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Synthesis of Keratin-based Nanofiber for Biomedical Engineering
Published on: February 7, 2016
A Supramolecular Vaccine Platform Based on α-Helical Peptide Nanofibers
Yaoying Wu1, Pamela K Norberg2, Elizabeth A Reap2
1Department of Biomedical Engineering, Duke University, Durham, North Carolina, 27708, United States.
Abstract:
A supramolecular peptide vaccine system was designed in which epitope-bearing peptides self-assemble into elongated nanofibers composed almost entirely of alpha-helical structure. The nanofibers were readily internalized by antigen presenting cells and produced robust antibody, CD4+ T-cell, and CD8+ T-cell responses without supplemental adjuvants in mice. Epitopes studied included a cancer B-cell epitope from the epidermal growth factor receptor class III variant (EGFRvIII), the universal CD4+ T-cell epitope PADRE, and the model CD8+ T-cell epitope SIINFEKL, each of which could be incorporated into supramolecular multi-epitope nanofibers in a modular fashion.
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