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81.
《Analytical letters》2012,45(11):1937-1966
Abstract

New method for visual enzyme immunoassay of some model antigens in solution by using covalently photoimmobilized antibodies has been developed. This approach is based on the quantitative photoimmobilization of antibodies on the surface of porous matrixes. It is easy to control the dimensions and shape of the activated zones and the quantity of the active groups on it by this technique. A strip of the membrane impregnated with p-azidobenzaldehyde was illuminated by the light. A s a result, .the quantity of aldehyde groups developed on the surface of membrane is proportional to the time of illumination. After the covalent immobilization of antibodies, the membrane has separate zones with an exact surface concentration of antibodies. The antigens of different types were assayed: human IgG, human chorionic gonadotropin, Shigella Sonnei. The lowest detection limit was 1 μg/ml, 20 U/L 1×104 cells/ml. The method allows measure of thyroxire concentrations in the range 50 to 200 nM, the precision of replicate measurements has the coefficient of variation 7%. The reasons for the background signal appearance were accurately analyzed. The choice of support was substantiated, the optimal conditions of it.s pretreatment being defined. This method makes possible the visualization of the results based on comparison the color intensity of zones with the control.  相似文献   
82.
采用芯片式流通池作为非均相免疫反应和原位固相荧光检测的场所,用双岔光纤将芯片式流通池与荧光光度计耦联,以双抗夹心式非均相免疫反应的模式,研究建立了测定人血清中IgG的顺序注射可更新表面非均相免疫分析新方法.  相似文献   
83.
Accurate determination of concentration of immunoglobulin (IgG) to tetanus toxoid is important in order to evaluate the immunogenicity of tetanus toxoid vaccines, immune competence in individual patients and to measure the prevalence of immunity in populations. Surface modified polyacrylonitrile (PAN) fibers were evaluated as a matrix to develop highly sensitive method for the detection of anti-tetanus antibody in a sandwich ELISA format. In the proposed method tetanus toxoid immobilized on modified PAN fibers was used to detect anti-tetanus antibody (raised in horse hence represented as horse anti-tetanus toxoid or HAT-Ab) with horse raddish peroxidase enzyme conjugated with Rabbit anti-Horse IgG (RAH-HRP) as the label within 2.5 h. A sigmoidal pattern for the detection of different concentration of antibody ranging from 1.0 to 0.0001 IU mL−1 was validated. The immunoassay recorded a very high sensitivity as concentration as low as 0.0005 IU mL−1 of HAT-Ab was detected. The intra- and inter-assay precision for 3 parallel measurements of 0.01 and for 0.001 IU mL−1 of antibody varied from 5.4% to 11% and 5.7% to 20% respectively. PAN fibers were also used to qualitatively access the presence of different level of anti-tetanus antibody spiked in human blood. Seroepidemiological studies to measure the immunity against tetanus were conducted with twenty-five human beings belonging to various age groups using modified PAN-ELISA. The sensitivity, specificity and the reproducibility of the developed immunoassay indicate the potential application of modified PAN fibers in the field of immunodiagnostics.  相似文献   
84.
The aim of this work was to devise a one‐step purification procedure for monoclonal antibodies (MAbs) of IgG class by immobilized metal affinity chromatography (IMAC). Therefore, several stationary phases were prepared containing immobilized metal chelates in order to study the chromatographic behaviour of MAbs against wild‐type amidase from Pseudomonas aeruginosa. Such MAbs adsorbed to Cu(II), Ni(II), Zn(II) and Co(II)–IDA agarose columns. The increase in ligand concentration and the use of longer spacer arms and higher pH values resulted in higher adsorption of MAbs into immobilized metal chelates. The dynamic binding capacity and the maximum binding capacity were 1.33 ± 0.015 and 3.214 ± 0.021 mg IgG/mL of sedimented commercial matrix, respectively. A KD of 4.53 × 10−7 m was obtained from batch isotherm measurements. The combination of tailor‐made stationary phases of IMAC and the correct selection of adsorption conditions permitted a one‐step purification procedure to be devised for MAbs of IgG class. Culture supernatants containing MAbs were purified by IMAC on commercial‐Zn(II) and EPI‐30–IDA–Zn(II) Sepharose 6B columns and by affinity chromatography on Protein A‐Sepharose CL‐4B. This MAb preparation revealed on SDS–PAGE two protein bands with Mr of 50 and 22 kDa corresponding to the heavy and light chains, respectively. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   
85.
The past decades have witnessed enormous technological improvements towards the development of simple, cost-effective and accurate rapid diagnostic tests for detection and identification of infectious pathogens. Among them is dengue virus, the etiologic agent of the mosquito-borne dengue disease, one of the most important emerging infectious pathologies of nowadays. Dengue fever may cause potentially deadly hemorrhagic symptoms and is endemic in the tropical and sub-tropical world, being also a serious threat to temperate countries in the developed world. Effective diagnostics for dengue should be able to discriminate among the four antigenically related dengue serotypes and fulfill the requirements for successful decentralized (point-of-care) testing in the harsh environmental conditions found in most tropical regions. The accurate identification of circulating serotypes is crucial for the successful implementation of vector control programs based on reliable epidemiological predictions. This paper briefly summarizes the limitations of the main conventional techniques for biomolecular diagnosis of dengue disease and critically reviews some of the most relevant biosensors and rapid diagnostic tests developed, implemented and reported so far for point-of-care testing of dengue infections. The invaluable contributions of microfluidics and nanotechnology encompass the whole paper, while evaluation concerns of rapid diagnostic tests and foreseen technological improvements in this field are also overviewed for the diagnosis of dengue and other infectious and tropical diseases as well.  相似文献   
86.
The method based on capillary electrophoresis with laser-induced fluorescence detection (CE/LIF) was developed for determination of magnetic iron oxide nanoparticles (hydrodynamic diameters of 100 nm) functionalized with molecules containing primary amino groups. The magnetic nanoparticles with carboxylic or aminopropyl-trimethoxysilane groups at their surface were conjugated to the model proteins (bovine serum albumin, BSA; streptavidin or goat anti-rabbit immunoglobulin G, IgG) using carbodiimide as a zero-length cross-linker.The nanoparticle–protein conjugates (hydrodynamic diameter 163–194 nm) were derivatized with naphthalene-2,3-dicarboxaldehyde reagent and separated by CE/LIF with a helium–cadmium laser (excitation at 442 nm, emission at 488 nm). The separations were carried out by using a fused-silica capillary (effective length 48 cm, inner diameter 75 um) and 100 mM sodium borate buffer (pH 9.2), the potential was 30 kV. The detection limit for BSA-conjugate was 1.3 pg/10 nl, i.e. about 20 amol. The present method provides an efficient and fast tool for sensitive determination of the efficacy of biomolecular functionalization of magnetic nanoparticles. The CE/LIF technique requires only negligible sample volumes for analysis, which is especially suitable for controlling the process of preparation of functionalized nanoparticles with unique properties aimed to be used for diagnostic or therapeutic purposes.  相似文献   
87.
2‐Methacrylamidohistidine (MAH) as a pseudospecific ligand was synthesized from methacryl chloride and histidine. Spherical beads with an average size of 50–63 μm were obtained by the radical suspension polymerization of MAH and 2‐hydroxyethyl methacrylate (HEMA) conducted in an aqueous dispersion medium. Owing to the reasonably rough character of the bead surface, P(HEMA‐co‐MAH) beads had a specific surface area of 17.6 m2·g–1. Synthesized MAH was characterized by NMR. P(HEMA‐co‐MAH) beads were characterized by swelling studies, FT‐IR spectroscopy, scanning electron microscopy (SEM) and elemental analysis. P(HEMA‐co‐MAH) affinity beads with a swelling ratio of 65% were used in the separation of human immunoglobulin G (HIgG) from aqueous solutions and human plasma. The maximum HIgG adsorption on the P(HEMA‐co‐MAH) adsorbents was observed at pH 7.4 for phosphate and at pH 6.0 for morpholinoethanesulfonic acid buffers. The HIgG adsorption onto the PHEMA adsorbents was negligible. Higher adsorption values (up to 46.5 mg·g–1) were obtained when the P(HEMA‐co‐MAH) adsorbents were used in aqueous solutions. Much higher amounts of HIgG were adsorbed from human plasma (up to 73.8 mg·g–1). Adsorption capacities of other blood proteins were obtained as 3.2 mg·g–1 for fibrinogen and 4.6 mg·g–1 for albumin. The total protein adsorption was determined to be 82.2 mg·g–1. The pseudospecific affinity beads allowed one‐step separation of HIgG from human plasma. HIgG molecules could be repeatedly adsorbed and desorbed with these adsorbents without noticeable loss in their HIgG adsorption capacity.  相似文献   
88.
A unique interaction has been found between protein G’ (a truncated recombinant bacterial “alphabet” protein which aligns by noncovalent attachment to the antibody stem) and poly(methyl methacrylate), a thermoplastic polymer substrate, which can be easily fabricated using high-rate processes. Significantly improved orientation efficiency with traditional passive adsorption for this system (termed ALYGNSA) has been achieved as compared to the same assay performed on a polystyrene substrate with protein G’. Results were consistent with an average alignment of 80% of the human immunoglobulin G capture antibody which translated into a 30% to 50% improved alignment over an array of industry standards tested. Laser scanning confocal microscopy confirmed the immunological results. Studies of additional poly(methyl methacrylate) polymer derivatives and protein biolinker (A and AG) combinations have been conducted and have revealed different degrees of antibody alignment. These findings may lead to additional novel noncovalent methods of antibody orientation and greater sensitivity in immunological assays.  相似文献   
89.
以柠檬酸三钠作还原剂,采用微波高压合成法制备了粒径约为20 nm的银纳米微粒。在pH 9.0条件下,用银纳米微粒标记羊抗人IgG制备了IgG的免疫纳米银探针(AgGIgG)。在pH为6.0的磷酸盐缓冲溶液及聚乙二醇(PEG)-6000和KCl存在下,IgG与AgGIgG发生免疫反应,裸露的银纳米颗粒在KCl和PEG-6000的作用下发生了聚集,导致体系在485 nm处的共振散射峰增强。考察了pH值、AgGIgG、PEG和KCl浓度,温育温度和时间及共存物质的影响。在最佳条件下,IgG浓度cIgG在4.0~480 ng·mL-1范围内与485 nm处的共振散射光强度增加值ΔI485 nm呈线性关系,回归方程为ΔI485 nm=76.8cIgG+4.7,方法检出限为2.4 ng·mL-1 IgG 。该法用于定量分析血清IgG,简便快速,本法结果与免疫比浊法结果一致。  相似文献   
90.
A new chemilurninescence label N-(β-carboxypropionyl)luminol (CPL) was used to label sheep anti-human IgG (SaHIgG).The labeled antibody was stable and could be detected at least down to 10-17~10-16 mol.The molar incorporation ratio was estimated to be 0.26 mol of CPL per mol of SaHIgG.There were no apparent changes in the immunoreactivity of the labeled SaHIgG and in the quantum efficiency of the CPL after labeling.  相似文献   
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