siPACE offers a novel approach to low-cost, high-throughput SNP genotyping using size-indexed PCR and capillary electrophoresis, reducing costs and increasing efficiency. It is suitable for analyzing SNPs linked to micronutrient deficiencies, compatible with saliva or cheek swabs.
The size-indexed Partitioned Amplification with Capillary Electrophoresis (siPACE) technique presents an innovative solution for cost-effective, high-throughput genotyping of single nucleotide polymorphisms (SNPs) associated with micronutrient deficiencies. This method enables PCR-based SNP genotyping at scale by leveraging multiplexing and sample pooling, significantly reducing the cost-per-sample. siPACE is accurate, rapid, and compatible with non-invasive samples such as saliva or cheek swabs, capable of analyzing up to 9,000 samples per capillary electrophoresis (CE) run.
The siPACE technology is currently at Technology Readiness Level 5, having demonstrated its core capabilities in a controlled environment. Future validation involves benchmarking against existing methods and testing on characterized human samples to further establish its efficacy and reliability.