10.1002/glia.22555. Epub 2013 Aug 6.
Water movement plays vital roles in both physiological and pathological conditions in the brain. Astrocytes are responsible for regulating this water movement and are the major contributors to brain edema in pathological conditions. Aquaporins (AQPs) in astrocytes play critical roles in the regulation of water movement in the brain. AQP1, 3, 4, 5, 8, and 9 have been reported in the brain. Compared with AQP1, 4, and 9, AQP3, 5, and 8 are less studied. Among the lesser known AQPs, AQP5, which has multiple functions identified outside the central nervous system, is also indicated to be involved in hypoxia injury in astrocytes. In our study, AQP5 expression could be detected both in primary cultures of astrocytes and neurons, and AQP5 expression in astrocytes was confirmed in 1- to 4-week old primary cultures of astrocytes. AQP5 was localized on the cytoplasmic membrane and in the cytoplasm of astrocytes. AQP5 expression was downregulated during ischemia treatment and upregulated after scratch-wound injury, which was also confirmed in a middle cerebral artery occlusion model and a stab-wound injury model in vivo. The AQP5 increased after scratch injury was polarized to the migrating processes and cytoplasmic membrane of astrocytes in the leading edge of the scratch-wound, and AQP5 over-expression facilitated astrocyte process elongation after scratch injury. Taken together, these results indicate that AQP5 might be an important water channel in astrocytes that is differentially expressed during various brain injuries.
水的移动在大脑的生理和病理状态中都起着至关重要的作用。星形胶质细胞负责调节这种水的移动,并且是病理状态下脑水肿的主要贡献者。星形胶质细胞中的水通道蛋白(AQP)在调节大脑中的水移动中起着关键作用。已经在大脑中报道了 AQP1、3、4、5、8 和 9。与 AQP1、4 和 9 相比,AQP3、5 和 8 的研究较少。在不太知名的 AQP 中,AQP5 在中枢神经系统外具有多种已确定的功能,也被表明参与星形胶质细胞的缺氧损伤。在我们的研究中,AQP5 表达可以在星形胶质细胞和神经元的原代培养中检测到,并且在 1-4 周龄的星形胶质细胞原代培养中证实了 AQP5 在星形胶质细胞中的表达。AQP5 表达在缺血处理期间下调,在划痕损伤后上调,这在体内大脑中动脉闭塞模型和刺伤损伤模型中也得到了证实。划痕损伤后增加的 AQP5 被极化到划痕伤口的前沿中星形胶质细胞的迁移过程和细胞质膜上,并且 AQP5 的过表达促进了划痕损伤后星形胶质细胞突起的伸长。综上所述,这些结果表明 AQP5 可能是星形胶质细胞中一种重要的水通道,在各种脑损伤中差异表达。