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Bio-adhesive Macroporous Hydrogels for In Situ Recruitment and Modulation of Dendritic Cells
Joonsu Han, Rimsha Bhatta,
Hua Wang
Materials Science and Engineering
Materials Research Lab
Bioengineering
Biomedical and Translational Sciences
Beckman Institute for Advanced Science and Technology
Carl R. Woese Institute for Genomic Biology
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Keyphrases
Acrylic Acid
12%
Adhesion
12%
Antigen-presenting
12%
Antigen-specific CD8+ T Cells
25%
Bioadhesive
100%
Biocompatibility
12%
Biomaterials
12%
Bioresorbable Scaffold
12%
Cancer Immunotherapy
12%
Cancer Vaccine
12%
Cell-based
12%
Chemokines
37%
Controlled Release
25%
Cryopolymerization
12%
Dendritic Cells
100%
Drug Delivery
12%
Dual Cross-linking Networks
12%
Enhanced Cancer Therapy
12%
Extracellular Vesicles
12%
Gelatin
12%
Gelatin Hydrogel
12%
Granulocyte Colony-stimulating Factor (G-CSF)
25%
Hydrogel System
12%
Immune Cells
50%
Immunosuppression
12%
In Situ
100%
Lymphatic Tissue
12%
Macropores
37%
Macroporous
12%
Macroporous Gel
12%
Macroporous Hydrogel
100%
Macroporous Materials
12%
Material System
12%
Mechanical Properties
12%
Mechanically Tough
12%
New Platform
12%
Porous Structure
12%
Scaffold-based
12%
Therapeutic Vaccine
12%
Tissue Regeneration
12%
Tumor Antigen
12%
Tumor-derived Extracellular Vesicles
37%
Material Science
Chemokine
50%