Biosensing meets click chemistry: A promising combination for analysis of food hazard factors

IF 20.3 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
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Abstract

Food safety is one of the significant global problems that has gained widespread attention all over the world. Consequently, it is crucial to develop sensitive and reliable detection technologies to ensure food safety. Notably, biosensing technologies have been widely applied in the analysis of food hazard factors due to their merits of portability, versatility, good sensitivity, rapid response, and reusability. To further improve the detection performance of biosensors, click chemistry has been successfully applied in the design and construction of biosensors because of its numerous advantages, such as moderate reaction conditions, high efficiency, no by-products, and accurate selectivity. In recent years, click chemistry-mediated biosensing platforms have obtained extensive applications in the area of food safety detection. By combining with portable analytical devices, the on-site detection of food hazard factors can be realized. In this review, we for the first time thoroughly summarized the recent advances on the click chemistry-based biosensing platform and portable analytical devices for food safety detection. First of all, the common click reactions and mechanisms involved in the construction of biosensors were introduced and discussed. Then, the design and construction of the biosensing platforms and portable analytical devices based on click chemistry were summarized, and their strengths and weaknesses were also discussed and summarized. Ultimately, attention was focused on the applications of click chemistry-enabled biosensing platforms and portable analytical devices in the detection of food hazard factors (e.g., pesticide residues, foodborne pathogens, mycotoxins, antibiotics, food allergic proteins, and heavy metal ions). Impressively, future obstacles and chances in the development and applications of click chemistry-based biosensing platforms were tentatively put forward.

Abstract Image

生物传感与点击化学的结合:分析食品危害因素的理想组合
食品安全是全球重大问题之一,已引起全世界的广泛关注。因此,开发灵敏可靠的检测技术对于确保食品安全至关重要。值得注意的是,生物传感技术因其便携性、多功能性、灵敏度高、反应迅速、可重复使用等优点,已被广泛应用于食品危害因素的分析。为进一步提高生物传感器的检测性能,点击化学因其反应条件温和、效率高、无副产物、选择性准确等诸多优点,已成功应用于生物传感器的设计和构建。近年来,点击化学介导的生物传感平台在食品安全检测领域得到了广泛应用。通过与便携式分析设备相结合,可以实现对食品危害因素的现场检测。在这篇综述中,我们首次全面总结了基于点击化学的生物传感平台和便携式分析仪器在食品安全检测方面的最新进展。首先,介绍并讨论了构建生物传感器所涉及的常见点击反应和机理。然后,总结了基于点击化学的生物传感平台和便携式分析装置的设计和构建,并讨论和总结了它们的优缺点。最后,重点讨论了基于点击化学的生物传感平台和便携式分析装置在检测食品危害因素(如农药残留、食源性病原体、霉菌毒素、抗生素、食物过敏蛋白和重金属离子)方面的应用。令人印象深刻的是,会议初步提出了基于点击化学的生物传感平台在未来发展和应用中的障碍和机遇。
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来源期刊
Coordination Chemistry Reviews
Coordination Chemistry Reviews 化学-无机化学与核化学
CiteScore
34.30
自引率
5.30%
发文量
457
审稿时长
54 days
期刊介绍: Coordination Chemistry Reviews offers rapid publication of review articles on current and significant topics in coordination chemistry, encompassing organometallic, supramolecular, theoretical, and bioinorganic chemistry. It also covers catalysis, materials chemistry, and metal-organic frameworks from a coordination chemistry perspective. Reviews summarize recent developments or discuss specific techniques, welcoming contributions from both established and emerging researchers. The journal releases special issues on timely subjects, including those featuring contributions from specific regions or conferences. Occasional full-length book articles are also featured. Additionally, special volumes cover annual reviews of main group chemistry, transition metal group chemistry, and organometallic chemistry. These comprehensive reviews are vital resources for those engaged in coordination chemistry, further establishing Coordination Chemistry Reviews as a hub for insightful surveys in inorganic and physical inorganic chemistry.
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