Laboratory of Nano-Bioengineering, National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoye Shosse 31, 115409, Moscow, Russian Federation.
Institute of Spectroscopy, Russian Academy of Sciences, Fizicheskaya Str. 5, 108840, Troitsk, Moscow region, Russian Federation.
Sci Rep. 2019 Jun 19;9(1):8745. doi: 10.1038/s41598-019-45166-3.
Circulating cancer markers are metabolic products found in body fluids of cancer patients, which are specific for a certain type of malignant tumors. Cancer marker detection plays a key role in cancer diagnosis, treatment, and disease monitoring. The growing need for early cancer diagnosis requires quick and sensitive analytical approaches to detection of cancer markers. The approach based on the photonic crystal surface mode (PC SM) detection has been developed as a label-free high-precision biosensing technique. It allows real-time monitoring of molecular and cellular interactions using independent recording of the total internal reflection angle and the excitation angle of the PC surface wave. We used the PC SM technique for simultaneous detection of the ovarian cancer marker cancer antigen 125 and two breast cancer markers, human epidermal growth factor receptor 2 and cancer antigen 15-3. The new assay is based on the real-time flow detection of specific interaction between the antigens and capture antibodies. Its particular advantage is the possibility of multichannel recording with the same chip, which can be used for multiplexed detection of several cancer markers in a single experiment. The developed approach demonstrates high specificity and sensitivity for detection of all three biomarkers.
循环肿瘤标志物是在癌症患者体液中发现的代谢产物,对特定类型的恶性肿瘤具有特异性。肿瘤标志物的检测在癌症的诊断、治疗和疾病监测中起着关键作用。对早期癌症诊断的需求不断增长,这就需要快速、灵敏的分析方法来检测肿瘤标志物。基于光子晶体表面模式(PC SM)检测的方法已被开发为一种无标记的高精度生物传感技术。它允许使用独立记录全内反射角和 PC 表面波激发角来实时监测分子和细胞相互作用。我们使用 PC SM 技术同时检测卵巢癌标志物癌抗原 125 和两种乳腺癌标志物,即人类表皮生长因子受体 2 和癌抗原 15-3。新的检测方法基于抗原和捕获抗体之间特异性相互作用的实时流动检测。其特别的优点是可以在同一芯片上进行多通道记录,这可用于在单次实验中同时检测几种癌症标志物。所开发的方法对所有三种生物标志物的检测均具有高特异性和高灵敏度。