Identification and characterization of an endogenous biomarker of the renal vectorial transport (OCT2-MATE1)

IF 1.7 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Yanrong Ma, Xinyi Wang, Xueyan Gou, Xinan Wu
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引用次数: 0

Abstract

The renal tubular organic cation transporter 2 (OCT2) and multidrug and toxin extrusion protein 1 (MATE1) mediate the vectorial elimination of many drugs and toxins from the kidney, and endogenous biomarkers for vectorial transport (OCT2-MATE1) would allow more accurate drug dosing and help to characterize drug–drug interactions and toxicity. Human serum uptake in OCT2-overexpressing cells and metabolomics analysis were carried out. Potential biomarkers were verified in vitro and in vivo. The specificity of biomarkers was validated in renal transporter overexpressing cells and the sensitivity was investigated by Km. The results showed that the uptake of thiamine, histamine, and 5-hydroxytryptamine was significantly increased in OCT2-overexpressing cells. In vitro assays confirmed that thiamine, histamine, and 5-hydroxytryptamine were substrates of both OCT2 and MATE1. In vivo measurements indicated that the serum thiamine level was increased significantly in the presence of the rOCT2 inhibitor cimetidine, and the level in renal tissue was increased significantly by the rMATE1 inhibitor pyrimethamine. There were no significant changes in the uptake or efflux of thiamine in cell lines overexpressed OAT1, OAT2, OAT3, MRP4, organic anion transporting polypeptide 4C1, P-gp, peptide transporter 2, urate transporter 1, and OAT4. The Km for thiamine with OCT2 and MATE1 were 71.2 and 10.8 μM, respectively. In addition, the cumulative excretion of thiamine at 2 and 4 h was strongly correlated with metformin excretion (R2 > 0.6). Thus, thiamine is preferentially secreted by the OCT2 and MATE1 in renal tubules and can provide a reference value for evaluating the function of the renal tubular OCT2-MATE1.

Abstract Image

肾脏矢量转运内源性生物标记物(OCT2-MATE1)的鉴定和特征描述
肾小管有机阳离子转运体 2(OCT2)和多药及毒素挤出蛋白 1(MATE1)介导了许多药物和毒素从肾脏的矢量清除,而矢量转运的内源性生物标记物(OCT2-MATE1)将使药物剂量更准确,并有助于确定药物间相互作用和毒性的特征。研究人员在 OCT2 基因表达细胞中进行了人体血清吸收和代谢组学分析。对潜在的生物标记物进行了体外和体内验证。在肾脏转运体过表达细胞中验证了生物标记物的特异性,并通过 Km 研究了其敏感性。结果表明,OCT2-过表达细胞对硫胺素、组胺和 5-羟色胺的吸收明显增加。体外实验证实,硫胺素、组胺和 5-羟色胺都是 OCT2 和 MATE1 的底物。体内测量结果表明,血清中的硫胺素水平在 rOCT2 抑制剂西咪替丁的作用下显著增加,而肾组织中的硫胺素水平在 rMATE1 抑制剂嘧霉胺的作用下显著增加。在过量表达 OAT1、OAT2、OAT3、MRP4、有机阴离子转运多肽 4C1、P-gp、肽转运体 2、尿酸盐转运体 1 和 OAT4 的细胞系中,硫胺素的吸收或外流没有明显变化。硫胺素与 OCT2 和 MATE1 的 Km 值分别为 71.2 和 10.8 μM。此外,硫胺素在 2 小时和 4 小时的累积排泄量与二甲双胍的排泄量密切相关(R2 > 0.6)。因此,硫胺素优先由肾小管中的OCT2和MATE1分泌,可为评估肾小管OCT2-MATE1的功能提供参考值。
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
35
审稿时长
6-12 weeks
期刊介绍: Biopharmaceutics & Drug Dispositionpublishes original review articles, short communications, and reports in biopharmaceutics, drug disposition, pharmacokinetics and pharmacodynamics, especially those that have a direct relation to the drug discovery/development and the therapeutic use of drugs. These includes: - animal and human pharmacological studies that focus on therapeutic response. pharmacodynamics, and toxicity related to plasma and tissue concentrations of drugs and their metabolites, - in vitro and in vivo drug absorption, distribution, metabolism, transport, and excretion studies that facilitate investigations related to the use of drugs in man - studies on membrane transport and enzymes, including their regulation and the impact of pharmacogenomics on drug absorption and disposition, - simulation and modeling in drug discovery and development - theoretical treatises - includes themed issues and reviews and exclude manuscripts on - bioavailability studies reporting only on simple PK parameters such as Cmax, tmax and t1/2 without mechanistic interpretation - analytical methods
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