Department of Clinical Microbiology and Infectious Diseases, Hospital General Universitario Gregorio Marañón, Madrid, Spain.
Instituto de Investigación Sanitaria Gregorio Marañón, Madrid, Spain.
Euro Surveill. 2019 Jan;24(4). doi: 10.2807/1560-7917.ES.2019.24.4.1800193.
IntroductionMALDI-TOF MS represents a new technological era for microbiology laboratories. Improved sample processing and expanded databases have facilitated rapid and direct identification of microorganisms from some clinical samples. Automated analysis of protein spectra from different microbial populations is emerging as a potential tool for epidemiological studies and is expected to impact public health.AimTo demonstrate how implementation of MALDI-TOF MS has changed the way microorganisms are identified, how its applications keep increasing and its impact on public health and hospital hygiene.MethodsA review of the available literature in PubMED, published between 2009 and 2018, was carried out.ResultsOf 9,709 articles retrieved, 108 were included in the review. They show that rapid identification of a growing number of microorganisms using MALDI-TOF MS has allowed for optimisation of patient management through prompt initiation of directed antimicrobial treatment. The diagnosis of Gram-negative bacteraemia directly from blood culture pellets has positively impacted antibiotic streamlining, length of hospital stay and costs per patient. The flexibility of MALDI-TOF MS has encouraged new forms of use, such as detecting antibiotic resistance mechanisms (e.g. carbapenemases), which provides valuable information in a reduced turnaround time. MALDI-TOF MS has also been successfully applied to bacterial typing.ConclusionsMALDI-TOF MS is a powerful method for protein analysis. The increase in speed of pathogen detection enables improvement of antimicrobial therapy, infection prevention and control measures leading to positive impact on public health. For antibiotic susceptibility testing and bacterial typing, it represents a rapid alternative to time-consuming conventional techniques.
简介MALDI-TOF MS 代表了微生物学实验室的新技术时代。改进的样品处理和扩展的数据库促进了一些临床样本中微生物的快速直接鉴定。不同微生物群体蛋白质谱的自动分析正在成为流行病学研究的潜在工具,并有望对公共卫生产生影响。目的展示 MALDI-TOF MS 的实施如何改变了微生物的鉴定方式,其应用如何不断增加,以及它对公共卫生和医院卫生的影响。方法对 2009 年至 2018 年间在 Pubmed 上发表的现有文献进行了综述。结果从检索到的 9709 篇文章中,有 108 篇被纳入综述。它们表明,使用 MALDI-TOF MS 快速鉴定越来越多的微生物,通过及时开始定向抗菌治疗,优化了患者管理。直接从血培养小珠中诊断革兰氏阴性菌血症,促进了抗生素的简化、住院时间和每位患者的成本的优化。MALDI-TOF MS 的灵活性鼓励了新的使用形式,例如检测抗生素耐药机制(如碳青霉烯酶),这在缩短周转时间的同时提供了有价值的信息。MALDI-TOF MS 也已成功应用于细菌分型。结论MALDI-TOF MS 是一种强大的蛋白质分析方法。病原体检测速度的提高使抗菌治疗、感染预防和控制措施得到改善,从而对公共卫生产生积极影响。对于抗生素敏感性测试和细菌分型,它代表了一种快速替代耗时的传统技术。