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用于高性能循环肿瘤细胞分离的白细胞排斥仿生免疫磁性纳滤平台。

Leukocyte-Repelling Biomimetic Immunomagnetic Nanoplatform for High-Performance Circulating Tumor Cells Isolation.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, 610064, P. R. China.

出版信息

Small. 2019 Apr;15(17):e1900558. doi: 10.1002/smll.201900558. Epub 2019 Apr 1.

DOI:10.1002/smll.201900558
PMID:30932344
Abstract

Downstream studies of circulating tumor cells (CTCs), which may provide indicative evaluation information for therapeutic efficacy, cancer metastases, and cancer prognosis, are seriously hindered by the poor purity of enriched CTCs as large amounts of interfering leukocytes still nonspecifically bind to the isolation platform. In this work, biomimetic immunomagnetic nanoparticles (BIMNs) with the following features are designed: i) the leukocyte membrane camouflage, which could greatly reduce homologous leukocyte interaction and actualize high-purity CTCs isolation, is easily extracted by graphene nanosheets; ii) facile antibody conjugation can be achieved through the "insertion" of biotinylated lipid molecules into leukocyte-membrane-coated nanoparticles and streptavidin conjunction; iii) layer-by-layer assembly techniques could integrate high-magnetization Fe O nanoparticles and graphene nanosheets efficiently. Consequently, the resulting BIMNs achieve a capture efficiency above 85.0% and CTCs purity higher than 94.4% from 1 mL blood with 20-200 CTCs after 2 min incubation. Besides, 98.0% of the isolated CTCs remain viable and can be directly cultured in vitro. Moreover, application of the BIMNs to cancer patients' peripheral blood shows good reproducibility (mean relative standard deviation 8.7 ± 5.6%). All results above suggest that the novel biomimetic nanoplatform may serve as a promising tool for CTCs enrichment and detection from clinical samples.

摘要

循环肿瘤细胞(CTCs)的下游研究可能为治疗效果、癌症转移和癌症预后提供指示性评估信息,但由于大量干扰白细胞仍然非特异性地结合到分离平台上,富集 CTC 的纯度较差,严重阻碍了其发展。在这项工作中,设计了具有以下特点的仿生免疫磁性纳米粒子(BIMN):i)通过石墨烯纳米片很容易提取的白细胞膜伪装,可以大大减少同源白细胞的相互作用,实现高纯度 CTC 的分离;ii)通过将生物素化脂质分子“插入”到白细胞膜包覆的纳米粒子中并与链霉亲和素结合,可以实现简单的抗体偶联;iii)层层组装技术可以有效地整合高磁化 Fe3O4 纳米粒子和石墨烯纳米片。因此,所得的 BIMN 可以在 2 分钟孵育后从 1 mL 含有 20-200 个 CTC 的血液中实现 85.0%以上的捕获效率和高于 94.4%的 CTC 纯度。此外,分离的 98.0%CTC 仍然存活,可以直接在体外培养。此外,该 BIMN 在癌症患者外周血中的应用表现出良好的重现性(平均相对标准偏差为 8.7±5.6%)。所有这些结果表明,新型仿生纳米平台可能成为从临床样本中富集和检测 CTC 的有前途的工具。

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