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An in vitro examination of the impact of polyethylene glycol 400 pluronic P85 and vitamin E d-a-tocopheryl polyethylene glycol 1000 succinate on P-glycoprotein efflux and enterocyte-based metabolism in excised rat intestine

机译:体外检查聚乙二醇400普朗尼克P85和维生素Ed-α-生育酚聚乙二醇1000琥珀酸酯对切离大鼠小肠中P-糖蛋白外排和肠上皮细胞代谢的影响

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摘要

The potential inhibitory effects of 3 excipients (polyethylene glycol [PEG] 400, Pluronic P85, and vitamin E d-a-tocopheryl polyethylene glycol 1000 succinate [TPGS]) on the P-glycoprotein (P-gp)-mediated efflux of digoxin (DIG) and cytochrome P450 3A (CYP3A)-mediated metabolism of verapamil (VRP) have been examined in an in vitro permeability model.Experiments were conducted utilizing rat jejunal tissue mounted in diffusion chambers and included assessment of the serosal to mucosal (s to m) transport of DIG and the formation of norverapamil (NOR) during the mucosal to serosal transport of VRP, as measures of P-gp efflux and CYP3A metabolism, respectively.The presence of PEG at 1%, 5%, and 20% (wt/vol) reduced both the s to m flux of DIG (by 47%, 57%, and 64%, respectively, when compared to control) and the metabolism of VRP (by 54%, 78%, and 100%) in a concentration-dependent manner. P85 (0.1% wt/vol) significantly reduced s to m DIG flux by 47% and inhibited VRP metabolism by 42%. TPGS had insignificant effects on both metabolism and efflux at a concentration of 0.01% (wt/vol). The P-gp inhibitory effects of PEG and P85 were evident regardless of whether the excipient was added to the mucosal side, the serosal side, or both sides of the tissue.The current data suggest that inclusion of PEG and P85 as solubilizing agents during in vitro permeability assessment may have a significant impact on both drug metabolism and efflux processes. These compounds appear to exert their effects on P-gp primarily via direct transporter inhibition-or indirectly, through effects on buffer osmolarity, membrane fluidity, and/or mitochondrial toxicity and subsequent adenosine triphosphate (ATP) depletion.
机译:3种赋形剂(聚乙二醇[PEG] 400,Pluronic P85和维生素E达生育酚聚乙二醇1000琥珀酸酯[TPGS])对P-糖蛋白(P-gp)介导的地高辛(DIG)外排的潜在抑制作用在体外渗透性模型中研究了细胞色素P450 3A(CYP3A)介导的维拉帕米(VRP)代谢。利用安装在扩散室中的大鼠空肠组织进行了实验,包括评估浆膜向粘膜(s to m)的转运分别测定P-gp外排和CYP3A代谢的指标,即VRP的黏​​膜向浆膜转运过程中DIG的变化和去甲维拉帕米(NOR)的形成.PEG的存在量分别为1%,5%和20%(wt / vol) )降低浓度下DIG的s至m通量(分别比对照降低47%,57%和64%)和VRP代谢(分别降低54%,78%和100%),依赖方式。 P85(0.1%wt / vol)将s / m DIG通量显着降低47%,并将VRP代谢抑制42%。 TPGS在0.01%(wt / vol)的浓度下对代谢和外排均无影响。无论是将赋形剂添加到组织的粘膜侧,浆膜侧还是组织的两侧,PEG和P85的P-gp抑制作用都是显而易见的。当前数据表明,在治疗过程中将PEG和P85用作增溶剂。体外渗透性评估可能对药物代谢和外排过程都有重大影响。这些化合物似乎主要通过直接转运蛋白抑制作用来发挥其对P-gp的作用,或通过对缓冲剂渗透压,膜流动性和/或线粒体毒性的作用以及随后的三磷酸腺苷(ATP)消耗而间接发挥作用。

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