化学
药物输送
癌细胞
药理学
癌症研究
生物物理学
癌症
生物
遗传学
有机化学
作者
Bin Xu,Hanqi Lei,Tongyu Tong,Yupeng Guan,Yiyao Wang,Bo Li,Shiqiang Zhang,Chengyuan Xing,Xintao Shuai,Jinsheng Huang,Jun Pang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-08-26
卷期号:24 (35): 10724-10733
标识
DOI:10.1021/acs.nanolett.4c01610
摘要
Tumor acidity-driven nanomotors may offer robust propulsion for tumor-specific penetrating drug delivery. Herein, an acidity-actuated poly(amino acid) calcium phosphate (CaP) hybrid nanomotor (PCaPmotor) was designed, using a mPEG-PAsp-PPhe@THZ531 micelle (Poly@THZ) for CaP mineralization accompanied by αPD-L1 antibody encapsulation. Dissolution of the CaP layer in an acidic tumor environment gave off heat energy to propel the nanomotor to augment the cellular uptake and penetration into deeply seated cancer cells while facilitating αPD-L1 release. THZ531 delivered by the PCaPmotor inhibited CDK12 and its down-streamed phosphorylation of RNAP-II to increase the cancer immunogenicity events such as the DNA damage, cell apoptosis, immunogenic cell death, lysosomal function disturbance, and MHC-I upregulation. THZ531 and αPD-L1 cosupplied by PCaPmotor significantly increased the frequency of DCs maturation and intratumoral infiltration of CTLs, but the two free drugs did not. Consequently, the PCaP@THZ/αPD-L1 nanomotor resulted in synergistic anticancer immunotherapy in mice. This acid-actuated PCaPmotor represented a new paradigm for penetrating drug delivery.
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