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1.
李玲玲  卢倩  朱俊杰 《电化学》2013,19(2):103-109
电致化学发光集成了发光和电化学分析的优点,在生物传感分析方面具有广泛的应用前景.量子点因其独特的性质成为电致化学发光的三大发光体系之一.本文综述了近年来基于量子点的电致化学发光免疫传感器的种类及其信号放大技术,并就相关研究发展方向和趋势作了初步展望.  相似文献   

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在电致化学发光(ECL)生物传感器的构建中,利用共反应试剂促进发光基团的发光效率是一种常见、方便且非常有效的方法. 然而,如何更好地利用共反应试剂使其更加有效地与发光基团作用是提高该类生物传感器灵敏度的重要因素. 本文结合作者课题组部分工作综述了三种共反应试剂放大ECL信号的构建:共反应试剂内置于检测底液;共反应试剂共存于电极表面;酶促生成共反应试剂,并提出了今后ECL信号放大构建的展望.  相似文献   

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羧基功能化的聚[(9,9-二辛基芴基-2,7-二基)-co-(1,4-苯并-{2,1′,3}-噻二唑)]聚合物点(PFBT-COOH)在无外加共反应试剂的条件下具有高的电致化学发光(ECL)信号,且过氧化氢(H2O2)对其ECL具有高效猝灭作用。采用PFBT-COOH修饰玻碳电极,进一步交联葡萄糖氧化酶(GOD)以构建酶传感器(GOD/PFBT-COOH/GCE)。随着检测底液中葡萄糖浓度的增加,葡萄糖在GOD催化下原位产生的H2O2量增加,导致传感器的ECL信号逐渐减弱,从而实现葡萄糖的准确、快速、灵敏检测。此方法测得葡萄糖的线性范围为1.0×10-7~3.0×10-3 mol/L,检出限为3.0×10-8 mol/L。血清样品中葡萄糖的加标回收率为98.5%~106%。该策略为酶传感器的构建提供了新思路,为葡萄糖的检测提供了新方法。  相似文献   

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铱(Ⅲ)配合物差的水溶性限制了其在电致化学发光(ECL)领域的应用.该文用聚(苯乙烯-马来酸酐)(PSMA)羧基功能化三(2-苯基吡啶)铱(Ⅲ)(Ir(ppy)3)合成水溶性铱纳米棒(IrNDs).在共反应试剂三丙胺(TPrA)存在下,IrNDs表现出优良的ECL性能.借助多巴胺(DA)对Ir NDs-TPrA体系EC...  相似文献   

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食管鳞状细胞癌(ESCC)患者发病早期由于体内的肿瘤标志物种类少且含量低,难以在患病早期发现疾病从而快速反应并有效治疗.因此,找到一种合适的标志物对其进行快速高效检测是研究者亟待解决的问题.血小板衍生生长因子(PDGF-BB)在恶性肿瘤的早期诊断中具有极其重要的地位.该文基于酶循环放大荧光光谱设计了一种用于PDGF-B...  相似文献   

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电致化学发光(ECL)检测技术因其具有无需激发光源、仪器简单、灵敏度高、选择性好等特点,被广泛应用于环境分析、生物分析等领域. 温度是影响ECL的主要因素之一,在传统的ECL传感器中大多是通过溶液整体加热的方法来控制温度,这种方法操作繁琐,且溶液中的热不稳定性物质及易挥发性物质容易受到影响,因此电极很少工作在最适宜的温度下. 热控电极技术可以只提高电极表面温度,而维持溶液的整体温度不变,使用起来具有很好的便利性. 作者课题组首次将热控电极引入到ECL传感器的构建中,由于电极表面和溶液之间存在一定的温度梯度,因此可以引发强制对流,从而加快物质的扩散和对流速率;电极表面温度的升高还可以进一步提高电极表面物质的电化学反应速率,这两方面的共同作用提高了ECL检测的灵敏度. 同时,利用热控电极可以解决整体加热所引起的背景信号升高,挥发性、热不稳定性物质易受温度影响等问题,而且通过电极加热的方法可去除电极表面的污染物,从而提高ECL检测的重现性. 本文综述了近年来基于热控电极技术的ECL传感器的研究进展,主要介绍了热控电极的加热方式、电极种类以及热控电极在ECL中的应用等,并分析了该技术在实际应用中面临的主要问题,对该技术未来的发展趋势进行了展望.  相似文献   

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联吡啶钌(Ru(bpy)■)拥有优良的电致化学发光(ECL)性能,但其较好的水溶性使其固载面临巨大问题。该文制备了Pt纳米粒子与Ru(bpy)■的复合物(Pt NPs-Ru),将其修饰于电极并进一步固载葡萄糖氧化酶(GOx)制得传感器。基于H2O2对Ru(bpy)■-三乙胺体系ECL信号的猝灭作用,随着葡萄糖浓度的增加,其在GOx的催化下原位产生的H2O2量增多,导致ECL信号逐渐减弱,从而实现葡萄糖的检测。ECL强度与葡萄糖浓度的对数在1.0×10-8~5.0×10-5 mol/L范围内呈良好的线性关系,检出限低至5.2×10-9 mol/L。传感器具有好的稳定性和高的选择性。Pt NPs-Ru复合物为ECL传感器的构建提供了良好平台,为葡萄糖检测提供了新方法。  相似文献   

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DNA电化学传感器灵敏度高、选择性好、分析时间短和检测成本低,极大地推动了生物传感器的发展. 结合蛋白质酶、功能核酸酶的催化效率高与特异性好,可提高检测灵敏度和选择性. 本文评述了酶放大DNA电化学传感器的研究进展,并分析现存问题,展望发展趋势.  相似文献   

10.
《分析化学》2008,36(2):275-275
南京大学化学化工学院朱俊杰研究组最近研制了一种基于CdS纳米晶的电致化学发光(ECL)生物传感器(Analytical Chemistry,2007,79,5574-5581)。通过自组装与金纳米颗粒放大技术研制成一种新型的纳米晶体非标记型电化学发光生物传感器,并将其运用于LDL的检测。该传感器具有重现性好,响应速度快,稳定性好等优点。半导体纳米晶通过电化学反应产生氧化态或还原态,  相似文献   

11.
《Electroanalysis》2017,29(4):983-989
A novel biosensor for ultra‐trace mRNA sensing was constructed based on isothermal circular strand‐replacement polymerization (CSRP) to amplify the electrochmeiluminescence (ECL) signal by combining quantum dots (CdTe) as luminophore. After the hairpin‐like capture DNA was opened by hybridization with target mRNA, the additive primer (DNA1) was able to get access to its complementary sequence which is partially belong to the stem part and triggered a polymerization of DNA strand, leading to the release of target mRNA and another polymerization cycle. The remaining sequence of the stem part continued to hybridize with QDs labeled DNA, accomplishing ECL signal amplification. Target mRNA could be specifically assayed with a linear relationship between the signal intensity and the logarithm of concentrations of target DNA in the range of 1.0×10−14∼5.0×10−10 M, with a low detection limit of 1.4×10−15 M. The signal could discriminate perfect matched target mRNA from 1‐base mismatch sequence. This proposed ECL biosensor exhibited an efficient performance in serum sample, opening new opportunities for genetic target analysis in diagnostic and clinic biomedical fields.  相似文献   

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朱化雨  张利  陈怀成  闫圣娟 《分析化学》2012,40(10):1549-1554
利用巯基乙胺将合成的金纳米粒子氨基化;基于纳米粒子负载羧基化的联吡啶钌和巯基DNA制得电化学发光信号探针;采用酶循环信号放大技术,获得大量含新增DNA的溶液来捕获信号探针;以金电极为载体,将巯基DNA自组装到电极表面,依次杂交互补DNA和信号探针,构建电化学发光生物传感器.在优化的条件下,此传感器对凝血酶具有良好的响应,在3.0× 10-13~6.0×10-11 mol/L范围内,凝血酶的浓度与发光强度呈良好的线性关系,检出限为1.8× 10-13 mol/L(3a).采用酶切循环放大技术制备的生物传感器具有灵敏度高,选择性和重现性良好等特点.  相似文献   

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DNA methyltransferase (DNA MTase) can act as biomarker for many diseases and it is important to develop some new methods for sensitive detection of DNA MTase. In this work, a highly efficient electrochemiluminescence (ECL) sensor had been designed for detection of DNA MTase based on Ru(phen)32+ loaded double strand DNA (dsDNA- Ru(phen)32+) as signal tags. Ru(phen)32+ had been efficiently embed in the dsDNA produced through a simple hybridization chain reaction. First, a hairpin probe was designed, which can be specifically recognized by Dam MTase and modified with -SH at one end. It was modified on the surface of gold electrode by -SH as an immobilization probe (IP). This IP will be methylated in the present of Dam MTase and digested by DpnI following. Results in the release of capture probe (CP) which remains on the surface of gold electrode. The CP can hybridize with the single stand part of the dsDNA- Ru(phen)32+ and make the immobilization of ECL tags on the electrode surface, which results in a strong ECL signals detected. However, without the effect of Dam MTase, the hairpin structure of IP remains stable and cannot capture signal tags, and can only detecte weak ECL signals. The biosensor can detect the activity of Dam MTase in the concentration range of 0.01 U/mL to 20 U/mL with the ECL intensity and the logarithm of the concentration have a linear relationship, and the detection limit is calculated to be 7.6 mU/mL. The developed sensor has the ability to specifically detect Dam MTase, which can be differentiated from other types of DNA MTase. In addition, the designed method has good applicability to detect Dam MTase activity in serum samples and been applied to detect its inhibitor with high efficiency.  相似文献   

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A simple and highly sensitive electrochemical biosensor for microRNA (miRNA) detection was successfully developed by integrating a target‐assisted isothermal exponential amplification reaction (EXPAR) with enzyme‐amplified electrochemical readout. The binding of target miRNA with the immobilized linear DNA template generated a part duplex and triggered primer extension reaction to form a double‐stranded DNA. Then one of the DNA strands was cleaved by nicking endonuclease and extended again. The short fragments with the same sequence as the target miRNA except for the replacement of uridines and ribonucleotides with thymines and deoxyribonucleotides could be displaced and released. Hybridization of these released DNA fragments with other amplification templates and their extension on the templates led to target exponential amplification. Integrating with enzyme‐amplified electrochemical readout, the electrochemical signal decreases with the increasing target microRNA concentration. The method could detect miRNA down to 98.9 fM with a linear range from 100 fM to 10 nM. The fabrication and binding processes were characterized with cyclic voltammetry and electrochemical impedance spectroscopy. The specificity of the method allowed single‐nucleotide difference between miRNA family members to be discriminated. The established biosensor displayed excellent analytical performance toward miRNA detection and might present a powerful and convenient tool for biomedical research and clinic diagnostic application.  相似文献   

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A novel polymerase-based electrochemical luminescence (ECL) DNA sensor was constructed for messenger RNA (mRNA) detection by cyclic chain displacement polymerization, assisted by target mRNA cycle and quantum dots signal amplification. Firstly, the mercapto-modified capture-type probe DNA (CP) was immobilized on the surface of a magneto-controlled glassy carbon electrode via Au-S bond. After the addition of target mRNA, CP was opened and hybridized with mRNA to form double-stranded DNA (dsDNA). Then polymerase, primer chain (DNA1) and bases were added, which made the primer chain extend to replace the target mRNA. After one amplification cycle, the mRNA chain could open another hairpin in order to carry out next cycle of amplification. Finally, the ECL detection was carried out by adding DNA2 labeled thioglycolic acid-CdTe quantum dots. The amplification of the target mRNA by the addition of polymerase and the signal combined with the quantum dots label greatly improved the sensitivity of the sensor. The results showed that corresponding ECL signal had a good linear relationship with logarithm of target mRNA concentration in the range of 1 × 10?15 to 1 × 10?11 M, with a detection limit of 3.4 × 10?16 M (S/N = 3). Under the optimal conditions, the recoveries of mRNA spiked in human serum sample were from 97.2 % to 102.3 %. This sensor exhibited good selectivity, stability and reproducibility.  相似文献   

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介绍了一种利用互补核酸杂交富集金胶实现信号扩增的蛋白质生物传感器. 以凝血酶蛋白为研究对象, 利用凝血酶蛋白相对应的两段核酸适配体, 将适配体Ⅰ固定在磁性颗粒上, 用于特异性地捕获蛋白, 将适配体Ⅱ标记金胶作为检测信标. 由凝血酶蛋白和相对应的两段核酸适配体构建三明治结构的凝血酶蛋白生物传感器. 另外, 再通过信标金胶上过剩的核酸适配体链与另一段标记有金胶的互补核酸进一步杂交, 获得金胶的选择性聚集, 实现了信号扩增. 通过信号扩增, 使此传感器的灵敏度大大提高, 对凝血酶蛋白的检测下限可达到4.52×10-15 mol/L. 平行测定浓度为7.47×10-14 mol/L的凝血酶8次, 其RSD为3.0%. 该生物传感器对凝血酶蛋白有很好的特异性, 其它蛋白如溶菌酶和牛血清白蛋白的存在对于检测没有影响.  相似文献   

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