首页> 外文期刊>BioMed research international >Subtractive Cell-SELEX Selection of DNA Aptamers Binding Specifically and Selectively to Hepatocellular Carcinoma Cells with High Metastatic Potential
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Subtractive Cell-SELEX Selection of DNA Aptamers Binding Specifically and Selectively to Hepatocellular Carcinoma Cells with High Metastatic Potential

机译:降解细胞 - SELEX选择DNA适体,具体且选择性地具有高转移性潜力的肝细胞癌细胞

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Relapse and metastasis are two key risk factors of hepatocellular carcinoma (HCC) prognosis; thus, it is emergent to develop an early and accurate detection method for prognostic evaluation of HCC after surgery. In this study, we sought to acquire oligonucleotide DNA aptamers that specifically bind to HCC cells with high metastatic potential. Two HCC cell lines derived from the same genetic background but with different metastatic potential were employed: MHCC97L (low metastatic properties) as subtractive targets and HCCLM9 (high metastatic properties) as screening targets. To mimic a fluid combining environment, initial DNA aptamers library was firstly labelled with magnetic nanoparticles using biotin-streptavidin system and then applied for aptamers selection. Through 10-round selection with subtractive Cell-SELEX, six aptamers, LY-1, LY-13, LY-46, LY-32, LY-27/45, and LY-7/43, display high affinity to HCCLM9 cells and do not bind to MHCC97L cells, as well as other tumor cell fines, including breast cancer, lung cancer, colon adenocarcinoma, gastric cancer, and cervical cancer, suggesting high specificity for HCCLM9 cells. Thus, the aptamers generated here will provide solid basis for identifying new diagnostic targets to detect HCC metastasis and also may provide valuable clues for developing new targeted therapeutics.
机译:复发和转移是肝细胞癌(HCC)预后的两个关键危险因素;因此,它是在手术后开发早期和准确的检测方法,用于术后HCC预后评估。在这项研究中,我们寻求获得具有高转移潜力的特异性结合HCC细胞的寡核苷酸DNA适体。使用来自相同遗传背景但具有不同转移电位的HCC细胞系:MHCC97L(低转移性)作为减去靶标和HCCLM9(高转移性)作为筛选靶标。为了模拟流体组合环境,首先使用生物素 - 链霉抗生物素蛋白系统用磁性纳米粒子标记初始DNA适体文库,然后施用于适体选择。通过10轮选择具有减去细胞 - SELEX,六个适体,LY-1,LY-13,LY-46,LY-32,LY-27/45和LY-7/43,对HClM9细胞显示出高亲和力不要与MHCC97L细胞结合,以及其他肿瘤细胞细胞,包括乳腺癌,肺癌,结肠腺癌,胃癌和宫颈癌,表明HClM9细胞的高特异性。因此,此处产生的适体将提供用于鉴定用于检测HCC转移的新诊断靶标的固体基础,并且还可以提供用于开发新的靶向治疗的有价值的线索。

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