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利用多种杂交纳米粒子同时捕获和原位分析循环肿瘤细胞。

Simultaneous capture and in situ analysis of circulating tumor cells using multiple hybrid nanoparticles.

机构信息

In Vitro Diagnostics Lab, Bio Research Center, Samsung Advanced Institute of Technology (SAIT), Samsung Electronics Co., Ltd., Kyunggi-do 446-712, Republic of Korea.

出版信息

Biosens Bioelectron. 2013 Sep 15;47:508-14. doi: 10.1016/j.bios.2013.03.040. Epub 2013 Apr 3.

Abstract

Using hybrid nanoparticles (HNPs), we demonstrate simultaneous capture, in situ protein expression analysis, and cellular phenotype identification of circulating tumor cells (CTCs). Each HNP consists of three parts: (i) antibodies that bind specifically to a known biomarker for CTCs, (ii) a quantum dot that emits fluorescence signals, and (iii) biotinylated DNA that allows capture and release of CTC-HNP complex to an in-house developed capture & recovery chip (CRC). To evaluate our approach, cells representative of different breast cancer subtypes (MCF-7: luminal; SK-BR-3: HER2; and MDA-MB-231: basal-like) were captured onto CRC and expressions of EpCAM, HER2, and EGFR were detected concurrently. The average capture efficiency of CTCs was 87.5% with identification accuracy of 92.4%. Subsequently, by cleaving the DNA portion with restriction enzymes, captured cells were released at efficiencies of 86.1%. Further studies showed that these recovered cells are viable and can proliferate in vitro. Using HNPs, it is possible to count, analyze in situ protein expression, and culture CTCs, all from the same set of cells, enabling a wide range of molecular- and cellular-based studies using CTCs.

摘要

利用杂交纳米颗粒 (HNPs),我们实现了对循环肿瘤细胞 (CTC) 的同时捕获、原位蛋白质表达分析和细胞表型鉴定。每个 HNP 由三部分组成:(i) 特异性结合 CTC 已知生物标志物的抗体,(ii) 发出荧光信号的量子点,和 (iii) 生物素化 DNA,允许捕获和释放 CTC-HNP 复合物到内部开发的捕获和回收芯片 (CRC)。为了评估我们的方法,我们捕获了具有不同乳腺癌亚型代表性的细胞(MCF-7:管腔;SK-BR-3:HER2;和 MDA-MB-231:基底样)到 CRC 上,并同时检测 EpCAM、HER2 和 EGFR 的表达。CTC 的平均捕获效率为 87.5%,识别准确率为 92.4%。随后,通过用限制性内切酶切割 DNA 部分,以 86.1%的效率释放捕获的细胞。进一步的研究表明,这些回收的细胞是有活力的,可以在体外增殖。利用 HNPs,有可能对 CTC 进行计数、原位蛋白质表达分析和培养,所有这些都可以从同一组细胞中进行,从而能够使用 CTC 进行广泛的基于分子和细胞的研究。

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