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Leveraging generative hallucination and biophysics-informed modeling for unified biomolecular sequence-structure co-design

Biotech

Summary

arXiv:2608.17381v1 Announce Type: cross Abstract: Biomolecular design underpins applications from molecular recognition to therapeutics and synthetic biology, yet de novo interaction design remains challenging-especially for DNA/RNA, underexplored non-protein modalities with scarce, heterogeneous complex data and sharper geometric and chemical constraints. We introduce MCTH (Monte Carlo Tree Hallucination), an inference-only framework that casts all-atom sequence-structure co-design as uncertainty-aware planning over hallucinated states from pretrained folding and inverse-folding models, with optional biophysical control within the same decision loop. MCTH treats these models as frozen black-box operators and uses Monte Carlo Tree Search to allocate a fixed inference budget across competing design trajectories, incorporating model confidence and uncertainty, as well as cross-expert consensus/disagreement when multiple predictors are available.

Why It Matters

This Biotech development strengthens the region's biomanufacturing and life-sciences base. For Asia, it is a signal worth tracking: it shapes who supplies, who scales, and who sets the standard over the next five years.

Key Facts

  • SectorBiotech
  • Market
  • ImpactLow (42/100)
  • SignalResearch

Original Sources

arXiv Biotech / Biomolecules ↗ https://arxiv.org/abs/2608.17381

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