首页> 美国卫生研究院文献>Theranostics >The Architecture and Biological Function of Dual Antibody-Coated Dendrimers: Enhanced Control of Circulating Tumor cells and Their Hetero-Adhesion to Endothelial Cells for Metastasis Prevention
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The Architecture and Biological Function of Dual Antibody-Coated Dendrimers: Enhanced Control of Circulating Tumor cells and Their Hetero-Adhesion to Endothelial Cells for Metastasis Prevention

机译:双抗体包被的树状聚合物的结构和生物学功能:循环肿瘤细胞的增强控制及其对内皮细胞的异源粘附以预防转移。

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摘要

Dissemination of circulating tumor cells (CTCs) in blood and their hetero-adhesion to vascular endothelial bed of distant metastatic secondary organs are the critical steps to initiate cancer metastasis. The rarity of CTCs made their in vivo capture technically challenging. Current techniques by virtue of nanostructured scaffolds monovalently conjugated with a single antibody and/or drug seem less efficient and specific in capturing CTCs. Here, we report a novel platform developed to re-engineer nanoscale dendrimers for capturing CTCs in blood and interfering their adhesion to vascular endothelial bed to form micrometastatic foci. The nanoscale dendrimers were spatiotemporally accommodated with dual antibodies to target two surface biomarkers of colorectal CTCs. Physiochemical characterization, including spectra, fluorescence, electron microscope, dynamic light scattering, electrophoresis, and chromatography analyses, was conducted to demonstrate the successful conjugation of dual antibodies to dendrimer surface. The dual antibody conjugates were able to specifically recognize and bind CTCs, moderately down-regulate the activity of the captured CTCs by arresting them in S phase. The related adhesion assay displayed that the dual antibody conjugates interfered the hetero-adhesion of CTCs to fibronectin (Fn)-coated substrates and human umbilical vein endothelial cells (HUVECs). The dual antibody conjugates also showed the enhanced specificity and efficiency in vitro and in vivo in restraining CTCs in comparison with their single antibody counterparts. The present study showed a novel means to effectively prevent cancer metastatic initiation by binding, restraining CTCs and inhibiting their hetero-adhesion to blood vessels, not by traditional cytotoxic-killing of cancer cells.
机译:血液中循环肿瘤细胞(CTC)的扩散及其与远处转移性次要器官的血管内皮床的异质粘附是引发癌症转移的关键步骤。 CTC的稀有性使其在体内捕获技术上具有挑战性。当前的技术借助于与单一抗体和/或药物单价缀合的纳米结构支架似乎在捕获CTC方面效率较低且特异性较低。在这里,我们报告了一个新颖的平台,该平台旨在重新设计纳米级树枝状大分子,以捕获血液中的四氯化碳并干扰它们与血管内皮床的粘附,从而形成微转移灶。纳米级树状聚合物时空适应双重抗体,以靶向结直肠CTC的两个表面生物标记。进行了物理化学表征,包括光谱,荧光,电子显微镜,动态光散射,电泳和色谱分析,以证明双抗体成功结合到树状聚合物表面。双抗体偶联物能够特异性识别并结合CTC,通过将捕获的CTC捕获在S期中来适度下调捕获的CTC的活性。相关的粘附试验表明,双重抗体偶联物干扰了CTC对纤连蛋白(Fn)包被的基质和人脐静脉内皮细胞(HUVEC)的异种粘附。与单抗体对应物相比,双抗体缀合物在抑制CTC的体外和体内也显示出增强的特异性和效率。本研究显示了一种新颖的方法,该方法可通过结合,抑制CTC并抑制其与血管的异种粘附来有效地预防癌症的转移起始,而不是通过传统的癌细胞杀伤细胞的方法来进行。

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