Qiwei Wang, Jingyi Li, Xin Zeng, Lina Liu, Huan Lu, Yin Zhao, Yan Huang, Rui Wang, Chen Wang, Yingli Han, Yishan Ye, Yanmin Zhao, Jimin Shi, Yi Luo, Weiyan Zheng, Yongxian Hu, Shibing Wang, Xiangmin Tong, He Huang, Shanshan Pei, Pengxu Qian
Acute myeloid leukemia (AML) remains challenging, especially for older or unfit individuals who develop resistance to venetoclax (VEN)-based regimens. Although TIM3 represents a promising AML target, clinical blockade has yielded suboptimal outcomes. Here, we develop VINCENT (VEN-integrated natural killer cell engager targeting TIM3), a therapeutic platform combining anti-CD16 and anti-TIM3 antibodies with nanoformulated VEN. In VEN-resistant AML cell lines and patient-derived xenograft models, VINCENT overcomes resistance by enhancing VEN delivery, eliminating TIM3+ blasts and dysfunctional T cells and activating natural killer (NK) cells. In primary AML samples, VINCENT selectively kills drug-resistant blasts, with efficacy correlating with the NK cell-to-TIM3+ blast ratio. Single-cell transcriptomics reveals VINCENT depletes high-TIM3 blasts and remodels the immunosuppressive microenvironment toward immune competence. Collectively, VINCENT simultaneously addresses VEN resistance, NK cell dysfunction and immune evasion, offering a personalized option for elderly or unfit individuals with AML failing standard VEN regimens.