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1.
A loop-mediated isothermal amplification (LAMP) method for rapid detection of the food-borne L. monocytogenes strains had been developed and evaluated in this study. The optimal reaction condition was 65°C for 45 min, with the detection limit as 1 pg DNA/tube and 100 CFU/reaction. Application of the established LAMP assay was performed on 182 food-borne L. monocytogenes strains using a rapid procedure and easy result confirmation, with the sensitivity of LAMP versus PCR assays as 96.7% (176/182) and 91.2% (166/182), respectively; with 100% specificity, positive predictive value (PPV) and negative predictive value (NPV) for both assays.  相似文献   

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Here we report a rapid and sensitive method (using loop-mediated isothermal amplification [LAMP]) for the diagnosis of edwardsiellosis, a fish disease caused by Edwardsiella tarda, in Japanese flounder. A set of four primers was designed, and conditions for the detection were optimized for the detection of E. tarda in 45 min at 65 degrees C. No amplification of the target hemolysin gene was detected in other related bacteria. When the LAMP primers were used, detection of edwardsiellosis in infected Japanese flounder kidney, and spleen and seawater cultures was possible. We have developed a rapid and sensitive diagnostic protocol for edwardsiellosis detection in fish. This is the first report of the application of LAMP for the diagnosis of a fish pathogen.  相似文献   

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Loop-mediated isothermal amplification (LAMP) is a novel nucleic acid amplification method performed under isothermal conditions and has a high specificity and efficiency. We developed a LAMP assay targeting the 16S rRNA gene for rapid detection of Haemophilus parasuis. The results obtained from testing 31 H. parasuis strains and 28 other bacterial species strains showed that LAMP was as specific as, and more sensitive than, nested PCR. Fifty-five lung samples were collected from 55 healthy pigs. All the samples were negative for H. parasuis by bacterial isolation, nested PCR and LAMP, respectively. In addition, 122 lung samples were collected from 122 pigs with apparent respiratory problems. Sixty-five were positive by bacterial isolation. All the samples that were positive by bacterial isolation were also positive by nested PCR and LAMP. The LAMP assay demonstrated higher sensitivity than nested PCR, picking up 16 additional cases. The LAMP assay also gave a same result compared with the nested PCR when the two assays were used, respectively, to detect H. parasuis from samples obtained from experimentally infected pigs. We concluded that LAMP is a highly sensitive and reliable method for detection of H. parasuis infection.  相似文献   

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【背景】在包装饮用水企业生产活动中,铜绿假单胞菌是被重点监测的致病菌之一。随着分子检测相关技术的不断发展,研制用于包装饮用水中铜绿假单胞菌简便、高效的快速检测产品至关重要。【目的】评价基于环介导恒温扩增(loop-mediated isothermal amplification,LAMP)技术的铜绿假单胞菌快速检测试剂盒在包装饮用水铜绿假单胞菌检测中的实效性。【方法】优化该LAMP反应体系,反应试剂采用冻干工艺,确定试剂盒组成,并评价其特异性、灵敏度、重复性、保质期等性能指标。【结果】铜绿假单胞菌标准菌株和分离菌株均检测为阳性,非铜绿假单胞菌标准菌株和分离菌株均检测为阴性,未发现有交叉反应;试剂盒最低检验限为18 CFU/mL;该试剂盒的特异性、灵敏度及准确度与传统方法相比具有较高的一致性;批内、批间检测重复率均为100%,可在4℃保存12个月以上,并且可在42℃环境中储存72 h以上。【结论】该试剂盒性能好,检测结果稳定、可靠,适用于包装饮用水中铜绿假单胞菌的快速检测。  相似文献   

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Here we report a loop-mediated isothermal amplification (LAMP) method for detecting Shigella and enteroinvasive Escherichia coli. The target for this LAMP method is the ipaH gene which is carried by both of the pathogens. The LAMP method efficiently detected the gene within 2 h at a minimal amount of bacteria (8 CFU) per reaction.  相似文献   

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In recent years, the large yellow croaker (Pseudosciaena crocea), an important marine fish farmed in the coastal areas of Zhejiang province, east China, has become severely endangered as a result of the bacterial pathogen Pseudomonas putida. This paper reports the development of a visual loop-mediated isothermal amplification (LAMP) assay for rapid detection of the pathogen. Four primers, F3, B3, FIP and BIP, were designed on the basis of DNA sequence of the rpoN gene of P. putida. After optimization of the reaction conditions, the detection limit of LAMP assay was 4.8cfu per reaction, 10-fold higher than that of conventional PCR. The assay showed high specificity to discriminate all P. putida isolates from nine other Gram-negative bacteria. The assay also successfully detected the pathogen DNA in the tissues of infected fish. For visual LAMP without cross-contamination, SYBR Green I was embedded in a microcrystalline wax capsule and preset in the reaction tubes; after the reaction the wax was melted at 85°C to release the dye and allow intercalation with the amplicons. The simple, highly sensitive, highly specific and cost-effective characteristics of visual LAMP may encourage its application in the rapid diagnosis of this pathogen.  相似文献   

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AIMS: To evaluate the loop-mediated isothermal amplification method (LAMP) for rapid detection of Flavobacterium columnare and determine the suitability of LAMP for rapid diagnosis of columnaris infection in channel catfish, Ictalurus punctatus. METHODS AND RESULTS: A set of four primers, two outer and two inner, were designed specifically to recognize 16S ribosomal RNA gene of this pathogen. Bacterial genomic DNA templates were prepared by hot lysis in a lysis buffer. Amplification of the specific gene segments was carried out at 65 degrees C for 1 h. The amplified gene products were analysed by agarose gel electrophoresis and detected by staining gels with ethidium bromide. A PCR assay was also included in this study. Our results demonstrate that the ladder-like pattern of bands from 204 bp specific to the Fl. columnare 16S ribosomal RNA gene was amplified. The detection limit of the LAMP assay was comparable to that of PCR in prepared genomic DNA reactions. In addition, this optimized LAMP assay was able to detect the Fl. columnare 16S ribosomal RNA gene in experimentally infected channel catfish. CONCLUSIONS: The LAMP assay for Fl. columnare detection in channel catfish was established. SIGNIFICANCE AND IMPACT OF THE STUDY: Because LAMP assay is a rapid, sensitive, specific, simple and cost-effective assay for Fl. columnare detection in channel catfish, it is useful for rapid diagnosis of Fl. columnare in fish hatcheries and the field.  相似文献   

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环介导等温扩增技术是一种在恒温条件下特异、高效、快速扩增DNA的新技术.不需要专业设备和人员,在一个反应体系中,通过四条特异性引物识别靶基因6个不同的位点,1h内完成整个扩增.扩增产物是一系列反向重复的靶序列构成的茎环结构和多环花椰菜样结构的DNA片段的混合物.通过肉眼观察浊度或加入荧光染料SYBR Green Ⅰ后的颜色变化即可判定结果.  相似文献   

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We developed and evaluated the specificity and sensitivity of a loop-mediated isothermal amplification (LAMP) method for rapid detection of the food-borne Escherichia coli O157 strains. Six primers, including outer primers, inner primers and loop primers, were specially designed for recognizing eight distinct sequences on three targets, which were rfbE, stx1 and stx2. The detection limits were found to be 100, 100 and 10 fg DNA/tube for rfbE, stx1 and stx2, respectively. Application of LAMP assays were performed on 417 food-borne E. coli strains, the sensitivity of LAMP assays for the rfbE, stx1 and stx2 was 100, 95.3 and 96.3%, and the negative predictive value was 100, 96.7 and 97.1%, respectively; with a 100% specificity and positive predictive value for all three targets.  相似文献   

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Bovine tuberculosis (TB) caused by Mycobacterium bovis is a significant health threat to cattle and a zoonotic threat for humans in many developing countries. Rapid and accurate detection of M. bovis is fundamental for controlling the disease in animals and humans, and for the proper treatment of patients as one of the first-line anti-TB drug, pyrazinamide, is ineffective against M. bovis. Currently, there are no rapid, simplified and low-cost diagnostic methods that can be easily integrated for use in many developing countries. Here, we report the development of a loop-mediated isothermal amplification (LAMP) assay for specific identification of M. bovis by targeting the region of difference 4 (RD4), a 12.7 kb genomic region that is deleted solely in M. bovis. The assay''s specificity was evaluated using 139 isolates comprising 65 M. bovis isolates, 40 M. tuberculosis isolates, seven M. tuberculosis complex reference strains, 22 non-tuberculous mycobacteria and five other bacteria. The established LAMP detected only M. bovis isolates as positive and no false positives were observed using the other mycobacteria and non-mycobacteria tested. Our LAMP assay detected as low as 10 copies of M. bovis genomic DNA within 40 minutes. The procedure of LAMP is simple with an incubation at a constant temperature. Results are observed with the naked eye by a color change, and there is no need for expensive equipment. The established LAMP can be used for the detection of M. bovis infections in cattle and humans in resource-limited areas.  相似文献   

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基于DNA环介导恒温扩增技术 (Loop-mediated isothermal amplification,LAMP),探索建立一种应用于NDM-1基因 (New Metallo-β-Lactamase-1 Gene,NDM-1) 的快速检测方法,以适应临床实验室等的检测需求。利用LAMP技术,以NDM-1基因为靶序列,设计4组LAMP引物,并筛选最优引物组,建立LAMP反应体系与条件,进行灵敏度和特异性实验。结果表明整个检测过程仅需1 h,即可通过肉眼直接目测实验结果。在灵敏度试验中,NDM-1基因的最低检测限为6 拷贝/反应。在特异性实验中,以4株病原菌 (肺炎克雷伯氏菌、大肠埃希氏菌、金黄色葡萄球菌、肺炎链球菌) 以及肠道菌群元基因组DNA、土壤菌群元基因组DNA为模板对NDM-1基因进行检测,结果显示均没有发生非特异性扩增反应。文中建立的LAMP检测方法能够快速检测NDM-1基因,且可直接观察到实验结果,实现了检测结果的可视化。具有操作简单安全、检测灵敏度高、特异性高的特点,能够满足基层实验室、应急检测或现场监测等方面的使用需求,具有良好的应用价值。  相似文献   

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【目的】建立桉树焦枯病快速有效的环介导等温扩增反应LAMP,检测技术。【方法】以桉树焦枯病原菌Cylindrocladium scoparium为研究对象,利用Primer Explorer V4.0设计软件,针对C. scoparium的beta-tubulin gene特异保守区域设计了一套LAMP特异性引物组(内引物FIP/BIP,外引物F3/B3,环引物LooPF/LooPB),优化并建立了桉树焦枯病原菌的LAMP快速检测体系。【结果】LAMP反应体系为(50 μL):Bst DNA polymerase (8 U) 1 μL;甜菜碱溶液(5 mol/L) 3.0 μL;dNTPs (2.5 mmol/L) 3.5 μL;10×Thermopol Ⅱ 2.5 μL;MgCl2 (100 mmol/L) 2 μL;FIP/BIP (40 μmol/L)各1 μL;F3/B3 (10 μmol/L)各0.5 μL;LooPF/LooPB (10 μmol/L)各1 μL;DNA模板2 μL;用ddH2O补足体积至50 μL。反应程序为:65 °C水浴锅中反应45 min,90 °C灭活5 min结束反应。特异性检测结果显示,供试的12个样本菌株LAMP产物可以采用肉眼观察、紫外灯照射、添加荧光染料SYBR Green I以及电泳检测条带4种不同的形式予以区分。DNA灵敏度检测结果显示,建立的LAMP体系检测灵敏度可达到40 μg/L,完全符合田间检测的要求。野外田间时效检测结果显示,无论是利用紫外检测还是电泳检测均可成功地检测出各地区不同生理小种的桉树焦枯病原菌C. scoparium,且检测效果明显。【结论】该LAMP检测是一项能够作为野外基层田间检测的重要技术。  相似文献   

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《Harmful algae》2010,9(6):839-842
A loop-mediated isothermal amplification (LAMP) assay was developed to detect the genomic DNA of Karenia mikimotoi using a set of four specific primers based on a ribosomal DNA internal transcribed spacer (ITS). The sensitivity of this LAMP assay was 100-fold higher than regular PCR, and its specificity was validated using other algae as a comparison. Two visual detection approaches were feasible to interpret the positive or negative results. This technology may have the potential to aid in forecasting red-tides on the scene because of its high sensitivity, specificity and rapid detection.  相似文献   

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Aims:  To develop a rapid and sensitive method for detecting Brucella spp.
Methods and Results:  Two sets of six Brucella -specific primers for loop-mediated isothermal amplification (LAMP) were designed from the sequence of the Brucella abortus BCSP31 gene. The specificity and sensitivity were examined for six Brucella species (22 strains) and 18 non- Brucella species (28 strains). The LAMP assay was specific to Brucella spp. in 35 min at 63°C and sensitive (detected 10 fg of genomic DNA). The assay was also applied for the detection of Brucella DNA in contaminated milk and infected mouse organs.
Conclusions:  We developed a sensitive and specific LAMP assay for Brucella spp., with the test appearing to be useful for the detection of the pathogen from clinical and food samples.
Significance and Impact of the Study:  This is the first report of the development of LAMP for the detection of Brucella spp. As the LAMP assay can be performed at a constant temperature and its reactivity is directly observed with the naked eye without electrophoresis, our assay should be useful for the diagnosis of brucellosis as well as the detection of the bacteria in environmental or food samples.  相似文献   

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