Caruso Giorgia, Coniglio Maria Anna, Laganà Pasqualina, Fasciana Teresa, Arcoleo Giuseppe, Arrigo Ignazio, Di Carlo Paola, Palermo Mario, Giammanco Anna
U.O.C. of Microbiology and Virology, ARNAS "Civico Di Cristina and Benfratelli", 90127 Palermo, Italy.
Legionella Reference Laboratory, Department of Medical, Surgical Sciences and Advanced Technologies "G.F. Ingrassia", University of Catania, Via Santa Sofia 87, 95123 Catania, Italy.
Microorganisms. 2024 May 10;12(5):961. doi: 10.3390/microorganisms12050961.
is a freshwater opportunistic pathogen and the leading cause of severe pneumonia known as Legionnaires' disease. It can be found in all water systems and survives in biofilms, free-living amoebae, and a wide variety of facilities, such as air conditioning and showers in hospitals, hotels and spas. The reference cultural method allows for the isolation and identification in many days, and in addition, it does not detect viable but rather non-culturable bacteria, increasing the risk of infection. In this context, a new LAMP-based (loop-mediated isothermal amplification) kit was developed, allowing for the rapid, sensitive, and labor-saving detection of . The kit, " Glow", was validated according to ISO/TS 12869:2012, testing sensitivity, inclusivity and exclusivity, and kit robustness. Sensitivity showed that the " Glow" kit can detect up to 28 plasmid copies/µL. Robustness tests showed consistent results, with both contamination levels and the matrices used giving reproducible results. Furthermore, real samples were evaluated to compare the performance of the two methods. The LAMP kit " Glow" proved a useful option for the rapid, efficient, and labor-saving screening of different typologies of water samples, offering significant advantages over the traditional method, as it is characterized by a high sensitivity, ease of use for laboratory testing, and a large reduction in analysis time, making it an asset to official controls.
是一种淡水机会致病菌,也是被称为军团病的严重肺炎的主要病因。它存在于所有水系统中,能在生物膜、自由生活的变形虫以及各种设施中存活,如医院、酒店和水疗中心的空调和淋浴设施。传统培养方法需要很多天才能进行分离和鉴定,此外,它无法检测出有活力但不可培养的细菌,从而增加了感染风险。在此背景下,开发了一种基于环介导等温扩增(LAMP)的新型试剂盒,可实现对……的快速、灵敏且省力的检测。该试剂盒“Glow”已根据ISO/TS 12869:2012进行了验证,测试了灵敏度、包容性和排他性以及试剂盒的稳健性。灵敏度测试表明“Glow”试剂盒能够检测低至28个质粒拷贝/微升。稳健性测试结果一致,污染水平和所用基质均给出了可重复的结果。此外,还对实际样本进行了评估,以比较两种方法的性能。LAMP试剂盒“Glow”被证明是对不同类型水样进行快速、高效且省力筛查的有用选择,与传统方法相比具有显著优势,因为它具有高灵敏度、便于实验室检测使用以及大幅缩短分析时间的特点,使其成为官方检测的一项资产。