Wang Meng-Ling, Huang Xiao-Jia, Fang San-Hua, Yuan Yu-Mei, Zhang Wei-Ping, Lu Yu-Bi, Ding Qian, Wei Er-Qing
Department of Pharmacology and Institute of Neuroscience, School of Medicine, Zhejiang University, 388, Yu Hang Tang Road, Hangzhou 310058, China.
Biochem Biophys Res Commun. 2006 Nov 17;350(2):399-404. doi: 10.1016/j.bbrc.2006.09.057. Epub 2006 Sep 20.
Cysteinyl leukotrienes (including LTC(4), LTD(4), and LTE(4)), potent inflammatory mediators, can induce brain-blood barrier (BBB) disruption and brain edema. These reactions are mediated by their receptors, CysLT(1) and CysLT(2) receptors. On the other hand, aquaporin 4 (AQP4) primarily modulates brain water homeostasis and edema after various injuries. Here, we aimed to determine whether AQP4 is involved in LTD(4)-induced brain edema. LTD(4) (1ng in 0.5mul PBS) microinjection into the cortex increased endogenous IgG exudation (BBB disruption) and water content (brain edema), and enhanced AQP4 expression in mouse brain. The selective CysLT(1) receptor antagonist pranlukast inhibited the IgG exudation, but not the increased water content and AQP4 expression induced by LTD(4). In the cultured rat astrocytes, LTD(4) (10(-9)-10(-7)M, for 24h) similarly enhanced AQP4 expression. The enhanced AQP4 expression was inhibited by Bay u9773, a non-selective CysLT(1)/CysLT(2) receptor antagonist, but not by pranlukast. LTD(4) (10(-9)-10(-7)M) also induced the mRNA expression of CysLT(2) (not CysLT(1)) receptor in astrocytes. These results indicate that LTD(4) modulates brain edema; CysLT(1) receptor mediates vasogenic edema while CysLT(2) receptor may mediate cytotoxic edema via up-regulating AQP4 expression.
半胱氨酰白三烯(包括LTC4、LTD4和LTE4)是强效炎症介质,可导致血脑屏障(BBB)破坏和脑水肿。这些反应由其受体CysLT1和CysLT2受体介导。另一方面,水通道蛋白4(AQP4)主要调节各种损伤后脑内的水平衡和水肿。在此,我们旨在确定AQP4是否参与LTD4诱导的脑水肿。向小鼠皮层微量注射LTD4(0.5μl PBS中含1ng)可增加内源性IgG渗出(血脑屏障破坏)和含水量(脑水肿),并增强小鼠脑内AQP4的表达。选择性CysLT1受体拮抗剂普仑司特可抑制IgG渗出,但不能抑制LTD4诱导的含水量增加和AQP4表达。在培养的大鼠星形胶质细胞中,LTD4(10-9 - 10-7M,作用24小时)同样增强了AQP4的表达。非选择性CysLT1/CysLT2受体拮抗剂Bay u9773可抑制AQP4表达增强,而普仑司特则无此作用。LTD4(10-9 - 10-7M)还可诱导星形胶质细胞中CysLT2(而非CysLT1)受体的mRNA表达。这些结果表明,LTD4可调节脑水肿;CysLT1受体介导血管源性水肿,而CysLT2受体可能通过上调AQP4表达介导细胞毒性水肿。