Tabata Yoshiteru, Matsuo Yoshiyuki, Fujii Yosuke, Ohta Atsufumi, Hirota Kiichi
Department of Human Stress Response Science, Institute of Biomedical Science, Kansai Medical University, Hirakata, Osaka, Japan.
Department of Anesthesia, Otsu City Hospital, Otsu, Shiga, Japan.
JA Clin Rep. 2022 Mar 4;8(1):17. doi: 10.1186/s40981-022-00506-7.
Precision medicine is a phrase used to describe personalized medical care tailored to specific patients based on their clinical presentation and genetic makeup. However, despite the fact that several single nucleotide polymorphisms (SNPs) have been reported to be associated with increased susceptibility to particular anesthetic agents and the occurrence of perioperative complications, genomic profiling and thus precision medicine has not been widely applied in perioperative management.
We validated six SNP loci known to affect perioperative outcomes in Japanese patients using genomic DNA from saliva specimens and nanopore sequencing of each SNP loci to facilitate allele frequency calculations and then compared the nanopore results to those produced using the conventional dideoxy sequencing method.
Nanopore sequencing reads clustered into the expected genotypes in both homozygous and heterozygous cases. In addition, the nanopore sequencing results were consistent with those obtained using conventional dideoxy sequencing and the workflow provided reliable allele frequency estimation, with a total analysis time of less than 4 h.
Thus, our results suggest that nanopore sequencing is a promising and versatile tool for SNP genotyping, allowing for rapid and feasible risk prediction of perioperative outcomes.
精准医学是一个用于描述根据特定患者的临床表现和基因构成量身定制的个性化医疗护理的术语。然而,尽管已有报道称几种单核苷酸多态性(SNP)与对特定麻醉剂的易感性增加及围手术期并发症的发生有关,但基因组分析以及因此的精准医学尚未在围手术期管理中得到广泛应用。
我们使用唾液标本中的基因组DNA和对每个SNP位点进行纳米孔测序以促进等位基因频率计算,从而验证了六个已知会影响日本患者围手术期结局的SNP位点,然后将纳米孔测序结果与使用传统双脱氧测序法得到的结果进行比较。
在纯合子和杂合子病例中,纳米孔测序读数均聚类为预期的基因型。此外,纳米孔测序结果与使用传统双脱氧测序法获得的结果一致,并且该工作流程提供了可靠的等位基因频率估计,总分析时间不到4小时。
因此,我们的结果表明,纳米孔测序是一种用于SNP基因分型的有前景且通用的工具,可实现围手术期结局的快速且可行的风险预测。