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光谱精度:基质辅助激光解吸/电离飞行时间质谱在病原体检测和耐药性分析中的最新进展

Spectral Precision: Recent Advances in Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry for Pathogen Detection and Resistance Profiling.

作者信息

Elbehiry Ayman, Abalkhail Adil

机构信息

Department of Public Health, College of Applied Medical Sciences, Qassim University, P.O. Box 6666, Buraydah 51452, Saudi Arabia.

出版信息

Microorganisms. 2025 Jun 25;13(7):1473. doi: 10.3390/microorganisms13071473.

Abstract

With the global rise in antimicrobial resistance (AMR), rapid and reliable microbial diagnostics have become more critical than ever. Traditional culture-based and molecular diagnostic techniques often fall short in terms of speed, cost-efficiency, or scalability, particularly in resource-limited settings. Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) has emerged as a transformative tool in clinical microbiology. Its unparalleled speed and accuracy in microbial identification, along with expanding applications in AMR profiling, make it a leading candidate for next-generation diagnostic workflows. This review aims to provide a comprehensive update on recent advances in MALDI-TOF MS, focusing on its technological evolution, clinical applications, and future potential in microbial diagnostics and resistance detection. We conducted a critical synthesis of peer-reviewed literature published over the last decade, with emphasis on innovations in sample preparation, instrumentation, data interpretation, and clinical integration. Key developments in AMR detection, including growth-based assays, resistance biomarker profiling, and machine learning-driven spectral analysis, are discussed. MALDI-TOF MS is increasingly deployed not only in clinical laboratories but also in environmental surveillance, food safety, and military biodefense. Despite challenges such as database variability and limited access in low-income regions, it remains a cornerstone of modern microbial diagnostics and holds promise for future integration into global AMR surveillance systems.

摘要

随着全球抗菌药物耐药性(AMR)的增加,快速且可靠的微生物诊断变得比以往任何时候都更加关键。传统的基于培养和分子诊断技术在速度、成本效益或可扩展性方面往往存在不足,特别是在资源有限的环境中。基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)已成为临床微生物学中的一种变革性工具。它在微生物鉴定方面具有无与伦比的速度和准确性,以及在AMR分析中的应用不断扩展,使其成为下一代诊断工作流程的主要候选者。本综述旨在全面更新MALDI-TOF MS的最新进展,重点关注其技术演变、临床应用以及在微生物诊断和耐药性检测方面的未来潜力。我们对过去十年发表的同行评审文献进行了批判性综合,重点关注样品制备、仪器仪表、数据解释和临床整合方面的创新。讨论了AMR检测的关键进展,包括基于生长的检测、耐药性生物标志物分析和机器学习驱动的光谱分析。MALDI-TOF MS不仅越来越多地应用于临床实验室,还应用于环境监测、食品安全和军事生物防御。尽管存在数据库变异性和低收入地区获取有限等挑战,但它仍然是现代微生物诊断的基石,并有望在未来集成到全球AMR监测系统中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cce/12299549/72c1506c6c8b/microorganisms-13-01473-g001.jpg

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