Technical Articles

RIPTAC的靶点选择逻辑与复合物形成热力学——超越“不可成药”的分子设计策略
RIPTAC's target selection logic and complex formation thermodynamics—molecular design strategies beyond "undruggable"
发布时间 2026-06-22
The uniqueness of RIPTAC technology lies not only in its "hold and kill" mechanism of action but also in the flexibility and breadth of its target selection. Traditional small-molecule inhibitors require targets to have well-defined active pockets and druggable chemical space; PROTACs demand that target proteins be recognized and degraded by the ubiquitin-proteasome system; whereas RIPTAC's sole requirement for a target protein is—its specific overexpression in tumor cells. This extremely low target threshold enables RIPTAC to potentially target a vast number of proteins previously deemed "undruggable." This article dissects the core scientific challenges in RIPTAC molecular design from two dimensions: target selection logic and the thermodynamics of ternary complex formation.
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  • Cancer
  • RIPTAC
  • target selection
  • ternary complex
  • positive cooperativity
  • high expression of target protein
  • effector protein
拉敌入局,断其生路:RIPTAC如何让肿瘤细胞“自断一臂”
Lure the enemy into a trap and cut off their retreat: How RIPTAC makes tumor cells "cut off their own arm"
发布时间 2026-05-28
RIPTAC (Regulated Induced Proximity Targeting Chimeras) are a class of heterobifunctional small molecules composed of three parts: one end binds to a tumor-specific target protein (Target Protein, TP), the other end binds to a ubiquitously expressed cell survival essential protein (Effector Protein, EP), and the two are connected by a chemical linker.
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  • Cancer
  • RIPTAC (Regulated Induced Proximity Targeting Chimera)
  • ternary complex
  • effector protein functional blockade
  • tumor-selective killing
  • AR
  • ER
  • effector protein
  • target protein
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