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Phototherapy-responsive nanoplatform with hydrogel delivery potentiates immunotherapy and inhibits lung metastasis in osteosarcoma via synergistic glycolysis inhibition and vascular normalization

delete2026-08-12
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OA
AI
M
Mengchao Dong
T
Tingting Zhang
Y
Yichun Huang
M
Meng Liu
Y
Yuhui Yuan
B
Bowen Liu
Q
Qiang Ma
H
Haotian Zhang
C
Canhua Huang
C
Chengcheng Shi *
Y
Yi Zhang *
DOI:10.1186/s12951-026-04906-0delete
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Abstract

Abstract

En 中文
The immunosuppressive tumor microenvironment (ITME)—marked by acidosis and hypoxia—persists as a critical barrier to cancer immunotherapy, especially for osteosarcoma. Herein, an injectable pH-responsive nanocomposite hydrogel (OP@NPs) is presented to overcome this challenge via coordinated metabolic modulation, vascular normalization, and immune reprogramming. This platform co-delivers a novel lactate metabolism inhibitor (D780, a derivative conjugated by IR780 and diclofenac), Zn²⁺, and the anti-angiogenic agent nintedanib (NIB). D780 inhibits key glycolytic enzymes to reduce lactate production, while exerting photothermal/photodynamic effects that directly ablate tumors and mitigate hypoxia. Through metal coordination, Zn²⁺ assembles NIB and D780 into NPs. It also blocks GLUT1, boosting D780’s inhibition of glycolysis. NIB can restore abnormal vascular structure, thereby alleviating oxidative hypoxia and blocking epithelial-mesenchymal transition. In murine osteosarcoma models, the combined therapy centered on OP@NPs remodelled the tumor immune microenvironment (TME). This transformation led to an accumulation of cytotoxic T cells, dendritic cells and M1 macrophages. The treatment achieved favorable outcomes in inhibiting primary tumor growth and pulmonary metastases. Overall, this work presents a localized targeting strategy to regulate key signaling pathways in osteosarcoma.
Keywords:
pH-responsive hydrogel
Immune modulation
Tumor microenvironment remodeling
Metabolic regulation
Vascular normalization

Journal

Journal of Nanobiotechnology cover
Journal of Nanobiotechnology
IF:
12.6
Papers:
5.0K
Citations:
2.8W

Organization

D
Department of Orthopedic Surgery
Scholars:
701
Papers: 255
Citations: 1
D
department of pharmacy
Scholars:
1.2K
Papers: 406
Citations: 0
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