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BioArt百家论坛第10期 | De Novo Protein Design: From Physics-Based Modeling to Deep Learning 主讲嘉宾:曹龙兴 西湖大学研究员

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Representative image for BioArt百家论坛第10期 | De Novo Protein Design: From Physics-Based Modeling to Deep Learning 主讲嘉宾:曹龙兴 西湖大学研究员

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TL;DR - BioArt announced an August 25, 2026 forum on de novo protein design, featuring Westlake University researcher Longxing Cao and invited experts. The event will examine the field’s shift from physics-based modeling toward deep learning and its potential in synthetic biology and precision medicine.

  • Cao’s team develops protein-design methods grounded in protein folding and biomolecular interactions, including programmable custom proteases.
  • The forum spans computational protein–protein interaction design, AI foundation models for biomolecular structure and design, and protein engineering.
  • Highlighted applications include immunomodulation, cancer immunotherapy, protein therapeutics, biomaterials, and engineered cytokines.
  • The announcement provides speaker backgrounds and viewing details but reports no new experimental results.

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BioArt百家论坛第10期 | De Novo Protein Design: From Physics-Based Modeling to Deep Learning 主讲嘉宾:曹龙兴 西湖大学研究员

WeChat: BioArt 2026-08-21
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TL;DR - BioArt announced an August 25, 2026 forum on de novo protein design, featuring Westlake University researcher Longxing Cao and invited experts. The event will examine the field’s shift from physics-based modeling toward deep learning and its potential in synthetic biology and precision medicine.

  • Cao’s team develops protein-design methods grounded in protein folding and biomolecular interactions, including programmable custom proteases.
  • The forum spans computational protein–protein interaction design, AI foundation models for biomolecular structure and design, and protein engineering.
  • Highlighted applications include immunomodulation, cancer immunotherapy, protein therapeutics, biomaterials, and engineered cytokines.
  • The announcement provides speaker backgrounds and viewing details but reports no new experimental results.
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