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Towards Nonspecific Detection of Malignant Cervical Cells with Fluorescent Silica Beads

机译:荧光硅珠对宫颈癌细胞的非特异性检测

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To date, the methods for detection of cancer cells are mostly based on traditional techniques used in biology, such as visual identification of malignant changes, cell-growth analysis, specific ligand-receptor labeling, or genetic tests. Despite being well developed, these methods are either insufficiently accurate or require a lengthy complicated analysis. A search for alternative methods for the detection of cancer cells may be a fruitful approach. Proposed here is a novel method for the detection of cancer cells in vitro, which is based on nonspecific adhesion of silica beads to cells. First, atomic force microscopy is used to study the adhesion of single silica beads to malignant and normal cells cultured from human cervix. It is found that adhesion depends on the time of contact, and can be statistically different for malignant and normal cells. Using these data, an optical method utilizing fluorescent silica beads is developed, which is based on detection of the difference in the number of adherent particles. The method is tested using primary cells cultured from cervical tissues of three healthy individuals and three patients with cervical cancer. The method shows sufficiently high sensitivity for cancer to make it interesting to perform further statistical tests.
机译:迄今为止,检测癌细胞的方法主要是基于生物学中使用的传统技术,例如肉眼观察到的恶性变化,细胞生长分析,特异性配体受体标记或基因检测。尽管方法完善,但这些方法要么准确性不足,要么需要冗长的复杂分析。寻找用于检测癌细胞的替代方法可能是富有成果的方法。本文提出了一种新的体外检测癌细胞的方法,该方法基于二氧化硅珠对细胞的非特异性粘附。首先,原子力显微镜用于研究单个二氧化硅微珠对从人宫颈培养的恶性和正常细胞的粘附。发现粘附取决于接触时间,并且对于恶性和正常细胞在统计学上可能不同。利用这些数据,开发了一种利用荧光二氧化硅珠的光学方法,该方法基于对粘附颗粒数量差异的检测。使用从三个健康个体和三个宫颈癌患者的宫颈组织中培养的原代细胞测试该方法。该方法显示出对癌症足够高的敏感性,使得进行进一步的统计学检验变得有趣。

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