4.7 Article

Hyaluronic Acid Graft Polymers Displaying Peptide Antigen Modulate Dendritic Cell Response in Vitro

Journal

MOLECULAR PHARMACEUTICS
Volume 11, Issue 1, Pages 367-373

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/mp4003909

Keywords

peptides; hyaluronic acid; targeted delivery; dendritic cells; T cells

Funding

  1. NIH [1R56AI091996-01A1]
  2. KINBRE [P20 RR016475/P20 GM103418]

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A novel oxime grafting scheme was utilized to conjugate an ICAM-1 ligand (LABL), a cellular antigen ovalbumin (OVA), or both peptides simultaneously to hyaluronic acid (HA). Samples of HA only and the various peptide grafted HA were found to bind to dendritic cells (DCs). HA with grafted LABL and OVA showed the greatest binding to DCs. Dendritic cells treated with HA, HA with grafted LABL, or HA with grafted LABL and OVA significantly suppressed T cell and DC conjugate formation and T cell proliferation and reduced proinflammatory cytokine production compared to untreated cells. These results suggest that HA serves as an effective backbone for multivalent ligand presentation for inhibiting T cell response to antigen presentation. In addition, multivalent display of both antigen and an ICAM-1 inhibitor (LABL) may enhance binding to DCs and could potentially disrupt cellular signaling leading to auto-immunity.

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