4.1 Article

Development and application of a rapid and sensitive genotyping method for pharmacogene variants using the single-stranded tag hybridization chromatographic printed-array strip (STH-PAS)

期刊

DRUG METABOLISM AND PHARMACOKINETICS
卷 33, 期 6, 页码 258-263

出版社

JAPANESE SOC STUDY XENOBIOTICS
DOI: 10.1016/j.dmpk.2018.08.003

关键词

Genetic polymorphisms; Warfarin; Thiopurine; G6PD; Mitochondrial DNA

资金

  1. Tohoku Medical Megabank Project from MEXT
  2. Japan Agency for Medical Research and development, AMED [JP17km0105002]
  3. AMED Translational Research Network Program

向作者/读者索取更多资源

Genetic polymorphisms contribute to inter-individual variability in the metabolism of multiple clinical drugs, including warfarin, thiopurines, primaquine, and aminoglycosides. A rapid and sensitive clinical assessment of various genome biomarkers is, therefore, required to predict the individual responsiveness of each patient to these drugs. In this study, we developed a novel genotyping method for the detection of nine pharmacogene variants that are important in the prediction of drug efficiency and toxicity. This genotyping method uses competitive allele-specific PCR and a single-stranded tag hybridization chromatographic printed-array strip (STH-PAS) that can unambiguously determine the presence or absence of the gene variant by displaying visible blue lines on the chromatographic printed-array strip. Notably, the results of our STH-PAS method were in 100% agreement with those obtained using standard Sanger sequencing and KASP assay genotyping methods for CYP4F2 gene deletion. Moreover, the results were obtained within 90 min, including the PCR amplification and signal detection processes. The sensitive and rapid nature of this novel method make it ideal for clinical genetic testing to predict drug efficacy and toxicity, and in doing so will aid in the development of individualized medicine and better patient care. (c) 2018 The Japanese Society for the Study of Xenobiotics. Published by Elsevier Ltd. All rights reserved.

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