AI Article Synopsis

  • ASPYRE Technology
  • : ASPYRE (Allele-Specific PYrophosphorolysis REaction) was created to provide a quick, affordable, and effective genomic testing method for cancer, specifically non-small cell lung carcinoma, assessing 114 variants in 11 genes simultaneously from tumor samples.
  • Testing and Results
  • : When tested on various lung tissue samples, ASPYRE-Lung showed a detection sensitivity of ≤ 3% for single nucleotide variants, with perfect specificity and high analytical accuracy, matching expected results without false positives.
  • Ease of Use
  • : The assay requires minimal steps and standard lab equipment, with data analysis supported by a cloud-based algorithm, making it a potentially transformative tool for

Article Abstract

Introduction: Genomic variant testing of tumors is a critical gateway for patients to access the full potential of personalized oncology therapeutics. Current methods such as next-generation sequencing are costly and challenging to interpret, while PCR assays are limited in the number of variants they can cover. We developed ASPYRE (Allele-Specific PYrophosphorolysis REaction) technology to address the urgent need for rapid, accessible and affordable diagnostics informing actionable genomic target variants of a given cancer. The targeted ASPYRE-Lung panel for non-small cell carcinoma covers 114 variants in 11 genes () to robustly inform clinical management. The assay detects single nucleotide variants, insertions, deletions, and gene fusions from tissue-derived DNA and RNA simultaneously.

Methods: We tested the limit of detection, specificity, analytical accuracy and analytical precision of ASPYRE-Lung using FFPE lung tissue samples from patients with non-small cell lung carcinoma, variant-negative FFPE tissue from healthy donors, and FFPE-based contrived samples with controllable variant allele fractions.

Results: The sensitivity of ASPYRE-Lung was determined to be ≤ 3% variant allele fraction for single nucleotide variants and insertions or deletions, 100 copies for fusions, and 200 copies for exon 14 skipping. The specificity was 100% with no false positive results. The analytical accuracy test yielded no discordant calls between ASPYRE-Lung and expected results for clinical samples (via orthogonal testing) or contrived samples, and results were replicable across operators, reagent lots, runs, and real-time PCR instruments with a high degree of precision.

Conclusions: The technology is simple and fast, requiring only four reagent transfer steps using standard laboratory equipment (PCR and qPCR instruments) with analysis via a cloud-based algorithm. The ASPYRE-Lung assay has the potential to be transformative in facilitating access to rapid, actionable molecular profiling of tissue for patients with non-small cell carcinoma.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11461167PMC
http://dx.doi.org/10.3389/fonc.2024.1420162DOI Listing

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