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RESEARCH PRODUCT
Targeting cells of the immune system: mannosylated HPMA–LMA block-copolymer micelles for targeting of dendritic cells
Matthias BrosStephan GrabbeStefan KramerCinja KappelRudolf ZentelNicole Mohrsubject
Materials sciencePolymersSurface Propertiesmedicine.medical_treatmentBiomedical EngineeringMedicine (miscellaneous)Bone Marrow CellsBioengineering02 engineering and technologyDevelopment01 natural sciencesMicellePolymerizationImmune systemAntigenmedicineHumansGeneral Materials ScienceReversible addition−fragmentation chain-transfer polymerizationMicelles010405 organic chemistryDendritic CellsImmunotherapyDendritic cell021001 nanoscience & nanotechnologyMolecular biology0104 chemical sciencesCell biologyMethacrylatesNanoparticlesImmunotherapy0210 nano-technologyAcetylmuramyl-Alanyl-IsoglutamineMannoseAdjuvantSpleenMannose receptordescription
Background: Successful tumor immunotherapy depends on the induction of strong and sustained tumor antigen-specific immune responses by activated antigen-presenting cells (APCs) such as dendritic cells (DCs). Since nanoparticles have the potential to codeliver tumor-specific antigen and DC-stimulating adjuvant in a DC-targeting manner, we wanted to assess the suitability of mannosylated HPMA-LMA block polymers for immunotherapy. Materials & methods: Fluorescence-labeled block copolymer micelles derived from P(HPMA)-block-P(LMA) copolymers and according statistical copolymers were synthesized via RAFT polymerization, and loaded with the APC activator L18-MDP. Both types of copolymers were conjugated with D-mannose to target the mannose receptor as expressed by DCs and macrophages. The extent and specificity of micelle binding and activation of APCs was monitored using mouse spleen cells and bone marrow-derived DC (BMDC). Results: Nontargeting HPMA-LMA statistical copolymers showed strong unspecific cell binding. HPMA-LMA block copolymers bound DC only when conjugated with mannose, and in a mannose receptor-specific manner. Mannosylated HPMA-LMA block copolymers were internalized by DC. DC-targeting HPMA-LMA block copolymers mediated DC activation when loaded with L18-MDP. Conclusion: Mannosylated HPMA-LMA block copolymers are a promising candidate for the delvopment of DC-targeting nanovaccines.
year | journal | country | edition | language |
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2016-09-16 | Nanomedicine |