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小鼠肝炎病毒逆转录环介导等温扩增检测技术的建立   总被引:1,自引:0,他引:1  
袁文  刘忠华  张钰  刘香梅  黄韧 《中国实验动物学报》2009,17(5):354-359,I0007,I0008
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As the second year of the COVID-19 pandemic begins, it remains clear that a massive increase in the ability to test for SARS-CoV-2 infections in a myriad of settings is critical to controlling the pandemic and to preparing for future outbreaks. The current gold standard for molecular diagnostics is the polymerase chain reaction (PCR), but the extraordinary and unmet demand for testing in a variety of environments means that both complementary and supplementary testing solutions are still needed. This review highlights the role that loop-mediated isothermal amplification (LAMP) has had in filling this global testing need, providing a faster and easier means of testing, and what it can do for future applications, pathogens, and the preparation for future outbreaks. This review describes the current state of the art for research of LAMP-based SARS-CoV-2 testing, as well as its implications for other pathogens and testing. The authors represent the global LAMP (gLAMP) Consortium, an international research collective, which has regularly met to share their experiences on LAMP deployment and best practices; sections are devoted to all aspects of LAMP testing, including preanalytic sample processing, target amplification, and amplicon detection, then the hardware and software required for deployment are discussed, and finally, a summary of the current regulatory landscape is provided. Included as well are a series of first-person accounts of LAMP method development and deployment. The final discussion section provides the reader with a distillation of the most validated testing methods and their paths to implementation. This review also aims to provide practical information and insight for a range of audiences: for a research audience, to help accelerate research through sharing of best practices; for an implementation audience, to help get testing up and running quickly; and for a public health, clinical, and policy audience, to help convey the breadth of the effect that LAMP methods have to offer.  相似文献   

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目的利用环介导等温扩增(LAMP)技术建立一种检测犬瘟热病毒感染的新方法。方法根据GenBank中NP基因序列,设计4条LAMP特异性引物,对反应条件、特异性、可视化效果和应用效果进行研究。结果在60℃等温的条件下、1 h内可完成RT-LAMP扩增过程;特异性和可视效果良好;对63份临床标本进行检测,阳性检出率为71.4%(45/63),检出率高于RT-PCR的63.5%(40/63)。结论建立的RT-LAMP检测方法,显示了较高的特异性和敏感性,而且兼具高效、快捷、可视化的优势,为临床检测犬瘟热病毒感染提供了一种快速简便的新途径。  相似文献   

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Botrytis cinerea is a devastating plant pathogen that causes grey mould disease. In this study, we developed a visual detection method of B. cinerea based on the Bcos5 sequence using loop-mediated isothermal amplification (LAMP) with hydroxynaphthol blue dye (HNB). The LAMP reaction was optimal at 63°C for 45 min. When HNB was added prior to amplification, samples with B. cinerea DNA developed a characteristic sky blue color after the reaction but those without DNA or with DNA of other plant pathogenic fungi did not. Results of HNB staining method were reconfirmed when LAMP products were subjected to gel electrophoresis. The detection limit of this LAMP assay for B. cinerea was 10−3 ng µL−1 of genomic DNA per reaction, which was 10-fold more sensitive than conventional PCR (10−2 ng µL−1). Detection of the LAMP assay for inoculum of B. cinerea was possible in the inoculated tomato and strawberry petals. In the 191 diseased samples, 180 (94.2%) were confirmed as positive by LAMP, 172 (90.1%) positive by the tissue separation, while 147 (77.0%) positive by PCR. Because the LAMP assay performed well in aspects of sensitivity, specificity, repeatability, reliability, and visibility, it is suitable for rapid detection of B. cinerea in infected plant materials prior to storage and during transportation, such as cut flowers, fruits and vegetables.  相似文献   

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快速检测HBV DNA的环状介导等温DNA扩增法   总被引:5,自引:2,他引:5  
环状介导等温DNA扩增(LAMP)技术是一种新的核酸扩增方法,它能够高特异性、高效、快速地进行核酸的扩增。利用LAMP法检测乙型肝炎病毒(HBV),能够在等温条件下于1h内将少量的基因拷贝数扩增至10^9,在对65份临床标本的检测中显示了较高的特异性。与现有的PCR技术相比,LAMP法更加简便快速,且在等温条件下进行,不需要复杂的仪器设备,为临床检测乙肝病毒提供了一个快速筒便的新方法。  相似文献   

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Detecting point mutation of human cancer cells quickly and accurately is gaining in importance for pathological diagnosis and choice of therapeutic approach. In the present study, we present novel methodology, peptide nucleic acid—locked nucleic acid mediated loop-mediated isothermal amplification (PNA-LNA mediated LAMP), for rapid detection of KRAS mutation using advantages of both artificial DNA and LAMP. PNA-LNA mediated LAMP reactions occurred under isothermal temperature conditions of with 4 primary primers set for the target regions on the KRAS gene, clamping PNA probe that was complimentary to the wild type sequence and LNA primers complementary to the mutated sequences. PNA-LNA mediated LAMP was applied for cDNA from 4 kinds of pancreatic carcinoma cell lines with or without KRAS point mutation. The amplified DNA products were verified by naked-eye as well as a real-time PCR equipment. By PNA-LNA mediated LAMP, amplification of wild type KRAS DNA was blocked by clamping PNA probe, whereas, mutant type KRAS DNA was significantly amplified within 50 min. Mutant alleles could be detected in samples which diluted until 0.1% of mutant-to-wild type ratio. On the other hand, mutant alleles could be reproducibly with a mutant-to-wild type ratio of 30% by direct sequencing and of 1% by PNA-clamping PCR. The limit of detection (LOD) of PNA-LNA mediated LAMP was much lower than the other conventional methods. Competition of LNA clamping primers complementary to two different subtypes (G12D and G12V) of mutant KRAS gene indicated different amplification time depend on subtypes of mutant cDNA. PNA-LNA mediated LAMP is a simple, rapid, specific and sensitive methodology for the detection of KRAS mutation.  相似文献   

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该文介绍了一种便捷、灵敏而又特异的环介导逆转录等温扩增基因检测技术,该技术分别使用特异对应于靶序列中8个基因区段的3对特殊引物,并在反转录酶和Bst-DNA聚合酶的作用下对靶序列进行等温核酸扩增反应,整个检测反应只需1~2h。利用这种技术成功检测了丙型肝炎病毒基因,对60份经Real-time PCR或RT-PCR验证阳性的血清样品检测,阳性符合率为98%。同时,对扩增终产物进一步进行酶切分析,并与HIV、HBV和不同亚型流感病毒RNA进行交叉反应和特异性测试,均与预期结果吻合。将Real-time PCR定量后的RNA系列稀释后对检测方法的灵敏度进行了测试。结果显示,该技术的检测灵敏度在理论上可达到10个拷贝的RNA分子。以上结果证明,RT-LAMP扩增技术是一种检测程序简单、灵敏度和特异性较高的基因检测手段,在丙型肝炎病毒的快速检测方面具有一定的开发潜力。  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°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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Typhoid fever remains a public health threat in many countries. A positive result in traditional culture is a gold-standard for typhoid diagnosis, but this method is time consuming and not sensitive enough for detection of samples containing a low copy number of the target organism. The availability of the loop-mediated isothermal amplification (LAMP) assay, which offers high speed and simplicity in detection of specific targets, has vastly improved the diagnosis of numerous infectious diseases. However, little research efforts have been made on utilizing this approach for diagnosis of Salmonella enterica serovar Typhi by targeting a single and specific gene. In this study, a LAMP assay for rapid detection of S. Typhi based on a novel marker gene, termed STY2879-LAMP, was established and evaluated with real-time PCR (RT-PCR). The specificity tests showed that STY2879 could be amplified in all S. Typhi strains isolated in different years and regions in China, whereas no amplification was observable in non-typhoidal strains covering 34 Salmonella serotypes and other pathogens causing febrile illness. The detection limit of STY2879-LAMP for S. Typhi was 15 copies/reaction in reference plasmids, 200 CFU/g with simple heat-treatment of DNA extracted from simulated stool samples and 20 CFU/ml with DNA extracted from simulated blood samples, which was 10 fold more sensitive than the parallel RT-PCR control experiment. Furthermore, the sensitivity of STY2879-LAMP and RT-PCR combining the traditional culture enrichment method for simulated stool and blood spiked with lower S. Typhi count during the 10 h enrichment time was also determined. In comparison with LAMP, the positive reaction time for RT-PCR required additional 2-3 h enrichment time for either simulated stool or blood specimens. Therefore, STY2879-LAMP is of practical value in the clinical settings and has a good potential for application in developing regions due to its easy-to-use protocol.  相似文献   

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创伤弧菌是一种重要的食源性致病菌,主要存在于河口和海洋环境中,严重危害水产养殖业的发展和人类健康。建立快速、准确、易操作的检测方法对防控创伤弧菌的传染,保障水产养殖业发展和增强食品安全意义重大。基于创伤弧菌vvHA基因,利用一种新型的核酸扩增技术-环介导恒温扩增(loop-mediated isothermal amplification,LAMP),建立了创伤弧菌LAMP快速检测方法。对11种共46株细菌进行扩增,仅创伤弧菌为LAMP阳性结果,说明LAMP方法具有高度特异性。灵敏度试验结果表明,对创伤弧菌纯培养菌的检测灵敏度为15CFU/ml,对污染食品中创伤弧菌的检测灵敏度为24CFU/g。此法40~60min内即可完成检测,检验检疫实践证明:LAMP方法操作简便、特异性强、灵敏度高且成本低廉,具有良好的应用前景。  相似文献   

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副溶血弧菌LAMP检测方法的建立   总被引:26,自引:0,他引:26  
副溶血弧菌(Vibrio parahaemolyticus)是一种能引起食源性疾病的重要病原菌。首次将一种新颖的核酸扩增技术-环介导等温扩增技术(Loop-Mediated Isothermal Amplification, LAMP)应用于副溶血弧菌的快速检测。针对副溶血弧菌不耐热溶血毒素基因(tlh)设计四条特异性引物(两条内引物和两条外引物)进行LAMP扩增,对扩增反应进行优化,最佳反应时间为60 min,反应温度为60 ℃。对12种细菌共28株菌进行LAMP扩增,仅14株副溶血弧菌得到阳性扩增结果,证明引物具有很高的特异性。副溶血弧菌基因组DNA和纯培养物的检测灵敏度分别约为90 fg和24 cfu/mL。对模拟食品样品进行直接检测,检测限为89 cfu/g。结果表明,该方法检测副溶血弧菌特异性强、灵敏度高,并且操作简便、检测成本低,1 h即可完成,有望发展成为快速检测副溶血弧菌的有效手段。  相似文献   

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乌梢蛇作为一种名贵中药材,市面上伪品较多,干燥熏黑处理后的样品,更是真伪难辨。本研究致力于开发一套基于环介导等温扩增(loop-mediated isothermal amplification,LAMP)为基础的快速筛查乌梢蛇的方法。本研究以乌梢蛇12srRNA基因序列为基础设计并筛选出1套LAMP引物。通过调整反应条件,建立了对乌梢蛇LAMP的检查方法。结果显示,62℃下连续反应15min左右出现典型的"S"型荧光吸收曲线,实现了对乌梢蛇12srRNA基因序列的特异扩增。根据LAMP灵敏度高的特点,本研究简化了DNA的提取方法,缩短了检测的时间。相对于常规的PCR方法,本研究建立的以快速DNA提取为基础的乌梢蛇LAMP快速筛查方法具有简单、快速、灵敏、对设备要求低等特点,适用于对中药材乌梢蛇的快速筛查。  相似文献   

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