Abstract 198P
Background
Immunotherapy for cancer is closely related to the tumor immunosuppressive microenvironment (TIME). Resiquimod (a mixed TLR7/8 agonist also known as R848) has been shown to mediate promising immunostimulatory activity in a variety of preclinical models. Poly(D, L-lactic-co-glycolic acid) (PLGA) is one of the most commonly used biodegradable polymer.
Methods
The nanoparticles loaded with R848 (CD@R848@NP) were prepared by improved emulsion-solvent evaporation method, and the drug loading rate and entrapment efficiency were calculated. Its physical and chemical properties and drug release stability were measured, and its polarization effect on macrophages was evaluated in vitro. After labeling with IR780 fluorescent dye, the localization of the nanoparticles in vivo and in vitro was analyzed. CD@R848@NP was used to treat MC38 colon cancer mice by tail vein injection combined with intraperitoneal injection of TNFR2 antibody.
Results
(1) The prepared CD@R848@NP nanoparticles have strong stability, no obvious cytotoxicity, sustained release effect and increased release under acidic conditions. The load content (LC) and entrapment efficiency (EE) of R848 were (3.11 ±0.61)% and (65.36 ±3)%. (2) In vitro experiments showed that HP-β-CD modified nanoparticles could be better absorbed by macrophages, and in vivo localization experiments confirmed that they could be better located in tumor tissues. (3) CD@R848@NP combined with Anti-TNFR2 could eliminate MC38 tumor in mice, and there was no significant change in body weight. Hue results showed that the nanoparticles had no obvious toxicity to all organs. After 24 hours of administration, the secretion of IL-12 factor in blood of mice was significantly higher than that of other groups. The results of tumor histochemistry showed that the secretion of TNF α and IL-6 factors in CD@R848@NP was significantly higher than that in other groups.
Conclusions
PLGA nanoparticles encapsulated with R848 can effectively deliver drugs to tumor tissue and induce tumor-associated macrophages to polarize into M1 macrophages. On the other hand, TNFR2 antibodies can inhibit the activation of Treg cells, reduce immunosuppression in tumor microenvironment and eliminate tumor.
Legal entity responsible for the study
The authors.
Funding
The National Natural Science Foundation of China (82060308), Guizhou Immunotherapy Research Talent Base (RCJD2018-11).
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
146P - A Novel Allosteric Oral Immunotherapy Small Molecule Modulates Adenosine 2A Receptor Signaling and Restores Anti-Tumor Immune Responses
Presenter: David Pejoski
Session: Poster Display
147P - Pre-clinical evaluation and safety profile of the highly selective anti-VISTA antibody K01401-020
Presenter: Geneviève Gueguen Dorbes
Session: Poster Display
148P - HexaBody-OX40, a novel Fc_ receptor crosslinking-independent OX40-targeting antibody, exhibits agonistic activity in vitro and antitumor activity in vivo
Presenter: Kristel Kemper
Session: Poster Display
149P - HLA/SIRPa bispecifics-A novel multitarget therapeutic strategy to induce potent anti-tumor immune responses
Presenter: anahita rafiei
Session: Poster Display
150P - Chemotherapy in combination with Toll-like receptor agonism promoted antitumor immune response in triple negative breast cancer
Presenter: Eunice Dotse
Session: Poster Display
151P - Tumor organoid-derived TIL therapy for colorectal cancer
Presenter: Marc Leushacke
Session: Poster Display
152P - Discovery of best-in-class dual-acting A2AR/A2BR antagonists that are functional in high adenosine environment
Presenter: Nainesh Katagihallimath
Session: Poster Display
153P - Discovery of a Novel, Dual CD73 and PD-1 Targeting Multispecific Drug Fc-Conjugate (DFC) for the Treatment of Cancer
Presenter: James Levin
Session: Poster Display
154P - Computer-aided drug design based on CLDN4 ligand and its biological evaluation in ovarian cancer
Presenter: Yi Xu
Session: Poster Display
155P - A Phase 1 Study Exploring the Safety and Tolerability of the Small-Molecule PD-L1 Inhibitor INCB099280 in Select Advanced Solid Tumors
Presenter: Hans Prenen
Session: Poster Display