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植物化学物质介导的血脑屏障处乳腺癌耐药蛋白表达及转运功能的调节:一项体外研究

Phytochemical mediated-modulation of the expression and transporter function of breast cancer resistance protein at the blood-brain barrier: An in-vitro study.

作者信息

Kaur Manjit, Badhan Raj K S

机构信息

Aston University, Aston Research Centre for Healthy Ageing, School of Life and Health Sciences, Birmingham B4 7ET, UK.

Aston University, Aston Research Centre for Healthy Ageing, School of Life and Health Sciences, Birmingham B4 7ET, UK.

出版信息

Brain Res. 2017 Jan 1;1654(Pt A):9-23. doi: 10.1016/j.brainres.2016.10.020. Epub 2016 Oct 19.

Abstract

Clinical translation of BCRP inhibitors have failed due to neurotoxicity and novel approaches are required to identify suitable modulators of BCRP to enhance CNS drug delivery. In this study we examine 18 compounds, primarily phytochemicals, as potential novel modulators of AhR-mediated regulation of BCRP expression and function in immortalised and primary porcine brain microvascular endothelial cells as a mechanism to enhance CNS drug delivery. The majority of modulators possessed a cellular viability IC >100µm in both cell systems. BCRP activity, when exposed to modulators for 1h, was diminished for most modulators through significant increases in H33342 accumulation at <10µm with 2,6,4-trimethoflavone increasing H33342 intracellular accumulation by 3.7-6.6 fold over 1-100µm. Western blotting and qPCR identified two inducers of BCRP (quercetin and naringin) and two down-regulators (17-β-estradiol and curcumin) with associated changes in BCRP efflux transport function further confirmed in both cell lines. siRNA downregulation of AhR resulted in a 1.75±0.08 fold change in BCRP expression, confirming the role of AhR in the regulation of BCRP. These findings establish the regulatory role AhR of in controlling BCRP expression at the BBB and confirm quercetin, naringin, 17-β-estradiol, and curcumin as novel inducers and down-regulators of BCRP gene, protein expression and functional transporter activity and hence potential novel target sites and candidates for enhancing CNS drug delivery.

摘要

由于神经毒性,BCRP抑制剂的临床转化已告失败,因此需要新的方法来鉴定合适的BCRP调节剂,以增强中枢神经系统药物递送。在本研究中,我们检测了18种化合物,主要是植物化学物质,作为AhR介导的BCRP表达和功能调控的潜在新型调节剂,作用于永生化和原代猪脑微血管内皮细胞,以此作为增强中枢神经系统药物递送的一种机制。在两种细胞体系中,大多数调节剂的细胞活力IC>100µm。当暴露于调节剂1小时时,大多数调节剂的BCRP活性降低,因为在<10µm时H33342积累显著增加,其中2,6,4-三甲氧基黄酮在1-100µm范围内使H33342细胞内积累增加3.7-6.6倍。蛋白质印迹法和定量聚合酶链反应鉴定出两种BCRP诱导剂(槲皮素和柚皮苷)和两种下调剂(17-β-雌二醇和姜黄素),两种细胞系中BCRP外排转运功能的相关变化进一步得到证实。AhR的小干扰RNA下调导致BCRP表达发生1.75±0.08倍的变化,证实了AhR在BCRP调控中的作用。这些发现确立了AhR在控制血脑屏障处BCRP表达中的调节作用,并确认槲皮素、柚皮苷、17-β-雌二醇和姜黄素是BCRP基因、蛋白质表达和功能性转运体活性的新型诱导剂和下调剂,因此是增强中枢神经系统药物递送的潜在新靶点和候选物。

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