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Localized Down-regulation of P-glycoprotein by Focused Ultrasound and Microbubbles induced Blood-Brain Barrier Disruption in Rat Brain

机译:聚焦超声和微泡诱导大鼠脑血脑屏障破坏的P糖蛋白的局部下调。

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Multi-drug resistant efflux transporters found in Blood-Brain Barrier (BBB) acts as a functional barrier, by pumping out most of the drugs into the blood. Previous studies showed focused ultrasound (FUS) induced microbubble oscillation can disrupt the BBB by loosening the tight junctions in the brain endothelial cells; however, no study was performed to investigate its impact on the functional barrier of the BBB. In this study, the BBB in rat brains were disrupted using the MRI guided FUS and microbubbles. The immunofluorescence study evaluated the expression of the P-glycoprotein (P-gp), the most dominant multi-drug resistant protein found in the BBB. Intensity of the P-gp expression at the BBB disruption (BBBD) regions was significantly reduced (63.2?±?18.4%) compared to the control area. The magnitude of the BBBD and the level of the P-gp down-regulation were significantly correlated. Both the immunofluorescence and histologic analysis at the BBBD regions revealed no apparent damage in the brain endothelial cells. The results demonstrate that the FUS and microbubbles can induce a localized down-regulation of P-gp expression in rat brain. The study suggests a clinically translation of this method to treat neural diseases through targeted delivery of the wide ranges of brain disorder related drugs.
机译:血脑屏障(BBB)中发现的多药耐药性外排转运蛋白通过将大多数药物泵入血液来充当功能性屏障。先前的研究表明,聚焦超声(FUS)引起的微泡振荡可通过松动脑内皮细胞的紧密连接来破坏BBB。然而,没有进行研究以研究其对血脑屏障功能障碍的影响。在这项研究中,使用MRI引导的FUS和微泡破坏了大鼠大脑中的BBB。免疫荧光研究评估了P-糖蛋白(P-gp)的表达,P-糖蛋白是BBB中发现的最主要的多药耐药蛋白。与对照区域相比,BBB破坏(BBBD)区域的P-gp表达强度显着降低(63.2?±?18.4%)。 BBBD的大小与P-gp下调的水平显着相关。 BBBD区的免疫荧光和组织学分析均未发现脑内皮细胞有明显损伤。结果表明,FUS和微泡可以诱导大鼠脑内P-gp表达的局部下调。这项研究表明,该方法的临床翻译是通过靶向性输送各种与脑部疾病有关的药物来治疗神经疾病。

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