Department of Chemistry, Jackson State University, Jackson, Mississippi 39217, USA.
ACS Nano. 2010 Mar 23;4(3):1739-49. doi: 10.1021/nn901742q.
Breast cancer is the most common cancer among women, and it is the second leading cause of cancer deaths in women today. The key to the effective and ultimately successful treatment of diseases such as cancer is early and accurate diagnosis. Driven by the need, in this article, we report for the first time a simple colorimetric and highly sensitive two-photon scattering assay for highly selective and sensitive detection of breast cancer SK-BR-3 cell lines at a 100 cells/mL level using a multifunctional (monoclonal anti-HER2/c-erb-2 antibody and S6 RNA aptamer-conjugated) oval-shaped gold-nanoparticle-based nanoconjugate. When multifunctional oval-shaped gold nanoparticles are mixed with the breast cancer SK-BR-3 cell line, a distinct color change occurs and two-photon scattering intensity increases by about 13 times. Experimental data with the HaCaT noncancerous cell line, as well as with MDA-MB-231 breast cancer cell line, clearly demonstrated that our assay was highly sensitive to SK-BR-3 and it was able to distinguish from other breast cancer cell lines that express low levels of HER2. The mechanism of selectivity and the assay's response change have been discussed. Our experimental results reported here open up a new possibility of rapid, easy, and reliable diagnosis of cancer cell lines by monitoring the colorimetric change and measuring TPS intensity from multifunctional gold nanosystems.
乳腺癌是女性最常见的癌症,也是当今女性癌症死亡的第二大主要原因。有效且最终成功治疗癌症等疾病的关键是早期、准确的诊断。受此需求的驱动,在本文中,我们首次报道了一种简单的比色和高灵敏度的双光子散射分析方法,使用多功能(单克隆抗 HER2/c-erb-2 抗体和 S6 RNA 适体偶联)椭圆形金纳米粒子基纳米复合物,以 100 个细胞/mL 的水平高度选择性和灵敏地检测乳腺癌 SK-BR-3 细胞系。当多功能椭圆形金纳米粒子与乳腺癌 SK-BR-3 细胞系混合时,会发生明显的颜色变化,双光子散射强度增加约 13 倍。与 HaCaT 非癌细胞系以及 MDA-MB-231 乳腺癌细胞系的实验数据清楚地表明,我们的测定法对 SK-BR-3 非常敏感,能够与表达低水平 HER2 的其他乳腺癌细胞系区分开来。讨论了选择性的机制和分析方法的响应变化。我们在这里报告的实验结果为通过监测比色变化和测量多功能金纳米系统的 TPS 强度来快速、轻松和可靠地诊断癌细胞系开辟了新的可能性。