Application of radially grown ZnO nanowires on poly-l-lactide microfibers complexed with a tumor antigen for cancer immunotherapy

Prashant Sharma, Ji Beom Shin, Bum Chul Park, Jae Won Lee, Sang Won Byun, Na Yoon Jang, Yu Jin Kim, Yuri Kim, Young Keun Kim, Nam Hyuk Cho

    Research output: Contribution to journalArticlepeer-review

    37 Citations (Scopus)

    Abstract

    Zinc oxide (ZnO)-based nanocomposites have shown promising potential for various biomedical applications, including vaccine development, owing to their multifunctionality and biocompatibility. Here, we synthesized radially grown ZnO nanowires (NWs) on poly-l-lactic acid (PLLA) microfibers with unique 3-dimensional structure and applied them as therapeutic cancer vaccines. This inorganic-organic hybrid nanocomposite has mild cellular toxicity but efficiently delivers a tumor antigen into dendritic cells, cellular bridges between innate and adaptive immunity, to stimulate them to express inflammatory cytokines and activation surface markers. We also demonstrated that the hybrid nanocomposites successfully induce tumor antigen-specific cellular immunity and significantly inhibit tumor growth in vivo. ZnO NWs on PLLA fibers systemically reduced immune suppressive T Reg cells and enhanced the infiltration of T cells into tumor tissues, compared to mice immunized with PLLA fibers coated with the antigen. Our current findings open a new avenue in extending the biomedical application of inorganic metal oxide-inert organic hybrid nanocomposites as a novel vaccine platform.

    Original languageEnglish
    Pages (from-to)4591-4600
    Number of pages10
    JournalNanoscale
    Volume11
    Issue number10
    DOIs
    Publication statusPublished - 2019 Mar 14

    Bibliographical note

    Funding Information:
    This research was supported by Nano & Material Technology Development Program through the National Research Foundation of Korea (No. 2014M3A7B4052192). P. S., J. W. L., and N. Y. J. received a scholarship from the BK21-plus education program provided by the National Research Foundation of Korea.

    Publisher Copyright:
    © 2019 The Royal Society of Chemistry.

    ASJC Scopus subject areas

    • General Materials Science

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