Universal probe-based SNP genotyping with visual readout: a robust and versatile method.
Zhongzhong WangZhang ZhangWang LuoLuojia WangXiaole HanRong ZhaoXin LiuJianhong ZhangWen YuJunjie LiYujun YangChen ZuoGuoming XiePublished in: Nanoscale (2023)
Detection of single nucleotide polymorphisms (SNPs) is critical for personalized clinical diagnosis, treatment, and medication. Current clinical detection methods suffer from primer dimerization and require the redesigning of reaction systems for different targets, resulting in a time-consuming and laborious process. Here, we present a robust and versatile method for SNP typing by using tailed primers and universal small molecule probes in combination with a visualized lateral flow assay (LFA). This approach enables not only rapid typing of different targets, but also eliminates the interference of primer dimers and enhances the accuracy and reliability of the results. Our proposed universal assay has been successfully applied to the typing of four SNP loci of clinical samples to verify the accuracy and universality, and the results are consistent with those obtained by Sanger sequencing. Therefore, our study establishes a new universal "typing formula" using nucleic acid tags and small molecule probes that provides a powerful genotyping platform for genetic analysis and molecular diagnostics.
Keyphrases
- small molecule
- genome wide
- genetic diversity
- high throughput
- nucleic acid
- dna methylation
- loop mediated isothermal amplification
- protein protein
- living cells
- single molecule
- emergency department
- gene expression
- fluorescence imaging
- single cell
- quantum dots
- high density
- photodynamic therapy
- smoking cessation
- human milk