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SolnNuc™
Intelligent Nucleic Acid Drug
Development Platform

SolnNuc™
Intelligent Nucleic Acid Drug Development Platform

Intelligent Design for RNA Therapeutics.
Precision and Specificity from Target to Delivery.

Integrating AI with bioinformatics algorithms, SolnNuc™ enables target identification and intelligent sequence design for small nucleic acid therapeutics including siRNA and ASO. Powered by a physics engine and RNA language foundation models, the platform precisely predicts silencing efficacy and off-target risks, enabling highly specific optimization—drastically compressing the candidate space and significantly enhancing development efficiency.

  • Target Discovery

    AI algorithms rapidly screen for potential targets amenable to small nucleic acid intervention, expanding the druggable space.
  • Sequence Refinement

    RNA language models combined with thermodynamic mechanisms lock in the top 0.1% of high-activity sequences from a vast sequence landscape.
  • Off-Target Avoidance

    Automatically shields seed-region off-target risks and immunogenicity hotspots, embedding upfront safety design .
  • Delivery Assessment

    Provides comprehensive delivery solutions including GalNAc and LNP across diverse tissues and organs, such as liver and CNS.
  • Dry-Wet Closed Loop

    Active learning drives a dry-wet closed loop, reducing blind experimental rounds by over 50%, with daily iterative model updates
  • Patent Circumvention

    AI-generated de novo sequences effectively circumvent existing patent barriers.

nuc.png

SolnNuc™
Intelligent Nucleic Acid Drug
Development Platform

SolnNuc™
Intelligent Nucleic Acid Drug Development Platform

Intelligent Design for RNA Therapeutics.
Precision and Specificity from Target to Delivery.

Integrating AI with bioinformatics algorithms, SolnNuc™ enables target identification and intelligent sequence design for small nucleic acid therapeutics including siRNA and ASO. Powered by a physics engine and RNA language foundation models, the platform precisely predicts silencing efficacy and off-target risks, enabling highly specific optimization—drastically compressing the candidate space and significantly enhancing development efficiency.

  • Target Discovery

    AI algorithms rapidly screen for potential targets amenable to small nucleic acid intervention, expanding the druggable space.
  • Sequence Refinement

    RNA language models combined with thermodynamic mechanisms lock in the top 0.1% of high-activity sequences from a vast sequence landscape.
  • Off-Target Avoidance

    Automatically shields seed-region off-target risks and immunogenicity hotspots, embedding upfront safety design .
  • Delivery Assessment

    Provides comprehensive delivery solutions including GalNAc and LNP across diverse tissues and organs, such as liver and CNS.
  • Dry-Wet Closed Loop

    Active learning drives a dry-wet closed loop, reducing blind experimental rounds by over 50%, with daily iterative model updates
  • Patent Circumvention

    AI-generated de novo sequences effectively circumvent existing patent barriers.

nuc.png