Schwenk Michael H, Pai Amy Barton
Columbia University, New York, NY; and Albany College of Pharmacy and Health Sciences, Albany, NY.
Columbia University, New York, NY; and Albany College of Pharmacy and Health Sciences, Albany, NY.
Adv Chronic Kidney Dis. 2016 Mar;23(2):76-81. doi: 10.1053/j.ackd.2016.01.016.
Drug transporters typically move substrates, including drugs, in an intracellular to extracellular direction and thus are efflux transporters. There is a small subset of transporters that move substrates in the opposite direction and are classified as influx transporters. Collectively, drug transporters contribute to the pharmacokinetic profile of a wide variety of drugs and other molecules including xenobiotics, metabolites, and endogenous solutes. Identification of genetic variants in the genes that encode these transporters is an emerging area of pharmacogenomics. Many polymorphisms of the multitude of genes that code for the transporters within the 2 major superfamilies (ATP-binding cassette transporters and solute carrier transporters) have been identified. Studies have shown that many single-nucleotide polymorphisms are associated with changes in protein expression, functionality, and drug exposure; however, there are limited data for most single-nucleotide polymorphisms and impact on clinical end points. Preliminary data suggest that patients with CKD may have reduced transporter function that may have effects on exposure and toxicity profiles. Additional research translating the functional significance of polymorphisms on clinical pharmacokinetics and relevant disease-specific end points will provide further understanding of the role of genetic variations in transporter genes.
药物转运体通常将包括药物在内的底物由细胞内向细胞外转运,因此属于外排转运体。有一小部分转运体以相反方向转运底物,被归类为摄取转运体。总体而言,药物转运体影响多种药物及其他分子(包括外源性物质、代谢物和内源性溶质)的药代动力学特征。鉴定编码这些转运体的基因中的遗传变异是药物基因组学的一个新兴领域。已确定了2个主要超家族(ATP结合盒转运体和溶质载体转运体)内众多编码转运体的基因的许多多态性。研究表明,许多单核苷酸多态性与蛋白质表达、功能及药物暴露的改变有关;然而,大多数单核苷酸多态性及其对临床终点的影响的数据有限。初步数据表明,慢性肾脏病患者的转运体功能可能降低,这可能影响药物暴露和毒性特征。将多态性的功能意义转化为临床药代动力学及相关疾病特异性终点的更多研究,将进一步加深对转运体基因中遗传变异作用的理解。