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1.
芯片毛细管电泳中组分的迁移行为及其特征   总被引:4,自引:0,他引:4  
在自组装的芯片毛细管电泳-激光诱导荧光检测装置上,以单个染料和一组荧光素异硫氰酸酯(FITC)标记的氨基酸为对象,研究了芯片毛细管电泳与传统毛细管电泳之间的差别,考察了玻璃芯片上微通道内的伏安特性以及抑制电压、进样方式和检测点的位置等对芯片毛细管电泳分离分析的影响,特别注意到了其有别于传统毛细管电泳的各种行为特征.  相似文献   

2.
采用带有可更换半自准式集束碳纤维圆盘工作电极的集成化毛细管电泳安培检测芯片,以多巴胺为模型化合物,通过考察分离电压、通道构型及电极与通道出口的间隙等参数对待测物多巴胺半波电位的影响,提出了芯片毛细管电泳-柱端安培检测系统中减小分离电压对安培检测系统干扰的措施.  相似文献   

3.
在自组装的芯片毛细管电泳-激光透导荧光检测装置上,以单个染料和一组荧光素异硫氰酸酯(FITC)标记的氨基酸为对象。研究了芯片毛细管电泳与传统毛细管电泳之间的差别,考察了玻璃芯片上微通道内的伏安特性以及抑制电压、进样方式和检测点的位置等对芯片毛细管电泳分离分析的影响,特别注意到了其有别于传统毛细管电泳的各种行为特征。  相似文献   

4.
魏培海  李关宾  陈立仁 《色谱》2005,23(3):258-260
制备了3-巯丙基三甲氧基硅烷-铜(MPTMS-Cu)/MCM-41分子筛修饰碳糊电极,研究了该修饰电极对NO-2电化学还原的 电催化作用,分析了修饰物含量、溶液pH对电化学反应的影响。以该电极为检测电极,设计制作了芯片毛细管电泳-电化学 检测系统,探讨了NO-2的芯片毛细管电泳检测方法。以50 mmol/L醋酸钠(pH 5.8)为电泳缓冲液、分离电压为-1.6 kV时 ,检测可在40 s内完成。纯水中NO-2检测的线性浓度范围为10.0~5000.0 μmol/L,检出限为4.0 μmol/L。  相似文献   

5.
建立了毛细管电泳检测凋亡细胞DNA片段的方法.以DNA相对分子质量标准品为溶质,考察了分离条件(电压、进样时间、温度、聚合物浓度)对分离的影响.在优化条件下,利用毛细管无胶筛分电泳对缺氧缺血过程中不同时间点神经PC12细胞DNA片段进行了分析,并与流式细胞仪结果比较,研究缺氧缺血时胶质细胞凋亡过程.  相似文献   

6.
芯片毛细管电泳及其在生命科学中的应用   总被引:10,自引:0,他引:10  
王辉  林炳承 《分析化学》2002,30(3):359-364
芯片毛细管电泳 (Chip CE)技术在近几年已取得了很大的进展。本文着重介绍芯片毛细管区带电泳技术 ,对等电聚焦、等速电泳、自由溶液电泳及胶束电动色谱等其它芯片电泳模式也有所提及。讨论了芯片材料和制作技术、芯片的几何形状、样品的操作和衍生、检测及芯片毛细管电泳技术的应用 ,特别是在核酸和蛋白质的分离分析中的进展  相似文献   

7.
对阴离子性化合物在强阴离子交换毛细管电色谱中的保留行为进行了研究。发现样品中固定相上的吸附使样品的保留因子k^*变小,柱小的分离能力减小;而电压的增大,使酸性样品的k^*也增大,并且电压的改变也能改变分离的选择性;样品保留因子的对数值随着缓冲液离子强度的对数值的增大而线性减小;样品也强阴子交换毛细管电谱和毛细管区带电泳中有不同的保留行为。  相似文献   

8.
芯片国管电泳及其在生命科学中的应用   总被引:2,自引:0,他引:2  
王辉  林炳承 《分析化学》2002,30(3):359-364
芯片毛细管电泳(Chip-CE)技术在近几年已取得了很大的进展。本文着重介绍芯片毛细管区带电泳技术,对等电聚焦、等速电泳、自由溶液电泳及胶束电动色谱等其它芯片电泳模式也有所提及。讨论了芯片材料和制作技术、芯片的几何形状、样品的操作和衍生、检测及芯片毛细管电泳技术的应用,特别是在核酸和蛋白质的分离分析中的进展。  相似文献   

9.
鲍宁  窦跃华  屠晓燕  陈洪渊 《分析化学》2003,31(9):1139-1142
设计并制作了一种小型的、可与PC机相联的程序控制电源,其中有两路输出电压,用于芯片毛细管电泳的分离和进样;而且,可程序控制输出电压和运行时间,并在PC机上以图形方式显示是泳电流。该电源适用于芯片毛细管电泳的过程监控。  相似文献   

10.
董娅妮  方群 《色谱》2008,26(3):269-273
重点介绍了近年来国内外在微流控芯片毛细管电泳法用于蛋白质分离分析方面的研究进展。按照分离模式的不同,综述了各种应用于蛋白质分离的微流控芯片毛细管电泳系统,讨论了抑制芯片中的蛋白吸附的各种方法,并展望了芯片毛细管电泳系统在蛋白质分离领域的发展前景。引用文献47篇。  相似文献   

11.
One of the major application fields for solid dielectric polymers is their use as insulating materials for power cables. Since the electrical aging of the insulating polymeric materials is one of the most important factors affecting the service lifetime of power cables, developing a model which can be used to design materials with an improved resistance to electrical degradation would be highly beneficial. We developed a model for the electrical field within the polymer material contaminated with a sharp conducting defect (a metallic needle) and defined a parameter characterizing the resistance of polymer to electrical treeing. The model was used to analyse data for the electrical degradation of polyethylene stabilized with polycyclic aromatic hydrocarbons. Based on quantum mechanically calculated electron affinities and ionisation potentials of the stabilizer molecules, we discovered that if a molecule is to be considered for voltage stabilization use it has to have a specific combination of the ionisation potential and adiabatic electron affinity. The model allows for a choice of appropriate voltage stabilizers based on theoretical calculations only and can help to facilitate any experimental study for choosing appropriate voltage stabilizer additives.  相似文献   

12.
A sheathless and electrodeless nanospray interface has been used to interface a polycarbonate capillary electrophoresis (CE) chip to a mass spectrometer (MS). The chip was made of two flat polycarbonate plates which were bolted together. Channels were imprinted in one of the plates with metal wires, using a hydraulic press. A short tapered capillary connected to the chip was used as the nanospray emitter. The advantage of this electrodeless interface is that it was not necessary to apply a electrospray voltage to the chip or the nanospray emitter. Instead, the CE voltage already applied to the buffer compartment on the chip, to drive the electrophoresis, was used to generate the spray also. A low conductivity buffer of 1.25 mmol/L ammonium acetate in 80% methanol was used to obtain a large electric field across the buffer channel. The performance of the device was evaluated by analyzing a mixture of three beta-agonists Relative standard deviation (RSD) values obtained were between 4.8 and 5.0%. A sample concentration of 40 nmol/L resulted in a signal-to-noise ratio of 2 to 5 for the different components. Compared to a conventional CE analysis in a fused silica capillary with UV detection, only a minor loss of resolution was observed, which can be attributed to the design of the chip.  相似文献   

13.
Li FA  Wang CH  Her GR 《Electrophoresis》2007,28(8):1265-1273
Using a wire-assisted epoxy-fixing method, a sheathless CE/MS interface on a poly-(methyl methacrylate) (PMMA) CE chip has been developed. The sheathless chip-CE/MS interface utilized a tapered fused-silica tip and the electrical connection was achieved through a layered coating of conductive rubber. The wire-assisted method provided facile alignment of channels between the PMMA CE chip and an external capillary sprayer without the need for micromachining. Because the wire was in the channel during fixing, the risk of channel blockage by the epoxy was avoided. This chip CE device has minimal dead volume because the interstitial spaces were filled by a fast-fixing epoxy resin. The performance of the chip-CE-ESI-MS device was demonstrated with the analysis of peptide mixtures.  相似文献   

14.
A miniaturized analytical system for separating and detecting inorganic explosive residues, based on the coupling of a micromachined capillary electrophoresis (CE) chip with a contactless conductivity detector is described. The low electroosmotic flow (EOF) of the poly(methylmethacrylate) (PMMA) chip material facilitates the rapid switching between analyses of cations and anions using the same microchannel and run buffer (and without an EOF modifier), and hence offers rapid (< 1 min) measurement of seven explosive-related cations and anions. Experimental parameters relevant to the separation and detection processes have been optimized. Addition of a 18-crown-6 ether modifier has been used for separating the peaks of co-migrating potassium and ammonium ions. The ionic-explosive microchip system combines the distinct advantages of contactless conductivity detection with the attractive features of plastic CE microchips. The new microsystem offers great promise for monitoring explosive-related ions at the sample source, with significant advantages of speed/warning, efficiency, cost, or sample size.  相似文献   

15.
Klett O  Nischang I  Nyholm L 《Electrophoresis》2002,23(21):3678-3682
Samples containing microM concentrations of dopamine, (+/-)-isoproterenol, para-aminophenol and chlorogenic acid have been separated by capillary electrophoresis (CE) and detected using end-column amperometric detection based on a novel decoupling method. The present decoupling approach involves the use of an electrochemical detector chip containing an array of microband electrodes where the working and reference electrodes are positioned only 10 microm from each other. The short distance between the working and reference electrodes ensures that both electrodes are very similarly affected by the presence of the CE electric field. With this method, no shift in the detection potential was seen when the CE high voltage was applied. This eliminated the need for a reoptimization of the detection potential to compensate for the influence of the separation voltage on the detection. It is also demonstrated that catecholamines can be detected using gold microband electrodes by careful adjustment of the detection potential to avoid the formation of gold oxide. Such careful adjustments of the detection potential are straightforward using the present decoupling method.  相似文献   

16.
In this work, a new technique for off-line hyphenation between CE and MALDI-MS is presented. Two closed fused-silica capillaries were connected via a silicon chip comprising an open microcanal. The EOF in the system was evaluated using mesityloxide or leucine-enkephalin as a sample and with a running buffer that rendered the analyte neutrally charged. Comparison was made between the EOF in a closed system (first capillary solely included in the electrical circuit) and in a closed-open system (first capillary and microcanal included in the electrical circuit). It was concluded that the experimental values of the EOF agreed with the theory. The influence of the capillary outer diameter on the peak dispersion was investigated using a closed-open-closed system (first capillary, microcanal and second capillary included in the electrical circuit). It was clearly seen that a capillary with 375 microm od induced considerably higher peak dispersion than a 150 microm od capillary, due to a larger liquid dead volume in the connection between the first capillary outlet and the microcanal. Mass spectrometric analysis has also been performed following CE separation runs in a closed-open-closed system with cytochrome c and lysozyme as model proteins. It was demonstrated that a signal distribution profile of the separated analytes could be recorded over a 30 mm long microcanal.  相似文献   

17.
This paper presents a capillary-to-microchip connection, which can be used as an interface for coupling capillary electrophoresis (CE) with a thermal lens microscope (TLM). It is difficult to directly apply TLM to samples in a capillary with a curved surface, and such an interface chip at the end of a CE separation column is needed for reliable TLM measurements. The dependence of the TLM signal intensity on the TLM detection point in the interface chip and the dependence of the theoretical plate number of CE separation on the channel dimensions of the interface chip were investigated and optimized with a mixture of 4-dimethylaminoazobenze-4'-sulfonyl (DABSYL)-derivatized amino acids (glycine, alanine, methionine, and proline) as a model sample. By using an optimized interface chip, theoretical plate numbers of DABSYL-glycine, -methionine, -alanine, and -proline were obtained to be 104000, 95000, 104000, and 95000, respectively.  相似文献   

18.
Yao X  Xu X  Yang P  Chen G 《Electrophoresis》2006,27(16):3233-3242
This paper describes the development and the application of a novel carbon nanotube/poly(methyl methacrylate) (CNT/PMMA) composite electrode as a sensitive amperometric detector of CE. The composite electrode was fabricated on the basis of the in situ polymerization of a mixture of CNT and prepolymerized methylmethacrylate in the microchannel of a piece of fused-silica capillary under heat. The performance of this unique system has been demonstrated by separating and detecting honokiol and magnolol in traditional Chinese medicine, Cortex Magnoliae Officinalis. Factors influencing their separation and detection processes were examined and optimized. Honokiol and magnolol were well separated within 7 min in a 40 cm long capillary at a separation voltage of 15 kV using a 50 mM borate buffer (pH 9.2). The new CNT-based CE detector offered significantly lower operating potentials, yielded substantially enhanced S/N characteristics, and exhibited resistance to surface fouling and hence enhanced stability. It demonstrated long-term stability and reproducibility with RSDs of less than 5% for the peak current (n = 9) and should also find a wide range of applications in microchip CE, flowing injection analysis, and other microfluidic analysis systems.  相似文献   

19.
Huang FC  Chen YF  Lee GB 《Electrophoresis》2007,28(7):1130-1137
This study presents a new packaging method using a polyethylene/thermoplastic elastomer (PE/TPE) film to seal an injection-molded CE chip made of either poly(methyl methacrylate) (PMMA) or polycarbonate (PC) materials. The packaging is performed at atmospheric pressure and at room temperature, which is a fast, easy, and reliable bonding method to form a sealed CE chip for chemical analysis and biomedical applications. The fabrication of PMMA and PC microfluidic channels is accomplished by using an injection-molding process, which could be mass-produced for commercial applications. In addition to microfluidic CE channels, 3-D reservoirs for storing biosamples, and CE buffers are also formed during this injection-molding process. With this approach, a commercial CE chip can be of low cost and disposable. Finally, the functionality of the mass-produced CE chip is demonstrated through its successful separation of phiX174 DNA/HaeIII markers. Experimental data show that the S/N for the CE chips using the PE/TPE film has a value of 5.34, when utilizing DNA markers with a concentration of 2 ng/microL and a CE buffer of 2% hydroxypropyl-methylcellulose (HPMC) in Tris-borate-EDTA (TBE) with 1% YO-PRO-1 fluorescent dye. Thus, the detection limit of the developed chips is improved. Lastly, the developed CE chips are used for the separation and detection of PCR products. A mixture of an amplified antibiotic gene for Streptococcus pneumoniae and phiX174 DNA/HaeIII markers was successfully separated and detected by using the proposed CE chips. Experimental data show that these DNA samples were separated within 2 min. The study proposed a promising method for the development of mass-produced CE chips.  相似文献   

20.
Jeong Y  Kim S  Chun K  Chang J  Chung DS 《Lab on a chip》2001,1(2):143-147
We have developed a synchronously switched cyclic capillary electrophoresis (CE) separator that is fabricated on a silicon substrate and glass. Au electrodes were also integrated on the chip that could be wire bonded to the printed circuit board (PCB). The advantage of using a cyclic separator is that it has the high resolution and the ability to separate each sample to the designated reservoir from mixed samples. This approach makes it possible to reduce the supplied voltage and the total chip size. Another goal of this work was to introduce the methodology of electroosmotic flow (EOF) on the silicon substrate and to separate DNA samples using a modified double-T injector.  相似文献   

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