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Neural overexpression of multidrug resistance-associated protein 1 and refractory epilepsy: a meta-analysis of nine studies

机译:多药耐药相关蛋白1的神经过表达和难治性癫痫:九项研究的荟萃分析

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Objective: Overexpression of adenosine triphosphate-binding cassette (ATP-binding cassette (ABC)) transporters may contribute to intractable epilepsy (IE) by reducing brain accumulation of antiepileptic drugs (AEDs). We conducted a meta-analysis of studies on expression and cellular distribution of multidrug resistance-associated protein 1 (MRP1) in IE patients to evaluate the contribution of this protein to AED resistance. In addition, we summarize experiments examining MRP1 expression and substrates in animal models of IE. Methods: The literature search based on pre-established inclusion and exclusion criteria, as well as quality assessment, data extraction and statistical analyses were conducted concurrently by two independent researchers. We identified nine high-quality studies (Jadad score 3) published between 2000 and 2014 on the expression and cellular distribution of MRP1 in IE patients. A fixed effect model was used to calculate pooled odds ratios (ORs) and corresponding 95% confidence intervals (95% CIs). Forest and funnel plots were constructed to assess study heterogeneity and publication bias, respectively. Results: MRP1 expression was significantly higher in both astrocytes (OR = 17.04, 95% CI: 7.69-37.76, P < 0.00001) and neurons (OR = 22.13, 95% CI: 8.52-57.46, P < 0.00001) of IE patients compared to controls, while there was no significant difference in endothelial cell MRP1 expression (OR: 1.47, 95% CI: 0.09-1.79, P = 0.48). Funnel plot symmetry indicated no substantial publication bias. Most relevant preclinical studies from 2000 to 2014 found higher MRP1 expression in IE model rodents. Furthermore, MRP1 overexpression reduced the extracellular concentration of AEDs in brain, while MRP1 inhibitors enhanced brain AED concentrations. Conclusion: Pooled results strongly suggest that MRP1 is overexpressed in both neurons and astrocytes of IE patients. Inhibition of MRP1 may enhance AED efficacy by increasing local drug availability.
机译:目的:三磷酸腺苷结合盒(ATP结合盒(ABC))转运蛋白的过表达可能通过减少抗癫痫药(AED)的脑蓄积来促进顽固性癫痫(IE)。我们进行了一项关于IE患者中多药耐药相关蛋白1(MRP1)的表达和细胞分布研究的荟萃分析,以评估该蛋白对AED耐药性的贡献。此外,我们总结了检查IE动物模型中MRP1表达和底物的实验。方法:由两位独立的研究人员同时根据既定的纳入和排除标准进行文献检索,并进行质量评估,数据提取和统计分析。我们确定了2000年至2014年间发表的9篇关于IE患者中MRP1的表达和细胞分布的高质量研究(Jadad评分3)。使用固定效应模型来计算合并比值比(OR)和相应的95%置信区间(95%CI)。构建森林和漏斗图分别评估研究的异质性和出版偏向。结果:与IE病人相比,星形胶质细胞(OR = 17.04,95%CI:7.69-37.76,P <0.00001)和神经元(OR = 22.13,95%CI:8.52-57.46,P <0.00001)的MRP1表达均显着较高与对照组相比,内皮细胞MRP1表达没有明显差异(OR:1.47,95%CI:0.09-1.79,P = 0.48)。漏斗图的对称性表明没有明显的出版偏倚。 2000年至2014年最相关的临床前研究发现IE模型啮齿动物中MRP1表达更高。此外,MRP1过表达降低了大脑中AED的细胞外浓度,而MRP1抑制剂则提高了大脑AED的浓度。结论:汇总结果强烈表明,MRP1在IE患者的神经元和星形胶质细胞中均过表达。抑制MRP1可以通过增加局部药物的利用率来增强AED的疗效。

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