Programmable‐Responsive Cell‐Resident Polymeric Micelles for Granzyme B‐Steered Integrated Anti‐PD‐L1 Immunotherapy via Membrane Repair Interference

ABSTRACT Despite the clinical promise of immune checkpoint blockade (ICB), its therapeutic performance in prostate cancer remains suboptimal due to membrane repair‐associated resistance and insufficient immune engagement. Herein, a programmable‐responsive cell‐resident micelle (PBAM) is engineered to integrate BAPTA (a calcium chelator), anti‐PD‐L1 antibody, and prochlorperazine (PCZ)/β‐cyclodextrin inclusion complexes within a pH/granzyme B (GzmB)‐dual‐responsive system, enabling spatiotemporally coordinated multidrug release for integrated anti‐PD‐L1 immunotherapy. PBAM selectively accumulates in tumors and undergoes acid‐triggered PCZ release, suppressing PI3K/Akt signaling and reducing endocytic uptake to maintain tumor cell surface anchoring. Upon ICB‐mediated immune activation, cytotoxic T lymphocytes (CTLs) secrete granzyme and perforin to induce tumor cell apoptosis while triggering GzmB‐responsive micellar degradation for BAPTA release, thereby disrupting Ca 2+ ‐dependent membrane repair and sensitizing tumor cells to CTL‐mediated cytotoxicity. This spatiotemporally coordinated cascade reinforces PD‐1/PD‐L1 blockade to overcome immune resistance, thereby restoring antitumor immunity and enhancing memory‐associated T‐cell responses, ultimately constraining tumor progression and recurrence.

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Publication Details

Journal
Advanced Functional Materials
Published
2026-09-28
DOI
https://doi.org/10.1002/adfm.78701
Primary Topic
Nanoplatforms for cancer theranostics
Type
article
Field-Weighted Citation Impact
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article

Programmable‐Responsive Cell‐Resident Polymeric Micelles for Granzyme B‐Steered Integrated Anti‐PD‐L1 Immunotherapy via Membrane Repair Interference

Wenpei Fan, Hai Hui Huang, Xiaojun Xu, Jiayi Bian et al.
Advanced Functional Materials
Nanoplatforms for cancer theranostics
article

Programmable‐Responsive Cell‐Resident Polymeric Micelles for Granzyme B‐Steered Integrated Anti‐PD‐L1 Immunotherapy via Membrane Repair Interference

Wenpei Fan, Hai Hui Huang, Xiaojun Xu, Jiayi Bian, Bo Shi, Yuhang Huang, Yichun Zheng, Bisheng Cheng, Yue Chen, Liyuan Zhang, Endian Huang, Lelei Xiao, Minghao Sun
article en

Abstract

ABSTRACT Despite the clinical promise of immune checkpoint blockade (ICB), its therapeutic performance in prostate cancer remains suboptimal due to membrane repair‐associated resistance and insufficient immune engagement. Herein, a programmable‐responsive cell‐resident micelle (PBAM) is engineered to integrate BAPTA (a calcium chelator), anti‐PD‐L1 antibody, and prochlorperazine (PCZ)/β‐cyclodextrin inclusion complexes within a pH/granzyme B (GzmB)‐dual‐responsive system, enabling spatiotemporally coordinated multidrug release for integrated anti‐PD‐L1 immunotherapy. PBAM selectively accumulates in tumors and undergoes acid‐triggered PCZ release, suppressing PI3K/Akt signaling and reducing endocytic uptake to maintain tumor cell surface anchoring. Upon ICB‐mediated immune activation, cytotoxic T lymphocytes (CTLs) secrete granzyme and perforin to induce tumor cell apoptosis while triggering GzmB‐responsive micellar degradation for BAPTA release, thereby disrupting Ca 2+ ‐dependent membrane repair and sensitizing tumor cells to CTL‐mediated cytotoxicity. This spatiotemporally coordinated cascade reinforces PD‐1/PD‐L1 blockade to overcome immune resistance, thereby restoring antitumor immunity and enhancing memory‐associated T‐cell responses, ultimately constraining tumor progression and recurrence.

Advanced Functional Materials
Sun Yat-sen University (CN), China Pharmaceutical University (CN), Shanghai Jiao Tong University (CN), Ruijin Hospital (CN), The Fourth People's Hospital (CN), Sun Yat-sen Memorial Hospital (CN)
Openalex Percentile: Top 22%
Nanoplatforms for cancer theranostics
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