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1.
核酸恒温扩增技术研究进展   总被引:2,自引:0,他引:2  
核酸恒温扩增技术在生命科学研究及相关诸多领域已经得到了广泛应用。我们对核酸恒温扩增技术的最新进展作一简要综述,包括环介导恒温扩增、链替代扩增、依赖核酸序列的扩增、滚环扩增、切口酶核酸恒温扩增、依赖解旋酶的恒温扩增、转录依赖的扩增、杂交捕获法、转录介导的扩增等的原理、优缺点及应用。  相似文献   

2.
滚环扩增是近年来发展起来的一种恒温核酸扩增方法。这种方法不仅可以直接扩增DNA和RNA,还可以实现对靶核酸的信号放大,灵敏度达到一个拷贝的核酸分子,因此,RCA技术在全基因组扩增、单核苷酸多态性、DNA芯片、蛋白质芯片等方面检测中具有很大的应用价值和潜力。  相似文献   

3.
滚环扩增(rollingcircleamplification,RCA)技术是一种新的分子生物学检测方法。该方法不仅可以在体外等温条件下对核酸进行高度特异性的检测,而且还可通过线性或指数扩增来进行信号级联放大,其灵敏度能达到1个拷贝的核酸分子,因此,可用于痕量分子的检测。目前,滚环扩增技术广泛应用于全基因组DNA检测、核酸测序、单核苷酸多态性、DNA芯片及蛋白质芯片分析等领域。  相似文献   

4.
滚环扩增信号放大技术在生物检测中应用的研究进展   总被引:2,自引:0,他引:2  
滚环扩增(Rolling circle amplification,RCA)是一种快速、灵敏且恒温的单链DNA(Single-stranded DNA,ssDNA)扩增技术,与染色或探针联用可实现检测信号的放大,在生物检测等方面得到广泛的应用。文中对RCA的构建方法进行了简介,综述了近几年其在致病菌、核酸肿瘤标记物、蛋白质、生物小分子和病毒等检测中的研究进展,并对其未来的发展趋势进行了展望。  相似文献   

5.
食源性病毒核酸恒温检测技术研究进展   总被引:3,自引:0,他引:3  
食源性病毒已成为全球引发食品安全事件的重要病原,对新型检测技术的不断发展提出了严峻的挑战。早期PCR技术在病原检测领域中的应用,推动了对食源性病毒的全面认识。近年来核酸恒温检测技术发展迅速,包括环介导等温扩增技术、重组酶聚合酶扩增技术、核酸序列依赖性扩增技术、链置换扩增技术、滚环扩增技术等,在抗复杂基质干扰、装备要求低以及可现场实时检测等方面具有明显的技术优势,已成为食源性病毒检测领域的热点研究方向。因此,本文对近年来食源性病毒核酸恒温检测技术的原理、应用、优缺点等方面进行综述,并对未来发展方向进行了展望。  相似文献   

6.
用重组酶介导扩增技术快速扩增核酸   总被引:2,自引:0,他引:2       下载免费PDF全文
体外核酸快速扩增技术是一种可使微量核酸在体外高效快速扩增的技术, 自问世以来, 被广泛应用于分子生物学、医学和法理鉴定等领域, 并被不断改进, 以使其功能和适应性更为广泛. 重组酶介导扩增法是在现有体外核酸扩增原理的基础上发展起来的恒温体外快速扩增核酸技术. RAA法利用重组酶、单链结合蛋白和DNA聚合酶代替了传统PCR的热循环解链过程, 实现了在37℃恒温下的核酸快速扩增, 无需特殊的辅助仪器, 对操作人员的要求也不高, 具备简单、节能、便携、快速等特点, 有望在不远的将来取代传统的热循环PCR反应.  相似文献   

7.
核酸等温扩增技术是一种在恒温体系内对核酸进行高效扩增的分子扩增技术,它能够在短时间内实现目的基因的指数增长.微流控芯片(microfluidic chip)技术是把研究样品制备、核酸富集、纯化和检测等多个操作步骤集成到一块“微型化”的芯片上,经自动化处理,得出实验结果,即“样品进,结果出”.将核酸等温扩增技术与微流控芯...  相似文献   

8.
核酸体外扩增技术   总被引:4,自引:0,他引:4  
核酸体外扩增是分子生物学研究的基础。随着生物技术的发展 ,出现了越来越多的核酸体外扩增技术。根据其特点可分为两类 :一类是靶核酸的直接扩增 ,如聚合酶链式反应、链替代扩增、连接酶链式反应、核酸依赖的扩增、Qβ复制、转录介导的扩增和滚环扩增等 ;另一类是信号放大扩增 ,如支链DNA、侵染探针等。就现有的核酸扩增技术的原理、特点及应用进行介绍。  相似文献   

9.
环介导等温扩增技术(loop-mediated isothermal amplification,LAMP)是近年来发展出来的一种核酸扩增技术.通过设计识别目的片段6个序列的4个特异引物,整个反应可以在恒温(60~65℃)条件下1 h内完成,由于采用4个引物,与传统的核酸扩增技术相比,它具有敏感、特异的特点;且产物中有大量的副产物--白色焦磷酸镁沉淀,扩增产物可通过肉眼观察或浊度计即可判定结果;反应不需要精密控温设备和高级复杂的分析仪器,对操作人员的熟练度和专业水平要求不高,因此该方法特别适合基层或者实验条件较差的试验室进行病原微生物的快速检测.就其原理及其在病原微生物的检测中的应用做一综述.  相似文献   

10.
近年来,食源性致病菌在全球范围内大面积传播,给人类的生存健康与发展带来了巨大的威胁。因此为了保证食品的安全,快速的、高特异性且高灵敏地检测食品致病菌方法已经成为科学研究的热点话题。在本研究中,我们构建了一种基于滚环扩增技术的纸基显色传感器用于可视化检测致病菌的检测平台。通过滚环扩增对单增李斯特菌的hly A mRNA进行高效特异性扩增,扩增后的单链产物经过Hhal酶进行特异位点酶切后,形成与锁式探针长度相同的片段。将酶切后的单链产物不经过预变性杂交,可直接进行试纸条检测。在优化的实验条件下,可以检测到100 pg/μL总RNA。整个过程实验包括连接,扩增,酶切,检测等反应均可在恒温条件下进行,且可在几个小时内完成。这种方法适用于快速的现场检测,此外,这项研究强调了纸基显色诊断平台的潜在价值和应用前景。  相似文献   

11.
While microarrays hold considerable promise in large-scale biology on account of their massively parallel analytical nature, there is a need for compatible signal amplification procedures to increase sensitivity without loss of multiplexing. Rolling circle amplification (RCA) is a molecular amplification method with the unique property of product localization. This report describes the application of RCA signal amplification for multiplexed, direct detection and quantitation of nucleic acid targets on planar glass and gel-coated microarrays. As few as 150 molecules bound to the surface of microarrays can be detected using RCA. Because of the linear kinetics of RCA, nucleic acid target molecules may be measured with a dynamic range of four orders of magnitude. Consequently, RCA is a promising technology for the direct measurement of nucleic acids on microarrays without the need for a potentially biasing preamplification step.  相似文献   

12.
Rolling-circle amplification under topological constraints   总被引:6,自引:2,他引:4       下载免费PDF全文
We have performed rolling-circle amplification (RCA) reactions on three DNA templates that differ distinctly in their topology: an unlinked DNA circle, a linked DNA circle within a pseudorotaxane-type structure and a linked DNA circle within a catenane. In the linked templates, the single-stranded circle (dubbed earring probe) is threaded, with the aid of two peptide nucleic acid openers, between the two strands of double-stranded DNA (dsDNA). We have found that the RCA efficiency of amplification was essentially unaffected when the linked templates were employed. By showing that the DNA catenane remains intact after RCA reactions, we prove that certain DNA polymerases can carry out the replicative synthesis under topological constraints allowing detection of several hundred copies of a dsDNA marker without DNA denaturation. Our finding may have practical implications in the area of DNA diagnostics.  相似文献   

13.
Sensitive detection assays are a prerequisite for the analysis of small amounts of samples derived from biological material. There is a great demand for highly sensitive and robust detection techniques to analyze biomolecules. The combination of catalytic active DNA (DNAzyme) with a peroxidase activity with rolling circle amplification (RCA) is a promising alternative to common detection systems. The rolling circle amplification leads to a product with tandemly linked copies of DNAzymes. The continuous signal generation of the amplified DNAzymes results in an increased sensitivity. The combination of two amplification reactions, namely RCA and DNAzymes, results in increased signal intensity by a factor of 10(6). With this approach the labeling of samples can be avoided. The advantage of the introduced assay is the usage of nucleic acids as biosensors for the detection of biomolecules. Coupling of the analyte molecule to the detection molecules allows the direct detection of the analyte molecule. The described label-free hotpot assay has a broad potential field of applications. The hotpot assay can be adapted to detect and analyze RNA, DNA and proteins down to femtomolar concentrations in a miniaturized platform with a total reaction solution of 50 nl. The applicability of the assay for diagnostics and research will be shown with a focus on high throughput systems using a nano-well platform.  相似文献   

14.
滚环DNA扩增的原理、应用和展望   总被引:2,自引:0,他引:2  
滚环DNA扩增 (rollingcircleDNAamplification ,RCA)是一种等温信号扩增方法 ,其线性扩增倍数为 1 0 5,指数化扩增能力大于 109,产生的扩增产物连接在固相支持物 (如玻片、微孔板等 )表面的DNA引物或抗体上。RCA是一种适合在芯片上 (on chip)进行信号扩增的新技术 ,它既能提供研究分析的敏感性和特异性 ,又能保持立体分析的多元性。RCA亦是一种痕量的分子检测方法 ,可用于极其微量的生物大分子和生物标志的检测与研究  相似文献   

15.
A novel method for regenerating biosensors has been developed in which the highly specific detection of nucleic acid sequences is carried out using molecular padlock probe (MPP) technology and surface-associated rolling circle amplification (RCA). This technique has a low occurrence of false positive results when compared to polymerase chain reaction, and is an isothermal reaction, which is advantageous in systems requiring low power consumption such as remote field sensing applications. Gold-sputtered 96-well polystyrene microplates and a fluorescent label were used to explore the detection limits of the surface-associated RCA technique, specificity for different MPP, conditions for regeneration of the biomolecular sensing surface, and reproducibility of measurements on regenerated surfaces. The technique was used to create highly selective biomolecular surfaces capable of discriminating between DNA oligonucleotides with sequences identical to RNA from infectious salmon anemia (ISA) and infectious hematopoietic necrosis (IHN) virus. As little as 0.6 fmol of circularized MPP was detectable with this fluorimetric assay. The sensing layers could be reused for at least four cycles of amplification using thermal denaturation, with less than 33% decrease in RCA response over time. Because the nucleic acid product of the test is attached to a surface during amplification, the technique is directly applicable to a variety of existing sensing platforms, including acoustic wave and optical devices.  相似文献   

16.
Protein detection via direct enzymatic amplification of short DNA aptamers   总被引:1,自引:1,他引:0  
Aptamers are single-stranded nucleic acids that fold into defined tertiary structures to bind target molecules with high specificities and affinities. DNA aptamers have garnered much interest as recognition elements for biodetection and diagnostic applications due to their small size, ease of discovery and synthesis, and chemical and thermal stability. Here we describe the design and application of a short DNA molecule capable of both protein target binding and amplifiable bioreadout processes. Because both recognition and readout capabilities are incorporated into a single DNA molecule, tedious conjugation procedures required for protein-DNA hybrids can be omitted. The DNA aptamer is designed to be amplified directly by either polymerase chain reaction (PCR) or rolling circle amplification (RCA) processes, taking advantage of real-time amplification monitoring techniques for target detection. A combination of both RCA and PCR provides a wide protein target dynamic range (1 microM to 10 pM).  相似文献   

17.
Rolling circle amplification (RCA) generates large single-stranded and tandem repeats of target DNA as amplicons. This technique was applied to in situ nucleic acid amplification (in situ RCA) to visualize and count single Escherichia coli cells carrying a specific gene sequence. The method features (i) one short target sequence (35 to 39 bp) that allows specific detection; (ii) maintaining constant fluorescent intensity of positive cells permeabilized extensively after amplicon detection by fluorescence in situ hybridization, which facilitates the detection of target bacteria in various physiological states; and (iii) reliable enumeration of target bacteria by concentration on a gelatin-coated membrane filter. To test our approach, the presence of the following genes were visualized by in situ RCA: green fluorescent protein gene, the ampicillin resistance gene and the replication origin region on multicopy pUC19 plasmid, as well as the single-copy Shiga-like toxin gene on chromosomes inside E. coli cells. Fluorescent antibody staining after in situ RCA also simultaneously identified cells harboring target genes and determined the specificity of in situ RCA. E. coli cells in a nonculturable state from a prolonged incubation were periodically sampled and used for plasmid uptake study. The numbers of cells taking up plasmids determined by in situ RCA was up to 10(6)-fold higher than that measured by selective plating. In addition, in situ RCA allowed the detection of cells taking up plasmids even when colony-forming cells were not detected during the incubation period. By optimizing the cell permeabilization condition for in situ RCA, this method can become a valuable tool for studying free DNA uptake, especially in nonculturable bacteria.  相似文献   

18.
环介导等温基因扩增技术及其在病毒检测中的应用   总被引:4,自引:0,他引:4  
环介导等温扩增是一门新兴的分子生物学检测技术,因其具有特异性高、敏感性高、简单、快捷及不需要昂贵的仪器设备等特点,受到了生物医学研究者的高度关注。目前,该方法已经被广泛应用于各种病原微生物检测。简要综述了环介导等温扩增技术的原理、特点,及其在病毒检测中的应用。  相似文献   

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