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Latent Chemical Space Searching for Plug-in Multi-objective Molecule Generation

Biomolecules 2024-04-11 v1 Machine Learning Neural and Evolutionary Computing

Abstract

Molecular generation, an essential method for identifying new drug structures, has been supported by advancements in machine learning and computational technology. However, challenges remain in multi-objective generation, model adaptability, and practical application in drug discovery. In this study, we developed a versatile 'plug-in' molecular generation model that incorporates multiple objectives related to target affinity, drug-likeness, and synthesizability, facilitating its application in various drug development contexts. We improved the Particle Swarm Optimization (PSO) in the context of drug discoveries, and identified PSO-ENP as the optimal variant for multi-objective molecular generation and optimization through comparative experiments. The model also incorporates a novel target-ligand affinity predictor, enhancing the model's utility by supporting three-dimensional information and improving synthetic feasibility. Case studies focused on generating and optimizing drug-like big marine natural products were performed, underscoring PSO-ENP's effectiveness and demonstrating its considerable potential for practical drug discovery applications.

Keywords

Cite

@article{arxiv.2404.06691,
  title  = {Latent Chemical Space Searching for Plug-in Multi-objective Molecule Generation},
  author = {Ningfeng Liu and Jie Yu and Siyu Xiu and Xinfang Zhao and Siyu Lin and Bo Qiang and Ruqiu Zheng and Hongwei Jin and Liangren Zhang and Zhenming Liu},
  journal= {arXiv preprint arXiv:2404.06691},
  year   = {2024}
}
R2 v1 2026-06-28T15:49:26.365Z