College of Food Science and Engineering, Northwest A&F University, Yangling, 712100, Shaanxi, China.
School of Food Science and Engineering, South China University of Technology, Guangzhou, 510641, China.
Biosens Bioelectron. 2022 Dec 1;217:114577. doi: 10.1016/j.bios.2022.114577. Epub 2022 Jul 16.
The grave threat posed by food hazards to food security and human health has increased the urgency of rapid and sensitive detection. Enzyme-mimic immune detection, particularly nanozyme-activated food immunosensors (NAFI), shows distinct specificity and catalytic properties, advancing food safety supervision. However, knowledge of the fundamental principles and functionalities of NAFI is still limited. Based on tracking the timeline of the independent evolution and combination of immunosensors and nanozymes, we first provide a systemic view to describe the trends of NAFI. Moreover, the underlying catalytic mechanisms are discussed according to classification in this review, including metal-based, carbon-based, and metal-organic framework-based nanozymes. In particular, significant attention is focused on the fundamental function of nanozyme receptors in food immunosensors, including the connection between nanozymes and bio-affinity ligands (one pot and two steps), signal modulation and amplification, and various signal outputs (typical and novel modes), which are crucial for gaining the best performance and further innovation. Finally, based on representative applications of nanozymes to detect food hazards, the main challenges in the development of NAFI are summarized, and future research directions for this highly prospective frontier are envisioned.
食源性危害对食品安全和人类健康构成的严重威胁,增加了快速、灵敏检测的紧迫性。酶模拟免疫检测,特别是纳米酶激活的食品免疫传感器(NAFI),表现出明显的特异性和催化性能,推进了食品安全监管。然而,对 NAFI 的基本原理和功能的了解仍然有限。基于跟踪免疫传感器和纳米酶的独立演化和组合的时间线,我们首先提供了一个系统的观点来描述 NAFI 的趋势。此外,根据分类讨论了潜在的催化机制,包括基于金属、基于碳和基于金属有机骨架的纳米酶。特别是,我们关注纳米酶受体在食品免疫传感器中的基本功能,包括纳米酶与生物亲和配体的连接(一锅法和两步法)、信号调制和放大以及各种信号输出(典型和新型模式),这些对于获得最佳性能和进一步创新至关重要。最后,基于纳米酶在检测食源性危害方面的代表性应用,总结了 NAFI 发展所面临的主要挑战,并对这一极具前景的前沿领域的未来研究方向进行了展望。