Thermodynamically programmed one-pot CRISPR platform for point-of-care SNP genotyping
Термодинамически запрограммированная однофазная CRISPR-платформа для генотипирования SNP в условиях близких к пациенту
2026-07-07
SCID: 54.1/ma42y6bv
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PAM introduction via primerThermodynamically Encoded Molecular Programming (TEMPO)one-pot CRISPR diagnosticsprimer-programmed reaction orderthermodynamic primer design
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Abstract (AI)
Abstract One-pot CRISPR diagnostics face a fundamental incompatibility: isothermal nucleic acid amplification enables rapid target accumulation, whereas CRISPR activation irreversibly consumes those substrates, destabilizing reaction kinetics. Here we show that reaction order can be programmed into DNA primers through thermodynamic design. Differences in primer-binding strength create two sequential amplification stages, delaying CRISPR activation until enough amplicons have accumulated without physical separation or external control. The design also introduces the protospacer adjacent motif (PAM), a short sequence required for CRISPR recognition, through the primer rather than relying on its presence in the native target, expanding target accessibility while retaining single-nucleotide discrimination. An ordinary differential equation model captures the threshold behavior and establishes a predictable framework for primer design. Building on this principle, we develop Thermodynamically Encoded Molecular Programming for One-pot diagnostics (TEMPO), which achieves attomolar sensitivity within 30 min and enables sequencing-concordant SNP genotyping and pathogen detection in a single-step microfluidic format.
Key Findings
1
An ordinary differential equation model captures the threshold behavior of the system and provides a predictable framework for primer design.
2
Programmable primer-introduced PAM enables CRISPR recognition without requiring the native target PAM, expanding target accessibility while preserving single-nucleotide discrimination.
3
TEMPO (Thermodynamically Encoded Molecular Programming for One-pot diagnostics) achieves attomolar sensitivity within 30 minutes in a single-pot format.
4
TEMPO enables sequencing-concordant SNP genotyping and pathogen detection in a single-step microfluidic format.
5
Thermodynamic primer design programs reaction order into primers, creating two sequential amplification stages that delay CRISPR activation until sufficient amplicons accumulate.
Research Object
Thermodynamically programmed one-pot CRISPR diagnostic platform (TEMPO) for point-of-care SNP genotyping and pathogen detection
Research Subject
Programming reaction order via thermodynamic primer design to enable sequential isothermal amplification and delayed CRISPR activation, achieving attomolar sensitivity, single-nucleotide discrimination (SNP genotyping), and sequencing-concordant detection in a one-pot microfluidic assay
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2026-07-07
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