Pharmaceutical Analysis Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Food and Drug Safety Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
J Mol Recognit. 2021 Sep;34(9):e2897. doi: 10.1002/jmr.2897. Epub 2021 Mar 23.
In this study, a novel biosensor based on molecular imprinting polymer (MIP) methodology was fabricated toward recognition of carcinoembryonic antigen (CEA). For this purpose, poly (toluidine blue) (PTB) was electropolymerized on the surface of gold electrode in the absence and presence of CEA. So, the target molecules were entrapped into the imprinted specific cavities of MIP. Obtained results show that, the binding affinity of the MIP system was significantly higher than that of revealed for the nonimprinted polymer (NIP) system, MIP-based biosensor revealed linear response from (0.005 to 75 μg/L) and low limit of quantification of (0.005 μg/L) by using chronoamperometry technique, leading to CEA monitoring in real and clinical samples. Thus, a novel technique for rapid, simple, sensitive and affordable monitoring of CEA (LLOQ = 0.005 μg/L) has provided through developed biosensor. From a future perspective, moreover, this method can be considered as an applicable candidate in biomedical and clinical analysis for point-of-care usages.
在这项研究中,基于分子印迹聚合物(MIP)方法,制备了一种新型生物传感器,用于识别癌胚抗原(CEA)。为此,在没有和存在 CEA 的情况下,将聚(甲苯胺蓝)(PTB)电聚合在金电极的表面。因此,目标分子被包埋在印迹的 MIP 特定腔室中。结果表明,MIP 体系的结合亲和力明显高于非印迹聚合物(NIP)体系的结合亲和力,基于 MIP 的生物传感器通过计时安培技术显示出从(0.005 到 75μg/L)的线性响应和(0.005μg/L)的低定量限,从而实现了实际和临床样本中 CEA 的监测。因此,通过开发的生物传感器提供了一种用于快速、简单、灵敏和经济实惠的 CEA 监测的新技术(LLOQ=0.005μg/L)。从未来的角度来看,此外,这种方法可以被认为是生物医学和临床分析中适用于即时医疗用途的候选方法。