纳米载体
化学
免疫抑制
细胞生物学
自噬
风暴
细胞激素风暴
免疫系统
纳米技术
癌症研究
生物物理学
机制(生物学)
炎症
作者
Zhipeng Liao,Haiqin Liao,Yi Luo,Sihan Chen,Yuanyuan Shen,Ming Zhang,Xu, Yan, 1958-,Long Wang,Chengcheng Niu
标识
DOI:10.1186/s12951-026-04578-w
摘要
Triple-negative breast cancer (TNBC) poses significant therapeutic challenges due to its aggressive metastasis and immunosuppressive microenvironment. Herein, we developed a tumor-targeting biomimetic nanosystem (MTB@LM) integrating BRD4-targeting PROTAC (dBET6), Mn-TCPP-based sonosensitizers, and a tumor cell membrane-fusogenic liposome hybrid membrane coating. MTB@LM efficiently accumulates in tumors via homologous targeting and bypasses lysosomal degradation through membrane fusion-mediated delivery. Under ultrasound activation, the nanosystem triggers a multimodal cascade: (1) Mn-enhanced sonodynamic therapy (SDT) amplifies ROS to overcome hypoxia/GSH resistance; (2) BRD4 degradation synergizes with SDT to induce apoptosis, while concurrent ferroptosis (via lipid peroxidation) and senescence (via p21/p16 activation) amplify immunogenic cell death (ICD); (3) Senescent tumor cells are eliminated by αPD-L1 to block immune evasion. In orthotopic 4T1 models, MTB@LM + US achieved > 85% tumor suppression and remodeled the immunosuppressive microenvironment by promoting dendritic cell maturation, CD8⁺ T cell infiltration, and M1 macrophage repolarization. Combining MTB@LM with αPD-L1 synergistically inhibited lung metastasis (> 90%) and established durable immune memory against recurrence. This nanotechnology-driven strategy integrates PROTAC delivery, SDT-amplified ICD, and senolytic immunotherapy, offering a promising paradigm for combating metastatic TNBC.
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