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Nature Communications|March 7, 2024
Ammonia marine engine design for enhanced efficiency and reduced greenhouse gas emissionsXinyi Zhou, Tie Li, Run Chen, et al.Aging and Disease|March 28, 2025
Towards Precision Aging Biology: Single-Cell Multi-Omics and Advanced AI-Driven StrategiesSijia Xie, Xinwei Luo, Feitong Hong, et al.Frontiers in Pharmacology|February 9, 2023
Uncovering the effects and molecular mechanism of <i>Astragalus membranaceus</i> (Fisch.) Bunge and its bioactive ingredients formononetin and calycosin against colon cancer: An integrated approach based on network pharmacology analysis coupled with experimental validation and molecular dockingYu Hu, Wenjuan Zhai, Duanling Tan, et al.Advanced Materials (Deerfield Beach, Fla.)|June 12, 2025
Inner-Layer Indium Doping Achieved Highly Active and Stable Sulfur Vacancies in MoS<sub>2</sub> for Superior Sulfur Redox KineticsQingbin Jiang, Huifang Xu, Kwan San Hui, et al.BMC Biology|January 26, 2026
Aegis: a transformer-based deep learning framework for the accurate identification of anticancer peptidesZexu Zhou, Lei Xie, Xiaolong Li, et al.Ageing Research Reviews|January 30, 2026
Single-cell Aging Clocks: A Precision Tool for Dissecting and Targeting the Aging ProcessYuduo Hao, Sijia Xie, Yijie Wei, et al.BMC Biology|April 6, 2025
PBertKla: a protein large language model for predicting human lysine lactylation sitesHongyan Lai, Diyu Luo, Mi Yang, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|August 20, 2025
MOF Glass Confined Black Phosphorus via Co─P Anchoring for Advanced Lithium-Ion Battery AnodesYijie Wei, Zhengjie Chen, Xin Guo, et al.Journal of Ethnopharmacology|December 17, 2023
Formononetin, a bioactive isoflavonoid constituent from Astragalus membranaceus (Fisch.) Bunge, ameliorates type 1 diabetes mellitus via activation of Keap1/Nrf2 signaling pathway: An integrated study supported by network pharmacology and experimental validationHaipeng Chen, Yanmei Lou, Senyi Lin, et al.Elife|October 14, 2024
Root-specific theanine metabolism and regulation at the single-cell level in tea plants (<i>Camellia sinensis</i>)Shijia Lin, Yiwen Zhang, Shupei Zhang, et al.Pageof 3