Department of Electrical Engineering, Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, West Java, Indonesia.
Research Center for Biomedical Engineering, Faculty of Engineering, Universitas Indonesia, Kampus UI Depok, Depok 16424, West Java, Indonesia.
Biosensors (Basel). 2022 Nov 29;12(12):1090. doi: 10.3390/bios12121090.
As a steroid hormone, cortisol has a close relationship with the stress response, and therefore, can be used as a biomarker for early detection of stress. An electrochemical immunosensor is one of the most widely used methods to detect cortisol, with antibodies as its bioreceptor. Apart from conventional laboratory-based methods, the trend for cortisol detection has seemed to be exploiting antibodies and aptamers. Both can provide satisfactory performance with high selectivity and sensitivity, but they still face issues with their short shelf life. Molecularly imprinted polymers (MIPs) have been widely used to detect macro- and micro-molecules by forming artificial antibodies as bioreceptors. MIPs are an alternative to natural antibodies, which despite demonstrating high selectivity and a low degree of cross-reactivity, often also show a high sensitivity to the environment, leading to their denaturation. MIPs can be prepared with convenient and relatively affordable fabrication processes. They also have high durability in ambient conditions, a long shelf life, and the ability to detect cortisol molecules at a concentration as low as 2 ag/mL. By collecting data from the past five years, this review summarizes the antibody and aptamer-based amperometric sensors as well as the latest developments exploiting MIPs rather than antibodies. Lastly, factors that can improve MIPs performance and are expected to be developed in the future are also explained.
作为一种类固醇激素,皮质醇与应激反应密切相关,因此可以作为应激早期检测的生物标志物。电化学免疫传感器是检测皮质醇最广泛使用的方法之一,其生物受体是抗体。除了传统的基于实验室的方法外,检测皮质醇的趋势似乎是利用抗体和适体。两者都可以提供令人满意的性能,具有高选择性和灵敏度,但它们仍然存在保质期短的问题。分子印迹聚合物 (MIPs) 已被广泛用于通过形成人工抗体作为生物受体来检测宏观和微观分子。MIPs 是天然抗体的替代品,尽管表现出高选择性和低交叉反应性,但通常也对环境高度敏感,导致其变性。MIPs 可以通过方便且相对经济实惠的制造工艺进行制备。它们在环境条件下也具有高耐用性、长保质期,并且能够检测低至 2 ag/mL 的皮质醇分子。通过收集过去五年的数据,本综述总结了基于抗体和适体的安培传感器以及最新利用 MIPs 而不是抗体的进展。最后,还解释了可以提高 MIPs 性能并有望在未来开发的因素。