Department of Chemistry, Payame Noor University, 19395-4697, Tehran, Iran.
Department of Biology, Payame Noor University, Tehran, Iran.
Nanotechnology. 2022 Oct 19;34(1). doi: 10.1088/1361-6528/ac8996.
Erlotinib is a potent and highly specific tyrosine kinase inhibitor with the hindering effects on the growth of cancer cells. An electrochemical sensor with the great sensitivity and selectivity was fabricated for determining erlotinib by using a graphite rod electrode modified by the nitrogen-doped graphene quantum dots (N-GQDs) and a ternary nanohybrid comprising copper nanoparticles, polyaniline, along with graphene oxide (N-GQDs/CuNPs-PANI@GO) for the first time. The establishment of PANI and CuNPs was done simultaneously on the GO surface by theoxidative polymerization method. The morphological characteristics and elemental structure of the synthesized nanoparticles were examined by some microscopy techniques and x-ray energy/diffraction methods. The fabricated sensor represented the electrocatalytic activity towards erlotinib with a linear detection range from 1.0 nM to 35.0M, a detection limit of 0.712 nM, and a sensitivity of 1.3604AM. Moreover, the N-GQDs/CuNPs-PANI@GO sensor showed acceptable stability up to 30 d (94.82%), reproducibility (RSD values of 3.19% intraday and 3.52% interday), and repeatability (RSD value of 3.65%) as a novel and powerful electrochemical sensor. It was successfully applied to monitor erlotinib in the drug-injected aqueous solution, serum, and urine samples that proved the capability of the sensor for the erlotinib monitoring in the biological samples.
厄洛替尼是一种高效且高度特异的酪氨酸激酶抑制剂,能够抑制癌细胞的生长。本研究首次构建了一种基于氮掺杂石墨烯量子点(N-GQDs)和三元纳米杂化材料(包含铜纳米粒子、聚苯胺和氧化石墨烯的 N-GQDs/CuNPs-PANI@GO)修饰石墨棒电极的电化学传感器,用于灵敏、选择性地测定厄洛替尼。通过氧化聚合的方法在 GO 表面上同时合成了 PANI 和 CuNPs。采用多种显微镜技术和 X 射线能量/衍射方法对合成纳米粒子的形貌特征和元素结构进行了检测。所构建的传感器对厄洛替尼表现出电催化活性,其线性检测范围为 1.0 nM 至 35.0 M,检测限为 0.712 nM,灵敏度为 1.3604 AM。此外,N-GQDs/CuNPs-PANI@GO 传感器在 30 天内(94.82%)具有良好的稳定性、重现性(日内 RSD 值为 3.19%,日间 RSD 值为 3.52%)和重复性(RSD 值为 3.65%),作为一种新型的强大电化学传感器,具有良好的应用前景。该传感器成功地应用于测定药物注射水溶液、血清和尿液样品中的厄洛替尼,证明了该传感器在生物样品中监测厄洛替尼的能力。