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Molecularly Imprinted Polymer Nanoparticles as Potential Synthetic Antibodies for Immunoprotection against HIV

机译:分子印迹聚合物纳米颗粒作为潜在的合成抗体免疫保护抗体

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摘要

We describe the preparation and characterization of synthetic antibodies based on molecularly imprinted polymer nanoparticles (MIP-NPs) for the recognition and binding of the highly conserved and specific peptide motif SWSNKS (3S), an epitope of the envelope glycoprotein 41 (gp41) of human immunodeficiency virus type 1 (HIV-1). This motif is implicated in the decline of CD4(+) T cells and leads to the deterioration of the immune system during HIV infection. Therefore, the development of MIP-NPs that can target and block the 3S peptide to prevent subsequent cascade interactions directed toward the killing of CD4(+) T cells is of prime importance. Because most antibodies recognize their protein antigen via a conformational or structured epitope (as opposed to a linear epitope commonly used for molecular imprinting), we employed protein molecular modeling to design our template epitope so that it mimics the three-dimensional structure fold of 3S in gp41. The resulting template peptide corresponds to a cyclic structure composed of CGSWSNKSC, with the 3S motif well orientated for imprinting. MIP-NPs with a size of 65 nm were obtained by solid-phase synthesis and were water-soluble. They were prepared by a judicious combination of multiple functional monomers affording hydrogen bonding, ionic, pi-pi, and hydrophobic interactions, conferring high affinity and selectivity toward both the cyclic peptide and the whole gp41 protein. These results suggest that our MIPs could potentially be used for blocking the function of the 3S motif on the virus.
机译:我们描述了基于分子印迹聚合物纳米粒子(MIP-NPS)的合成抗体的制备和表征,用于高度保守和特异性肽基序(3S),封套糖蛋白41(GP41)的封装糖蛋白41(GP41)的表位的识别和结合。免疫缺陷病毒类型1(HIV-1)。该基序涉及CD4(+)T细胞的下降,并导致免疫系统在艾滋病毒感染期间的恶化。因此,可以靶向和阻断3S肽以防止针对杀死CD4(+)T细胞的后续级联相互作用的MIP-NPS的发育是主要的重要性。因为大多数抗体通过构象或结构化表位识别它们的蛋白质抗原(而不是常用于分子印迹的线性表位),所以我们使用蛋白质分子模拟来设计我们的模板表位,使其模拟3s的三维结构折叠GP41。所得的模板肽对应于由CGSWSNKSC组成的循环结构,其中3S基序良好良好地用于压印。通过固相合成获得尺寸为65nm的MIP-nP,并含水溶性。它们是由多种官能单体的明智组合制备,所述多种功能单体提供氢键,离子,PI-PI和疏水相互作用,赋予环肽和整个GP41蛋白的高亲和力和选择性。这些结果表明我们的MIPS可能用于阻止3S主题在病毒上的功能。

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  • 来源
    《ACS applied materials & interfaces》 |2019年第10期|共8页
  • 作者单位

    Shanghai Univ Ctr Mol Recognit &

    Biosensing Sch Life Sci Shanghai 200444 Peoples R China;

    Univ Technol Compiegne Sorbonne Univ CNRS Enzyme &

    Cell Engn Lab Rue Roger Couttolenc CS 60319 F-60203 Compiegne France;

    Univ Technol Compiegne Sorbonne Univ CNRS Enzyme &

    Cell Engn Lab Rue Roger Couttolenc CS 60319 F-60203 Compiegne France;

    UPMC Paris 6 Sorbonne Univ Ctr Immunol &

    Malad Infect CIMI Paris INSERM U1135 CNRS ERL8255 Blvd Hop F-75013 Paris France;

    UPMC Paris 6 Sorbonne Univ Ctr Immunol &

    Malad Infect CIMI Paris INSERM U1135 CNRS ERL8255 Blvd Hop F-75013 Paris France;

    Univ Technol Compiegne Sorbonne Univ CNRS Enzyme &

    Cell Engn Lab Rue Roger Couttolenc CS 60319 F-60203 Compiegne France;

    Univ Technol Compiegne Sorbonne Univ CNRS Enzyme &

    Cell Engn Lab Rue Roger Couttolenc CS 60319 F-60203 Compiegne France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    3S peptide; epitope; gp41; HIV; molecularly imprinted polymer; solid-phase synthesis;

    机译:3S肽;表位;GP41;HIV;分子印迹聚合物;固相合成;

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