Gulati Payal, Kaur Prabhjot, Rajam M V, Srivastava Tapasya, Mishra Prabhash, Islam S S
Centre for Nanoscience and Nanotechnology, Jamia Millia Islamia (A Central University), New Delhi, India.
Department of Genetics, Delhi University, New Delhi, India.
Anal Biochem. 2018 Sep 15;557:111-119. doi: 10.1016/j.ab.2018.07.020. Epub 2018 Jul 23.
A label-free electrochemical immunosensor is fabricated using high quality single-walled carbon nanotube for early detection of leukemia cells. It is based on P-glycoprotein (P-gp) expression level detection; by effective surface immune-complex formation with the monoclonal anti-P-glycoprotein antibodies bound to an epoxy modified nanotube surface. The expression level of P-gp on the leukemia cell surface detected by cyclic voltammetry is in good agreement with immunofluorescence microscopy studies. The proposed biosensor could be used for the detection of P-gp expressing cells within a linear range of 1.5 × 10 cells/mL - 1.5 × 10 cells/mL where lowest detection limit is found to be 19 cells/mL. A calibration plot of peak current v/s the logarithm of concentration of leukemia K562 cells is found linear with a regression coefficient of 0.935. This strategy promises high sensitivity, low-cost, fast, and repeatable recognition of cancer cells. The immunosensor was stable for three weeks and showed good precision with the relative standard deviation (RSD) of 3.57% and 2.12% assayed at the cell concentrations of 1.5 × 10 and 1.5 × 10 cells mL respectively. The proposed single-wall carbon nanotube based immunosensor showed better analytical performance in comparison to similar leukemia electrochemical sensors reported.
一种无标记电化学免疫传感器采用高质量单壁碳纳米管制备,用于白血病细胞的早期检测。它基于P-糖蛋白(P-gp)表达水平检测;通过与结合在环氧修饰纳米管表面的单克隆抗P-糖蛋白抗体有效形成表面免疫复合物来实现。通过循环伏安法检测白血病细胞表面P-gp的表达水平,与免疫荧光显微镜研究结果高度一致。所提出的生物传感器可用于检测P-gp表达细胞,线性范围为1.5×10⁴细胞/mL - 1.5×10⁶细胞/mL。最低检测限为19细胞/mL。白血病K562细胞浓度对数与峰值电流的校准曲线呈线性,回归系数为0.935。该策略有望实现对癌细胞的高灵敏度、低成本、快速且可重复的识别。该免疫传感器在三周内保持稳定,在细胞浓度分别为1.5×10⁴和1.5×10⁶细胞/mL时进行测定,相对标准偏差(RSD)分别为3.57%和2.12%,显示出良好的精密度。与报道的类似白血病电化学传感器相比,所提出的基于单壁碳纳米管的免疫传感器表现出更好的分析性能。