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Controlled Delivery of Single or Multiple Antigens in Tolerogenic Nanoparticles Using Peptide-Polymer Bioconjugates.

Citation
Pearson, R. M., et al. “Controlled Delivery Of Single Or Multiple Antigens In Tolerogenic Nanoparticles Using Peptide-Polymer Bioconjugates.”. Molecular Therapy : The Journal Of The American Society Of Gene Therapy, pp. 1655-1664.
Center University of Michigan
Author Ryan M Pearson, Liam M Casey, Kevin R Hughes, Leon Z Wang, Madeleine G North, Daniel R Getts, Stephen D Miller, Lonnie D Shea
Keywords autoimmune disease, bioconjugation, drug delivery, Immune tolerance, multiple sclerosis, nanoparticle, regulatory T cells
Abstract

Polymeric nanoparticles (NPs) have demonstrated their potential to induce antigen (Ag)-specific immunological tolerance in multiple immune models and are at various stages of commercial development. Association of Ag with NPs is typically achieved through surface coupling or encapsulation methods. However, these methods have limitations that include high polydispersity, uncontrollable Ag loading and release, and possible immunogenicity. Here, using antigenic peptides conjugated to poly(lactide-co-glycolide), we developed Ag-polymer conjugate NPs (acNPs) with modular loading of single or multiple Ags, negligible burst release, and minimally exposed surface Ag. Tolerogenic responses of acNPs were studied in vitro to decouple the role of NP size, concentration, and Ag loading on regulatory T cell (Treg) induction. CD4CD25Foxp3 Treg induction was dependent on NP size, but CD25 expression of CD4 T cells was not. NP concentration and Ag loading could be modulated to achieve maximal levels of Treg induction. In relapsing-remitting experimental autoimmune encephalomyelitis (R-EAE), a murine model of multiple sclerosis, acNPs were effective in inhibiting disease induced by a single peptide or multiple peptides. The acNPs provide a simple, modular, and well-defined platform, and the NP physicochemical properties offer potential to design and answer complex mechanistic questions surrounding NP-induced tolerance.

Year of Publication
2017
Journal
Molecular therapy : the journal of the American Society of Gene Therapy
Volume
25
Issue
7
Number of Pages
1655-1664
Date Published
12/2017
ISSN Number
1525-0024
DOI
10.1016/j.ymthe.2017.04.015
Alternate Journal
Mol. Ther.
PMID
28479234
PMCID
PMC5498834
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