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Targeted oral delivery of BmpB vaccine using porous PLGA microparticles coated with M cell homing peptide-coupled chitosan

机译:使用多孔PLGA微粒涂覆有M细胞归巢肽偶联的壳聚糖的多孔PLGA微粒进行靶向口服递送BMPB疫苗

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摘要

M cells, the key players of the mucosal immunity induction, are one of the intestinal barriers for the efficient delivery of vaccines to mucosal immune tissues. To overcome the barrier, we have developed an efficient oral vaccine carrier that constitutes poly (lactic-co-glycolic acid) (PLGA) microparticle coated with M cell targeting peptide. In this study, a membrane protein B of Brachyspira hyodysenteriae (BmpB) as a model vaccine against swine dysentery was loaded into porous PLGA microparticles (MPs). The PLGA MPs were further coated with the water-soluble chitosan (WSC) conjugated with M cell homing peptide (CKS9) to prepare BmpB-CKS9-WSC-PLGA MPs. Oral immunization of BmpB vaccine with CKS9-WSC-PLGA MPs in mice showed elevated secretory IgA responses in the mucosal tissues and systemic IgG antibody responses, providing a complete immune response. Specifically, the immunization with these MPs demonstrated to induce both Th1- and Th2-type responses based on elevated IgG1 and IgG2a titers. The elevated immune responses were attributed to the enhanced M cell targeting and transcytosis ability of CKS9-WSC-PLGA MPs to Peyer's patch regions. The high binding affinity of CKS9-WSC-PLGA MPs with the M cells to enter into the Peyer's patch regions of mouse small intestine was investigated by closed ileal loop assay and it was further confirmed by confocal laser scanning microscopy. These results suggest that the M cell targeting approach used in this study is a promising tool for targeted oral vaccine delivery.
机译:M细胞是粘膜免疫诱导的关键球员,是用于有效地向粘膜免疫组织提供疫苗的肠道障碍之一。为了克服屏障,我们开发了一种有效的口腔疫苗载体,其构成聚(乳酸二乙醇酸)(PLGA)微粒涂覆有M细胞靶向肽。在该研究中,将Brachyspira Hyodysenteriae(BMPB)的膜蛋白B作为模型疫苗加载到猪痢疾中的模型疫苗中,加载到多孔PLGA微粒(MPS)中。将PLGA MPS进一步涂覆与与M细胞归肽(CKS9)缀合的水溶性壳聚糖(WSC),以制备BMPB-CKS9-WSC-PLGA MPS。对小鼠中CKS9-WSC-PLGA MPS的BMPB疫苗的口服免疫显示粘膜组织和系统性IgG抗体反应中的分泌IgA反应升高,提供完全的免疫应答。具体地,对这些MP的免疫证明基于升高的IgG1和IgG2A滴度诱导Th1和Th2型反应。升高的免疫反应归因于CKS9-WSC-PLGA MPS至Peyer贴片区域的增强的M细胞靶向和转刺能力。通过闭合的髂骨环形测定研究了CKS9-WSC-PLGA MP与M细胞进入PEYER的小肠贴片区域的高结合亲和力,并通过共聚焦激光扫描显微镜进一步证实了它。这些结果表明本研究中使用的M细胞靶向方法是针对目标口腔疫苗递送的有希望的工具。

著录项

  • 来源
    《Biomaterials》 |2014年第7期|共9页
  • 作者单位

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

    Department of Pharmaceutics School of Pharmacy China Pharmaceutical University Nanjing 210009;

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

    Department of Polymer Science and Engineering Sunchon National University Sunchon 540-742 South;

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

    Department of Agricultural Biotechnology and Research Institute for Agriculture and Life Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    BmpB; Chitosan; M cell homing peptide; Oral vaccine delivery; PLGA microparticles;

    机译:BMPB;壳聚糖;M细胞归肽;口腔疫苗递送;PLGA微粒;

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