A CD44-targeted PDA/ZnO redox-active nanocomposite that couples chemotherapy with mitochondrial stress and tumor immune remodeling

Bladder cancer therapy is frequently limited by inefficient drug retention and adaptive immune resistance within a hypoxic tumor microenvironment. Here, we report a CD44-targeted, fully synthetic nanocomposite (HPPZC) that converts chemotherapy into a mitochondria-associated therapeutic strategy accompanied by tumor immune remodeling. Rapid microwave-assisted assembly integrates hyaluronic acid (HA), polydopamine (PDA), protamine, zinc oxide (ZnO), and camptothecin (CPT) into a structurally integrated hybrid nanocomposite with tumor targeting, while the PDA/ZnO interface functions as a redox-active platform associated with mitochondrial dysfunction and redox modulation. HPPZC induces rapid mitochondrial depolarization, elevates oxidative stress, and is associated with PINK1/Parkin-related mitochondrial quality-control and autophagy-associated turnover signatures. In vivo, HPPZC treatment prolonged local intratumoral retention and produced tumor regression. The combination of chemotherapy with mitochondrial stress and tumor immune remodeling, suppressing CXCL12 and PD-L1, promoting M1-like marker profile, and increasing CD8⁺ T-cell infiltration. This work establishes a reproducibly fabricated redox-active nanotherapeutic associated with mitochondrial stress that couples targeted chemotherapy with immune microenvironment remodeling for antitumor efficacy.

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Publication Details

Journal
Journal of Nanobiotechnology
Published
2026-09-05
DOI
https://doi.org/10.1186/s12951-026-04899-w
Primary Topic
Nanoplatforms for cancer theranostics
Type
article
Field-Weighted Citation Impact
0.00

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article

A CD44-targeted PDA/ZnO redox-active nanocomposite that couples chemotherapy with mitochondrial stress and tumor immune remodeling

Kai-Yi Tzou, Ke-Hung Tsui, Lekshmi Rethi, Hieu Trung Nguyen et al.
Journal of Nanobiotechnology
Nanoplatforms for cancer theranostics
article

A CD44-targeted PDA/ZnO redox-active nanocomposite that couples chemotherapy with mitochondrial stress and tumor immune remodeling

Kai-Yi Tzou, Ke-Hung Tsui, Lekshmi Rethi, Hieu Trung Nguyen, Wei-Xuan Lin, Yao-En Cai, Andrew E-Y Chuang, Shao-Wei Dong, Hao-Cheng Hsu, Chia-Hung Liu, Szu-Yu Tung
article en

Abstract

Bladder cancer therapy is frequently limited by inefficient drug retention and adaptive immune resistance within a hypoxic tumor microenvironment. Here, we report a CD44-targeted, fully synthetic nanocomposite (HPPZC) that converts chemotherapy into a mitochondria-associated therapeutic strategy accompanied by tumor immune remodeling. Rapid microwave-assisted assembly integrates hyaluronic acid (HA), polydopamine (PDA), protamine, zinc oxide (ZnO), and camptothecin (CPT) into a structurally integrated hybrid nanocomposite with tumor targeting, while the PDA/ZnO interface functions as a redox-active platform associated with mitochondrial dysfunction and redox modulation. HPPZC induces rapid mitochondrial depolarization, elevates oxidative stress, and is associated with PINK1/Parkin-related mitochondrial quality-control and autophagy-associated turnover signatures. In vivo, HPPZC treatment prolonged local intratumoral retention and produced tumor regression. The combination of chemotherapy with mitochondrial stress and tumor immune remodeling, suppressing CXCL12 and PD-L1, promoting M1-like marker profile, and increasing CD8⁺ T-cell infiltration. This work establishes a reproducibly fabricated redox-active nanotherapeutic associated with mitochondrial stress that couples targeted chemotherapy with immune microenvironment remodeling for antitumor efficacy.

Journal of NanobiotechnologyVol. 24(1)
Taipei Medical University Hospital (TW), University of Medicine and Pharmacy at Ho Chi Minh City (VN), Wan Fang Hospital (TW), Taipei Medical University-Shuang Ho Hospital (TW), Taipei Medical University (TW)
National Science and Technology Council
Good health and well-being
Openalex Percentile: Top 20%
Nanoplatforms for cancer theranostics
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