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Development of a Rapid Simple Method for Detecting Naegleria fowleri Visually in Water Samples by Loop-Mediated Isothermal Amplification (LAMP)

机译:通过回路介导的等温扩增(LAMP)技术快速简单地可视化检测水样中的鸡血藤的开发

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摘要

Naegleria fowleri is the causative agent of the fatal disease primary amebic meningoencephalitis. Detection of N. fowleri using conventional culture and biochemical-based assays is time-consuming and laborious, while molecular techniques, such as PCR, require laboratory skills and expensive equipment. We developed and evaluated a novel loop-mediated isothermal amplification (LAMP) assay targeting the virulence-related gene for N. fowleri. Time to results is about 90 min and amplification products were easily detected visually using hydroxy naphthol blue. The LAMP was highly specific after testing against related microorganisms and able to detect one trophozoite, as determined with spiked water and cerebrospinal fluid samples. The assay was then evaluated with a set of 80 water samples collected during the flooding crisis in Thailand in 2011, and 30 natural water samples from border areas of northern, eastern, western, and southern Thailand. N. fowleri was detected in 13 and 10 samples using LAMP and PCR, respectively, with a Kappa coefficient of 0.855. To the best of our knowledge, this is the first report of a LAMP assay for N. fowleri. Due to its simplicity, speed, and high sensitivity, the LAMP method described here might be useful for quickly detecting and diagnosing N. fowleri in water and clinical samples, particularly in resource-poor settings.
机译:鸡血藤是致命的原发性阿米巴脑膜脑炎的病原体。使用常规培养和基于生物化学的检测法来检测福氏猪笼草既费时又费力,而分子技术(例如PCR)则需要实验室技能和昂贵的设备。我们开发和评估了针对禽新城疫毒力相关基因的新型环介导的等温扩增(LAMP)分析。产生结果的时间约为90分钟,使用羟基萘酚蓝可以轻松地从视觉上检测到扩增产物。经对相关微生物进行测试后,LAMP具有很高的特异性,并且可以检测到一种滋养体(由加标的水和脑脊液样本确定)。然后,通过2011年泰国洪灾期间收集的80个水样本和泰国北部,东部,西部和南部边境地区的30个天然水样本对测定进行了评估。使用LAMP和PCR分别在13个样品和10个样品中检测到家禽N. kappa系数为0.855。据我们所知,这是首次针对福氏猪笼草进行LAMP分析的报告。由于其简单性,速度和高灵敏度,此处描述的LAMP方法可能对快速检测和诊断水和临床样品中的家禽N.有用,特别是在资源贫乏的地区。

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