Low-cost allele-specific PCR for saliva-based SNP detection

Technology
In development
University

A cost-effective allele-specific PCR method using saliva samples for SNP detection, providing high throughput and accuracy comparable to sequencing, with multiplexing capabilities.

Overview

This innovative solution offers a low-cost allele-specific PCR method for detecting single nucleotide polymorphisms (SNPs) using saliva samples. The method utilizes heat denaturation for DNA extraction followed by allele-specific PCR, making it a cost-effective alternative to sequencing-based assays. Inspired by the covidSHIELD assay, this approach is adapted for SNP detection with high throughput and accuracy, suitable for large-scale genetic testing.

Technical specifications
  • Saliva Sampling and DNA Extraction: Saliva samples are heat-denatured at 95°C for 30 minutes to extract DNA.
  • PCR Amplification: The denatured sample is mixed with TBE and Tween-20, then amplified using allele-specific primers designed to inhibit amplification in SNP-negative samples.
  • Detection Methods: Results can be analyzed via qPCR, dPCR, or conventional PCR with gel electrophoresis, allowing detection of multiple SNPs through fluorescent probes or differential amplicon lengths.
  • Multiplexing Capability: Capable of detecting 2-3 SNPs per assay with qPCR and 5 or more with dPCR or gel electrophoresis.
Technology readiness level

This technology is at TRL 6, having been demonstrated in a relevant environment with plans for further validation on DNA stability and sensitivity using various storage conditions.


About University of Florida

The University of Florida is a comprehensive public research university with a broad academic and research portfolio and a statewide presence. Industry collaborates through co-located labs and shared core facilities and through an integrated academic health system that accelerates clinical translation. A statewide extension network and multiple research and education sites connect companies with field-scale testing and rapid deployment, while incubators and an adjacent innovation district provide pathways from lab to market. Research is supported by competitive funding from major federal agencies such as NIH, NSF, USDA, and DOE. A dedicated technology transfer office supports IP, licensing, and startup formation.

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