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HEPES 缓冲液对 P-糖蛋白底物和大中性氨基酸摄取和转运的影响。

Effect of HEPES buffer on the uptake and transport of P-glycoprotein substrates and large neutral amino acids.

机构信息

Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City, Kansas City, Missouri 64108-2718, USA.

出版信息

Mol Pharm. 2010 Apr 5;7(2):412-20. doi: 10.1021/mp900193e.

Abstract

HEPES has been widely employed as an organic buffer agent in cell culture medium as well as uptake and transport experiments in vitro. However, concentrations of HEPES used in such studies vary from one laboratory to another. In this study, we investigated the effect of HEPES on the uptake and bidirectional transport of P-gp substrates employing both Caco-2 and MDCK-MDR1 cells. ATP-dependent uptake of glutamic acid was also examined. ATP production was further quantified applying ATP Determination Kit. An addition of HEPES to the growth and incubation media significantly altered the uptake and transport of P-gp substrates in both Caco-2 and MDCK-MDR1 cells. Uptake of P-gp substrates substantially diminished as the HEPES concentration was raised to 25 mM. Bidirectional (A-B and B-A) transport studies revealed that permeability ratio of P(appB-A) to P(appA-B) in the presence of 25 mM HEPES was significantly higher than control. The uptake of phenylalanine is an ATP-independent process, whereas the accumulation of glutamic acid is ATP-dependent. While phenylalanine uptake remained unchanged, glutamic acid uptake was elevated with the addition of HEPES. Verapamil is an inhibitor of P-gp mediated uptake; elevation of cyclosporine uptake in the presence of 5 muM verapamil was compromised by the presence of 25 mM HEPES. The results of ATP assay indicated that HEPES stimulated the production of ATP. This study suggests that the addition of HEPES in the medium modulated the energy dependent efflux and uptake processes. The effect of HEPES on P-gp mediated drug efflux and transport may provide some mechanistic insight into possible reasons for inconsistencies in the results reported from various laboratories.

摘要

HEPES 已被广泛用作细胞培养基中的有机缓冲剂,以及体外摄取和转运实验。然而,不同实验室使用的 HEPES 浓度有所不同。在这项研究中,我们研究了 HEPES 对 Caco-2 和 MDCK-MDR1 细胞摄取和双向转运 P-糖蛋白底物的影响。还检查了谷氨酸的 ATP 依赖性摄取。进一步应用 ATP 测定试剂盒定量测定了 ATP 的产生。在生长和孵育培养基中添加 HEPES 会显著改变 Caco-2 和 MDCK-MDR1 细胞中 P-糖蛋白底物的摄取和转运。随着 HEPES 浓度升高至 25mM,P-糖蛋白底物的摄取量大大减少。双向(A-B 和 B-A)转运研究表明,在 25mM HEPES 存在下,P(appB-A)到 P(appA-B)的渗透比值显著高于对照。苯丙氨酸的摄取是一个不依赖于 ATP 的过程,而谷氨酸的积累是依赖于 ATP 的。虽然苯丙氨酸摄取保持不变,但随着 HEPES 的添加,谷氨酸摄取增加。维拉帕米是 P-糖蛋白介导摄取的抑制剂;在存在 5μM 维拉帕米的情况下,环孢素摄取的升高被 25mM HEPES 的存在所削弱。ATP 测定的结果表明 HEPES 刺激了 ATP 的产生。这项研究表明,培养基中添加 HEPES 调节了能量依赖的外排和摄取过程。HEPES 对 P-糖蛋白介导的药物外排和转运的影响可能为不同实验室报告的结果不一致提供了一些机制上的见解。

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