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◆ Journal of agricultural and food chemistry2026-08-19

From In Silico De Novo Generation to In Vitro Functional Validation: Discovery of Multifunctional Antithrombotic Peptides from Food-Derived Proteins via a Hybrid LSTM-GCN and Molecular Simulation Pipeline.

Huizhen Xing, Huimin Dong, Chengzhi Guo, Yucheng Zou, Zhigao Wang, Rong He

原始摘要(英文原文)· Original abstract
Cardiovascular thromboses bring heavy global health burdens, while traditional screening of food-derived antithrombotic peptides is inefficient. This work built an integrated pipeline integrating de novo peptide generation, hybrid LSTM-GCN deep learning, and molecular simulations, screening 15,000 sequences to obtain lead peptide FPGGIP. It had a binding affinity of -6.4 kcal/mol and a stable thrombin complex (RMSD = 1.42 Å), acting as a competitive thrombin inhibitor (IC50 = 14.3 μM). FPGGIP exerted ex vivo anticoagulation, suppressed vascular smooth muscle proliferation, relieved oxidative stress, recovered cell apoptosis, alleviated endothelial activation, blocked platelet aggregation, and showed low hemolysis (<5%). As a multifunctional safe peptide, it serves as a promising candidate for cardiovascular nutraceuticals, and the pipeline enables efficient peptide mining.
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From In Silico De Novo Generation to In Vitro Functional Validation: Discovery of Multifunctional Antithrombotic Peptides from Food-Derived Proteins via a Hybrid LSTM-GCN and Molecular Simulation Pipeline. — 科研速览 Science Skim