College of Pharmacy, Inje University, Gimhae 621-749, Korea.
Arch Pharm Res. 2012 Jul;35(7):1215-21. doi: 10.1007/s12272-012-0712-8. Epub 2012 Aug 3.
We examined whether pretreatment of mouse brain blood vessel endothelial cell clone 4 (MBEC4) cells with sodium nitroprusside (SNP), a NO(x) donor, as an in vitro model of the bloodbrain barrier could affect P-glycoprotein (P-gp) functional activity. Uptake into the cells and MBEC4 plasma membrane vesicles (MPMVs) in the presence or absence of SNP pretreatment was used to investigate functional changes. Increased accumulation of [(3)H]vincristine, a widely used substrate for P-gp, into MBEC4 was observed upon SNP pretreatment, likely due to impaired P-gp function. To better understand the mechanism of the impairment, MPMVs were prepared and characterized in terms of purity and Na(+)-dependent glucose uptake. [(3)H]daunomycin uptake into MPMVs was diminished after SNP pretreatment in the presence of an ATP-regenerating system, indicating that the functional activity of P-gp was impaired after exposure to SNP. Under conditions of excess ATP, daunomycin uptake into the vesicles was still decreased after SNP pretreatment, indicating that SNP interacted directly with the transport system, but not with the ATP-regenerating system. Together, these results suggest that NO or NO(x) functionally impairs P-gp in the in vitro blood-brain barrier model with SNP pretreatment.
我们研究了预先用一氧化氮供体硝普钠(SNP)处理鼠脑微血管内皮细胞克隆 4(MBEC4)细胞作为血脑屏障的体外模型是否会影响 P-糖蛋白(P-gp)的功能活性。在存在或不存在 SNP 预处理的情况下,将细胞摄取和 MBEC4 质膜小泡(MPMVs)用于研究功能变化。观察到 SNP 预处理后,[(3)H]长春新碱(P-gp 的广泛底物)在 MBEC4 中的积累增加,这可能是由于 P-gp 功能受损所致。为了更好地理解这种损伤的机制,制备了 MPMVs 并对其纯度和 Na(+)-依赖性葡萄糖摄取进行了表征。[(3)H]柔红霉素摄取到 MPMVs 在 SNP 预处理存在 ATP 再生系统的情况下减少,表明 SNP 预处理后 P-gp 的功能活性受损。在过量 ATP 的条件下,SNP 预处理后柔红霉素摄取到囊泡中仍减少,表明 SNP 直接与转运系统相互作用,而不是与 ATP 再生系统相互作用。这些结果表明,NO 或 NO(x) 在 SNP 预处理的体外血脑屏障模型中通过功能障碍来损害 P-gp。