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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Ex vivo and in vivo capture and deactivation of circulating tumor cells by dual-antibody-coated nanomaterials
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Ex vivo and in vivo capture and deactivation of circulating tumor cells by dual-antibody-coated nanomaterials

机译:双抗体涂层纳米材料离体和体内捕获循环肿瘤细胞并使其失活

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Circulating tumor cells (CTCs) have been detected by us and others in cancer patient blood. However, little is known about how to specifically capture and deactivate CTCs in vivo, which may lead to successful metastasis prevention in asymptomatic cancer survivors after surgery. We hypothesize that the dual antibody conjugates may have the advantage of capturing CTCs specifically over their single antibody counterparts. Here we show that the surface-functionalized dendrimers can be sequentially coated with two antibodies directed to surface biomarkers (EpCAM and Slex) of human colorectal CTCs. The dual antibody-coated dendrimers exhibit a significantly enhanced specificity in capturing CTCs in the presence of interfering blood cells, and in both eight-patient bloods and nude mice administered with the labeled CTCs in comparison to their single antibody-coated counterparts. The dual antibody-coated conjugates down-regulate the captured CTCs. This study provides the first conceptual evidence that two antibodies can be biocompatibly conjugated to a nanomaterial to capture and down-regulate CTCs in vivo with the enhanced specificity. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们和其他人已在癌症患者的血液中检测到循环肿瘤细胞(CTC)。但是,关于如何在体内特异性捕获和灭活CTC知之甚少,这可能导致无症状癌症幸存者在手术后成功地预防转移。我们假设双抗体偶联物可能具有捕获CTC的优势,优于其单抗体对应物。在这里,我们显示表面功能化的树状聚合物可以依次涂有两种针对人结肠直肠CTC的表面生物标记(EpCAM和Slex)的抗体。与单抗体包被的对应物相比,双抗体包被的树状聚合物在存在干扰血细胞的情况下以及在用标记的CTC给药的八名患者血液和裸鼠中捕获CTC时均表现出明显增强的特异性。双抗体包被的结合物下调捕获的CTC。这项研究提供了第一个概念性证据,证明可以将两种抗体生物相容地偶联到纳米材料上,以增强的特异性在体内捕获和下调CTC。 (C)2015 Elsevier B.V.保留所有权利。

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