Bioresponsive immune-booster-based prodrug nanogel for cancer immunotherapy

Xianbin Ma1, Shaochen Yang2, Tian Zhang1

  • 1Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, School of Materials and Energy & Chongqing Engineering Research Center for Micro-Nano Biomedical Materials and Devices, Southwest University, Chongqing 400715, China.

The combination of chemotherapy and immunotherapy motivates a potent immune system by triggering immunogenic cell death (ICD), showing great potential in inhibiting tumor growth and improving the immunosuppressive tumor microenvironment (ITM). However, the therapeutic effectiveness has been restricted by inferior drug bioavailability. Herein, we reported a universal bioresponsive doxorubicin (DOX)-based nanogel to achieve tumor-specific co-delivery of drugs. DOX-based mannose nanogels (DM NGs) was designed and choosed as an example to elucidate the mechanism of combined chemo-immunotherapy. As expected, the DM NGs exhibited prominent micellar stability, selective drug release and prolonged survival time, benefited from the enhanced tumor permeability and prolonged blood circulation. We discovered that the DOX delivered by DM NGs could induce powerful anti-tumor immune response facilitated by promoting ICD. Meanwhile, the released mannose from DM NGs was proved as a powerful and synergetic treatment for breast cancer in vitro and in vivo, via damaging the glucose metabolism in glycolysis and the tricarboxylic acid cycle. Overall, the regulation of tumor microenvironment with DOX-based nanogel is expected to be an effectual candidate strategy to overcome the current limitations of ICD-based immunotherapy, offering a paradigm for the exploitation of immunomodulatory nanomedicines.

Keywords:
5-ALA, 5-aminolevulinic acid5-FU, 5-fluorouracilALKP, alkaline phosphataseALT, alanine aminotransferaseAPCs, antigen-presenting cellsAST, aminotransferaseATP, adenosine triphosphateAUC, area under curvesBioresponsiveCLSM, confocal laser scanning microscopeCPT-11, irinotecanCRE, creatinineCRT, calreticulinCe6, chlorin e6ChemotherapyDAMPs, damage-associated molecular patternsDCs, dendritic cellsDDSs, drug delivery systemsDLN, draining lymph nodesDM NGs, doxorubicin-based mannose nanogelDOC, docetaxelDOX, doxorubicinDTT, d,l-dithiothreitolDoxorubicinFCM, flow cytometryFDA, Fluorescein diacetateGEM, gemcitabineGSH, glutathioneH&E, hematoxylin-eosinHCPT, 10-hydroxy camptothecinHCT, hematocritHGB, hemoglobin concentrationHMGB1, high migrating group box 1ICB, immune checkpoint blockadeICD, immunogenic cell deathICG, indocyanine GreenIHC, immunohistochemistryITM, immunosuppressive tumor microenvironmentImmunogenic cell deathImmunotherapyLDH, lactate dehydrogenaseLYM, lymphocyte ratioMAN, mannoseMCHC, mean corpuscular hemoglobin concentrationMCSs, multicellular spheroidsMFI, mean fluorescence intensityMPV, mean platelet volumeMannoseNGs, nanogelsNanogelOXA, oxaliplatinP18, purpurin 18PDI, polydispersity indexPLT, plateletsPTX, paclitaxelProdrugRBC, red blood cell countRDW, variation coefficient of red blood cell distribution widthTAAs, tumor-associated antigensTAM, tumor-associated macrophagesTGF-β, transforming growth factor-βTMA, tissue microarraysTME, tumor microenvironmentUrea, urea nitrogenWBC, white blood cell countirAEs, immune-related adverse events

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