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Promoting Multivalent Antibody-Antigen Interactions by Tethering Antibody Molecules on a PEGylated Dendrimer-Supported Lipid Bilayer

机译:通过培养抗体分子促进多价抗体 - 抗原相互作用在聚乙二醇化的树枝状蛋白负载的脂质双层

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摘要

To efficiently isolate maximal quantity of circulating tumor cells (CTCs) and circulating tumor cell microembolis (CTMs) from patient blood by antibody coated microfluidics, a multifunctional, pegylated polyamidoamine-dendrimers conjugated supported lipid bilayer surface construct was proposed to enhance accessibility of antibody molecules to the antigen molecules on target CTCs. The combination of a hydrated, stretchable dendrimer and a laterally mobile supported lipid bilayer (SLB) provide attached antibody molecules with 2.5-dimensional chain movement, achieving multivalency between the surface antibody and cell antigen molecules. An over 170% enhancement is distinctive for Panc-1 cells that expresses low antigen level. Of seven pancreatic ductal adenocarcinoma patients, an average 440 single CTCs and 90 CTMs were collected in 2 mL of peripheral blood, which were 1.6 times and 2.3 times more, than those captured by the SLB-only microfluidics. In summary, we have demonstrated a material design to enhance multivalent antibody antigen interaction, which is useful for rare cell enrichment and cancer detection.
机译:为了通过抗体涂覆的微流体,有效地分离循环肿瘤细胞(CTC)和循环肿瘤细胞微栓(CTMS)的循环量和循环肿瘤细胞微栓(CTMS),提出了多功能的聚乙二醇化的聚酰胺 - 树枝状大分子缀合的负载的脂质双层表面构建体,以提高抗体分子的可及性靶标CTC上的抗原分子。水合,可拉伸的树突和横向移动支持的脂质双层(SLB)的组合提供了具有2.5维链运动的连接抗体分子,在表面抗体和细胞抗原分子之间实现多价。超过170%的增强对于表达低抗原水平的Panc-1细胞是独特的。在七个胰腺导管腺癌患者中,在2ml外周血中收集了平均440个单次CTC和90ctms,比SLB的微流体捕获的那些,比其捕获的1.6倍和2.3倍。总之,我们已经证明了一种材料设计,以增强多价抗体抗原相互作用,这对于稀有细胞富集和癌症检测可有用。

著录项

  • 来源
    《Biomacromolecules》 |2018年第2期|共12页
  • 作者单位

    Acad Sinica Genom Res Ctr 128 Sec 2 Acad Rd Taipei 115 Taiwan;

    Acad Sinica Genom Res Ctr 128 Sec 2 Acad Rd Taipei 115 Taiwan;

    Acad Sinica Genom Res Ctr 128 Sec 2 Acad Rd Taipei 115 Taiwan;

    Acad Sinica Genom Res Ctr 128 Sec 2 Acad Rd Taipei 115 Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

  • 入库时间 2022-08-20 00:00:44

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