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用于微型质谱的纳米材料增强型常压电离:迈向高性能现场检测

Nanomaterial-enhanced ambient ionization for miniature mass spectrometry: toward high-performance on-site detection.

作者信息

Zhang Qi, Zhu Xiaoying, Li Jiahao, Zhang Yuqing, Wang Cong, Ma Qiang

机构信息

Chinese Academy of Quality and Inspection & Testing, Beijing, 100123, China.

NMPA Key Laboratory for POCT Technology Transforming and Quality Control, Beijing, 100123, China.

出版信息

Mikrochim Acta. 2025 Jun 2;192(6):392. doi: 10.1007/s00604-025-07238-2.

Abstract

Mass spectrometry (MS), which is renowned for its high sensitivity and molecular specificity, serves as a cornerstone of modern analytical chemistry. However, the field applications of MS are constrained by bulky instrumentation and operational complexity. The integration of miniaturized MS with ambient ionization has revolutionized analytical workflows, enabling "sampling-ionization-detection" platforms that have shifted paradigms from laboratory-based analysis to on-site point-of-care testing. This has led to promising applications in food safety, environmental monitoring, and clinical diagnostics. Despite these advancements, challenges such as matrix interference and insufficient sensitivity persist. To address these limitations, the structural and surface properties of nanomaterials can be leveraged and engineered, offering multidimensional enhancement strategies across MS workflows that provide improved sensitivity and mitigate matrix effects. This review summarizes the developments over the past five years in the utilization of nanomaterials coupled with ambient ionization techniques for sample pretreatment and ionization optimization. Moreover, the synergy of these strategies with miniature MS systems is systematically highlighted for food safety, biomarker detection, and environmental pollutant determination. By bridging materials science, sensor technology, and diagnostics, these multidisciplinary efforts have accelerated the development of intelligent, portable analytical platforms, paving the way for precision medicine and next-generation field-deployable diagnostics. The convergence of nanomaterial innovations, sensor miniaturization, and diagnostic advancements underscores the transformative potential of these developments for the real-time, on-site detection of trace analytes in complex matrices.

摘要

质谱(MS)以其高灵敏度和分子特异性而闻名,是现代分析化学的基石。然而,质谱的现场应用受到仪器体积庞大和操作复杂的限制。小型化质谱与常压电离的结合彻底改变了分析工作流程,实现了“采样-电离-检测”平台,将范式从基于实验室的分析转变为现场即时检测。这在食品安全、环境监测和临床诊断方面带来了有前景的应用。尽管取得了这些进展,但诸如基质干扰和灵敏度不足等挑战仍然存在。为了解决这些限制,可以利用和设计纳米材料的结构和表面特性,在质谱工作流程中提供多维增强策略,以提高灵敏度并减轻基质效应。本综述总结了过去五年中利用纳米材料结合常压电离技术进行样品预处理和电离优化的进展。此外,还系统地强调了这些策略与微型质谱系统在食品安全、生物标志物检测和环境污染物测定方面的协同作用。通过将材料科学、传感器技术和诊断学相结合,这些多学科努力加速了智能、便携式分析平台的发展,为精准医学和下一代现场可部署诊断铺平了道路。纳米材料创新、传感器小型化和诊断学进步的融合凸显了这些发展对于复杂基质中痕量分析物实时、现场检测的变革潜力。

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