Lipid Nanoparticle Delivery Alters the Adjuvanticity of the TLR9 Agonist CpG by Innate Immune Activation in Lymphoid Tissue

Author:

Zhong Zifu1,Chen Yong1,Deswarte Kim2,Lauwers Heleen1,De Lombaerde Emily1,Cui Xiaole3,Van Herck Simon1,Ye Tingting1,Gontsarik Mark1,Lienenklaus Stefan4,Sanders Niek N.3,Lambrecht Bart N.2,De Koker Stefaan5,De Geest Bruno G.1ORCID

Affiliation:

1. Department of Pharmaceutics Ghent University, Belgium Ottergemsesteenweg 460 Gent 9000 Belgium

2. Department of Internal Medicine and Pediatrics Ghent University VIB Center for Inflammation Research Technologiepark‐Zwijnaarde 71, Gent Ghent 9052 Belgium

3. Laboratory of Gene Therapy Ghent University, Belgium Heidestraat 19 Merelbeke 9820 Belgium

4. Institute for Laboratory Animal Science and Institute of Immunology Hannover Medical School 30625 Hannover Germany

5. eTheRNA Immunotherapies Niel 2845 Belgium

Abstract

AbstractPharmacological strategies to activate innate immune cells are of great relevance in the context of vaccine design and anticancer immune therapy, to mount broad immune responses able to clear infection and malignant cells. Synthetic CpG oligodeoxynucleotides (CpG‐ODNs) are short single‐stranded DNA molecules containing unmethylated CpG dinucleotides and a phosphorothioate backbone. Class B CpG ODNs activate robust innate immune responses through a TLR9‐dependent NF‐κB signaling pathway. This feature is attractive to exploit in the context of vaccine design and cancer immunotherapy. Soluble CpG‐ODNs cause hepatic toxicity, which reduces its therapeutic applicability. The formulation of class B CpG ODN1826 in lipid nanoparticles (LNPs) containing an ionizable cationic lipid that complexes CpG through electrostatic interaction is reported. Upon local administration, LNP‐formulated CpG drains to lymph nodes and triggers robust innate immune activation. Unformulated, soluble, CpG, by contrast, is unable to induce robust innate activation in draining lymph nodes and is distributed systemically. In a vaccination setting, LNP‐formulated CpG, admixed with a protein antigen, induces higher antigen‐specific antibody titers and T cell responses than antigen admixed with unformulated soluble CpG.

Funder

HORIZON EUROPE European Research Council

Fonds Wetenschappelijk Onderzoek

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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