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Published on: September 18, 2016
A Tumor Acidity-Driven Transformable Nanomaterial Mediated Activation of Antigen-Presenting Cells for Cancer
Junxia Wang1, Yuge Zhang1, Bingqin Li2
1Center for Medical Research on Innovation and Translation, Institute of Clinical Medicine, the Second Affiliated Hospital, School of Medicine, South China University of Technology, Guangzhou, China.
Abstract:
Effective combination therapy requires targeted co-delivery of multiple therapeutic agents via a well-defined and controllable assembly mechanism, which most reported strategies struggle to achieve. In this study, we designed a tumor acidity-driven transformable nanoparticle self-assembly using a drug-conjugated amphiphilic polymer (mPEG-PLA-Ce6), an acidity-sensitive polymer (PAEMA), and the CSF-1R inhibitor, sotuletinib (BLZ-945), by regulating the pKa and ratio of the acidity-sensitive material (denoted as Ce6SNP/B). The obtained tumor acidity-driven transformable Ce6SNP/B released BLZ-945 to deplete immunosuppressive M2-type tumor-associated macrophages predominantly localized in the perivascular regions of blood vessels. Simultaneously, tumor acidity-driven size shrinkage of Ce6SNP/B facilitated the deep penetration and tumor accumulation of photosensitizer Ce6 to enhance phototherapy, resulting in enhanced immunogenic cell death of tumor cells. Additionally, the acidity-sensitive material PAEMA has the potential to induce dendritic cell maturation. Thereby, the tumor acidity-driven transformable Ce6SNP/B achieved cancer photoimmunotherapy by targeting tumor cells and activating antigen-presenting cell-mediated anti-tumor immune effect.
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