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首页> 外文期刊>Neuropharmacology >Minoxidil sulfate induced the increase in blood-brain tumor barrier permeability through ROS/RhoA/PI3K/PKB signaling pathway
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Minoxidil sulfate induced the increase in blood-brain tumor barrier permeability through ROS/RhoA/PI3K/PKB signaling pathway

机译:硫酸米诺地尔通过ROS / RhoA / PI3K / PKB信号通路诱导血脑肿瘤屏障通透性增加

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Adenosine 5′-triphosphate-sensitive potassium channel (K ATP channel) activator, minoxidil sulfate (MS), can selectively increase the permeability of the blood-tumor barrier (BTB); however, the mechanism by which this occurs is still under investigation. Using a rat brain glioma (C6) model, we first examined the expression levels of occludin and claudin-5 at different time points after intracarotid infusion of MS (30 μg/kg/min) by western blotting. Compared to MS treatment for 0 min group, the protein expression levels of occludin and claudin-5 in brain tumor tissue of rats showed no changes within 1 h and began to decrease significantly after 2 h of MS infusion. Based on these findings, we then used an in vitro BTB model and selective inhibitors of diverse signaling pathways to investigate whether reactive oxygen species (ROS)/RhoA/PI3K/PKB pathway play a key role in the process of the increase of BTB permeability induced by MS. The inhibitor of ROS or RhoA or PI3K or PKB significantly attenuated the expression of tight junction (TJ) protein and the increase of the BTB permeability after 2 h of MS treatment. In addition, the significant increases in RhoA activity and PKB phosphorylation after MS administration were observed, which were partly inhibited by N-2-mercaptopropionyl glycine (MPG) or C3 exoenzyme or LY294002 pretreatment. The present study indicates that the activation of signaling cascades involving ROS/RhoA/PI3K/PKB in BTB was required for the increase of BTB permeability induced by MS. Taken together, all of these results suggested that MS might increase BTB permeability in a time-dependent manner by down-regulating TJ protein expression and this effect could be related to ROS/RhoA/PI3K/PKB signal pathway.
机译:腺苷5'-三磷酸敏感钾通道(K ATP通道)激活剂硫酸米诺地尔(MS)可以选择性地增加血肿瘤屏障(BTB)的通透性;但是,这种情况发生的机制仍在研究中。使用大鼠脑胶质瘤(C6)模型,我们首先通过Western blotting检测了颈动脉内注入MS(30μg/ kg / min)后不同时间点上的occludin和claudin-5的表达水平。与0min组MS治疗相比,大鼠脑肿瘤组织中occludin和claudin-5的蛋白表达水平在1h内无变化,并在2h后开始显着下降。基于这些发现,我们然后使用体外BTB模型和多种信号通路的选择性抑制剂来研究活性氧(ROS)/ RhoA / PI3K / PKB通路是否在诱导BTB渗透性增加的过程中起关键作用由MS。 ROS或RhoA或PI3K或PKB的抑制剂可显着减弱MS处理2小时后紧密连接(TJ)蛋白的表达和BTB通透性的增加。另外,观察到MS施用后RhoA活性和PKB磷酸化的显着增加,其部分被N-2-巯基丙酰甘氨酸(MPG)或C3外切酶或LY294002预处理抑制。本研究表明,激活MS诱导的BTB渗透性需要激活BTB中涉及ROS / RhoA / PI3K / PKB的信号级联。综上,所有这些结果表明,MS可能通过下调TJ蛋白表达而以时间依赖性的方式增加BTB的通透性,并且这种作用可能与ROS / RhoA / PI3K / PKB信号通路有关。

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