Suppr超能文献

基于现场检测方法的纳米生物传感器在农业领域快速农药检测中的应用:现状与展望的系统评价。

Nanobiosensors based on on-site detection approaches for rapid pesticide sensing in the agricultural arena: A systematic review of the current status and perspectives.

机构信息

Department of Biochemistry and Biotechnology, Faculty of Science, Annamalai University, Annamalainagar, India.

Research Department of Biochemistry, Government Arts College for Women, Krishnagiri, India.

出版信息

Biotechnol Bioeng. 2024 Sep;121(9):2585-2603. doi: 10.1002/bit.28764. Epub 2024 Jun 10.

Abstract

The extensive use of chemical pesticides has significantly boosted agricultural food crop yields. Nevertheless, their excessive and unregulated application has resulted in food contamination and pollution in environmental, aquatic, and agricultural ecosystems. Consequently, the on-site monitoring of pesticide residues in agricultural practices is paramount to safeguard global food and conservational safety. Traditional pesticide detection methods are cumbersome and ill-suited for on-site pesticide finding. The systematic review provides an in-depth analysis of the current status and perspectives of nanobiosensors (NBS) for pesticide detection in the agricultural arena. Furthermore, the study encompasses the fundamental principles of NBS, the various transduction mechanisms employed, and their incorporation into on-site detection platforms. Conversely, the assortment of transduction mechanisms, including optical, electrochemical, and piezoelectric tactics, is deliberated in detail, emphasizing its advantages and limitations in pesticide perception. Incorporating NBS into on-site detection platforms confirms a vital feature of their pertinence. The evaluation reflects the integration of NBS into lab-on-a-chip systems, handheld devices, and wireless sensor networks, permitting real-time monitoring and data-driven decision-making in agronomic settings. The potential for robotics and automation in pesticide detection is also scrutinized, highlighting their role in improving competence and accuracy. Finally, this systematic review provides a complete understanding of the current landscape of NBS for on-site pesticide sensing. Consequently, we anticipate that this review offers valuable insights that could form the foundation for creating innovative NBS applicable in various fields such as materials science, nanoscience, food technology and environmental science.

摘要

大量使用化学农药显著提高了农业粮食作物的产量。然而,它们的过度和不受管制的使用导致了环境污染和污染在环境、水生和农业生态系统中。因此,在农业实践中现场监测农药残留对于保障全球粮食和保护安全至关重要。传统的农药检测方法繁琐,不适合现场农药检测。本系统评价深入分析了纳米生物传感器(NBS)在农业领域用于农药检测的现状和展望。此外,该研究还包括 NBS 的基本原理、所采用的各种转换机制及其在现场检测平台中的应用。相反,详细讨论了包括光学、电化学和压电策略在内的各种转换机制,强调了它们在农药检测中的优势和局限性。将 NBS 纳入现场检测平台证实了其相关性的一个重要特征。该评估反映了 NBS 与片上实验室系统、手持设备和无线传感器网络的集成,允许在农业环境中进行实时监测和数据驱动的决策。还研究了机器人技术和自动化在农药检测中的潜力,强调了它们在提高竞争力和准确性方面的作用。最后,本系统评价全面了解了用于现场农药传感的 NBS 的现状。因此,我们预计本评价将提供有价值的见解,为创建适用于材料科学、纳米科学、食品技术和环境科学等各个领域的创新 NBS 奠定基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验