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靶向N-钙黏蛋白的DNA适配体的分离及利用双适配体高效捕获循环肿瘤细胞

Isolation of DNA aptamers targeting N-cadherin and high-efficiency capture of circulating tumor cells by using dual aptamers.

作者信息

Gao Tian, Ding Pi, Li Wenjing, Wang Zhili, Lin Qiao, Pei Renjun

机构信息

School of Nano-Tech and Nano-Bionics, University of Science and Technology of China, Hefei 230026, China.

出版信息

Nanoscale. 2020 Nov 19;12(44):22574-22585. doi: 10.1039/d0nr06180h.

Abstract

Circulating tumor cells (CTCs) acquire mesenchymal markers (e.g., N-cadherin) and lose epithelial markers (e.g., epithelial cell adhesion molecule, EpCAM) during the epithelial-mesenchymal transition (EMT) and are therefore ideal biomarkers of tumor metastasis. However, it is still a challenge to efficiently capture and detect circulating tumor cells with different phenotypes simultaneously. In this work, to obtain aptamers targeting N-cadherin in the native conformation on live cells, we established stable N-cadherin overexpressing cells (N-cadherin cells) and used these cells to identify a panel of N-cadherin-specific aptamers through the cell-SELEX approach. Two aptamer candidates obtained after 12 rounds of selection showed a low equilibrium dissociation constant in the nanomolar range, indicating high binding affinity. The truncated aptamer candidate NC3S showed the highest binding affinity to N-cadherin cells with a low Kd value of 20.08 nM. The SYL3C aptamer was reported to target cancer cell surface biomarker EpCAM. Then, we synthesized two kinds of aptamer-modified magnetic nanoparticles (SYL3C-MNPs and NC3S-MNPs). Both SYL3C and NC3S aptamers possess excellent capture specificity and efficiency for the target cells. The aptamer-MNP cocktail exhibits a considerable capture efficiency and sensitivity for rare cancer cells of epithelial and mesenchymal phenotypes. Furthermore, no CTCs were found in blood samples from healthy donors, while CTCs were successfully isolated by using the aptamer-MNP cocktail for 15 out of 16 samples collected from patients. In summary, the two kinds of aptamer-modified MNPs could be utilized as a promising tool for capturing CTCs from clinical samples.

摘要

循环肿瘤细胞(CTCs)在上皮-间质转化(EMT)过程中获得间质标志物(如N-钙黏蛋白)并丢失上皮标志物(如上皮细胞黏附分子,EpCAM),因此是肿瘤转移的理想生物标志物。然而,同时高效捕获和检测具有不同表型的循环肿瘤细胞仍然是一项挑战。在这项工作中,为了获得靶向活细胞上天然构象的N-钙黏蛋白的适配体,我们建立了稳定过表达N-钙黏蛋白的细胞(N-钙黏蛋白细胞),并通过细胞SELEX方法利用这些细胞鉴定了一组N-钙黏蛋白特异性适配体。经过12轮筛选获得的两个适配体候选物在纳摩尔范围内显示出低平衡解离常数,表明具有高结合亲和力。截短的适配体候选物NC3S对N-钙黏蛋白细胞表现出最高的结合亲和力,Kd值低至20.08 nM。据报道,SYL3C适配体靶向癌细胞表面生物标志物EpCAM。然后,我们合成了两种适配体修饰的磁性纳米颗粒(SYL3C-MNPs和NC3S-MNPs)。SYL3C和NC3S适配体对靶细胞均具有优异的捕获特异性和效率。适配体-MNP混合物对上皮和间质表型的稀有癌细胞表现出相当高的捕获效率和灵敏度。此外,在健康供体的血液样本中未发现CTCs,而使用适配体-MNP混合物从16例患者采集的样本中成功分离出15例CTCs。总之,这两种适配体修饰的MNPs可作为从临床样本中捕获CTCs的有前景的工具。

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