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A V Chudinov

Publications and source records attributed to A V Chudinov.

15 recordsLinked to original sources

Hydrogel drop microchips with immobilized DNA: properties and methods for large-scale production.

Although gel-based microchips offer significant advantages over two-dimensional arrays, their use has been impeded by the lack of an efficient manufacturing procedure. Here we describe two simple, fast, and reproducible methods of fabrication of DNA gel drop microchips. In the first, copolymerization method, unsaturated groups are chemically attached to immobilized molecules, which are then mixed with gel-forming monomers. In the second, simpler polymerization-mediated immobilization method, aminated DNA without prior modification is added to a polymerization mixture. Droplets of polymerization mixtures are spotted by a robot onto glass slides and the slides are illuminated with UV light to induce copolymerization of DNA with gel-forming monomers. This results in immobilization of DNA within the whole volume of semispherical gel drops. The first method can be better controlled while the second one is less expensive, faster, and better suited to large-scale production. The microchips manufactured by both methods are similar in properties. Gel elements of the chip are porous enough to allow penetration of DNA up to 500 nucleotides long and its hybridization with immobilized oligonucleotides. As shown with confocal microscope studies, DNA is hybridized uniformly in the whole volume of gel drops. The gels are mechanically and thermally stable and withstand 20 subsequent hybridizations or 30-40 PCR cycles without decrease in hybridization signal. A method for quality control of the chips by staining with fluorescence dye is proposed. Applications of hydrogel microchips in research and clinical diagnostics are summarized.

Acrylamides↗

[Identification of Mycobacterium tuberculosis strains and a simultaneous identification of their drug resistance by the hybridization method on oligonucleotide microchips].

A method of multiplex polymerase chain reaction (PCR) with subsequent hyoridization on oligonucleotide microchips was worked out to identify the Mycobacterium tuberculosis complex and to determine simultaneously the bacterial sensitivity to 2 first-line drugs, i.e. rifampin and isoniazid. The method provides for detecting above 95% of rifampin-resistant and around 80% of isoniazid-resistant strains within 1 day.

Bacterial Proteins↗

[Luminescent ultramicroanalysis for the simultaneous determination of biological and chemical substances: the methodology and the ways for solution].

The next revolution in in-vitro bioaffinity assays will be associated with the minimization of the liquid phase of an experiment and with the extremely rapid detection of a large number of samples. The ultra detection unit is one of the essential elements of such devices. The fluorescence detection systems are most promising. The fluorescence detection limit of europium ions is as low as 10(-15) M in the complex with beta-diketone. The authors' approach to designing new highly effective chelates is to synthesize a stable chelate wherein several molecules of beta-diketones are properly oriented and chemically fixed. The molecular mechanic calculation of three dimensional structure of different Eu chelates should be used in optimizing the strategy of chemical synthesis of new compounds. New chelates can be efficiently used for the development of a new approach to measuring distances equal to over 10 nm in the biological systems. Pesticides also represent challenging targets because the levels of compounds are to be detects in minor concentrations, thus the time-resolution fluorescence assay may have some advantages due to its high sensitivity. DNA-based microbiochips are the most promising area in the practical use of a new chelate. A novel europium chelate is a key compound for the development of new methods for studying biological and chemical objects, as well as new diagnostic systems based on a basically new instrumental base that is characterized by extremely high miniaturization.

Chelating Agents↗

Protein A used in DELFIA for the determination of specific antibodies.

The conditions of protein A labelling with Eu chelates were studied. The conjugates obtained were compared with those from horseradish peroxidase used conventionally in immunochemical practice. Protein A-Eu conjugates were obtained by a method applied previously for antibody labelling with indium and europium chelates using the bicyclic dianhydride of diethylenetriaminepenta-acetic acid (DADTPA) with some modifications. The Eu-labeled protein A ensured a sensitivity of the IgG determination at the level of 2 ng/ml and a dynamic range of the determination from 3 to 1000 ng/ml, which significantly exceed analogous values for the protein A-peroxidase conjugates. The Eu-labeled protein A was used for the determination of antibodies to Francisella tularensis in the sera of humans vaccinated against tularemia. The assay values exceeded by 10-40-fold the results of an ELISA in sensitivity. It was deduced that the Eu-labeled protein A can be effectively used for the determination of antibodies specific to a tularemia causative agent. In particular, this compound can be useful for the determination of specific antibodies in low immune sera.

Antibodies, Bacterial↗

[Synthesis of conjugates of bovine serum albumin with water-soluble ytterbium porphyrins].

The ytterbium complex of 5,10,15,20-tetrakis(4-carboxyphenyl)porphyrin was synthesized as an IR-fluorescent label and covalently bound to bovine serum albumin. The resulting conjugate fluoresces at 985 nm and is of interest for use in IR-fluorescent tumor diagnostic, immunoassay, and energy transfer studies. The English version of the paper: Russian Journal of Bioorganic Chemistry, 2004, vol. 30, no. 1; see also http://www.maik.ru.

Fluorescent Dyes↗

[Fluorescence of meso-tetrakis(4-(carboxy)phenyl)porphine covalently bound to oligonucleotides d(CG)5 and d(TA)5].

The amino-reactive derivative of tetraphenylporphine meso-tetrakis[4-(carboxy)phenyl]porphine (TCPP) was synthesized, which is characterized by a high molar absorption coefficient (epsilon 416 = 36,500 M-1.cm-1). TCPP was covalently attached to oligonucleotides d(CG)5 [d(CG)5-TCPP] and d(TA)5 [d(TA)5-TCPP]. The spectral characteristics of these complexes were studied in 0.01 M phosphate buffer, pH 7 at 23 degrees C. UV-visible absorption spectra of these complexes have a clearly pronounced Soret band at (414 +/- 1) nm for d(CG)5-TCPP and at (412 +/- 1) nm for d(TA)5-TCPP. The fluorescence spectra of these complexes have maxima at (648 +/- 2) nm for d(CG)5-TCPP and at (658 +/- 2) nm for d(TA)5-TCPP. In this study we also determined fluorescence quantum yields q and fluorescence lifetimes tau [q = 0.099 +/- 0.011, tau = (9.0 +/- 0.3) ns for d(CG)5-TCPP and q = 0.080 +/- 0.011, tau = (8.7 +/- 0.3) ns for d(TA)5-TCPP]. A temperature rise from 5 to 50 degrees C produced only slight (within 23%) emission changes in both samples studied. Taking into account: a) high fluorescence yields (q), b) weak dependence of q on temperature, c) weak q dependence of q on the oligonucleotide type, we conclude that TCPP may be used as a sensitive fluorescence label in DNA studies.

Fluorescence↗

[Lanthanide fluorescent immune analysis for determination of hormone thyroxine in dry blood spots].

The determination of thyroxin (T4) is a basic confirmative test for congenital hypothyroidism. 70% cases of this period inborn disease are taking asymptomatic course. We developed immunofluorescent T4-assay in dried blood spots with anti-T4 monoclonal antibody and europium chelate (dianhydride of diethylentriaminipentaacetic acid (DA-DTPA)). This method requires DELFIA Plate Fluorometer 1232 (Wallac, Finland) or its sub modifications. Panel of monoclonal antibodies for T4 has been obtained. Type/subtype (IgG2b, IgG1), affinity constants (10(7)-10(8) M-1), cross reactivity to homologous structures (0-2%) were determined. Stable clones with high affinity and viability were selected for the development of the assay. Conjugates of thyroxin and europium chelate were synthesized. Inclusion of sodium salicylate (2 mg/ml) and EDTA (2 mM) into the buffer reduced the nonspecific signal. Limit for T4 detection (T4 standarts) was 10 nM with not more than 15% variation coefficient. Accuracy was estimated by Bio-Rad Lipochek Immunoassay Plus Control Kit. Obtained results were within control confidence interval.

Antibodies, Monoclonal↗

[Dye with low specificity to nucleotide sequences of DNA: use for assessing the quantity of oligonucleotides, immobilized in cells of biological microchips].

To assess the DNA amount in samples (e.g., in biological microchip gel pads) by means of fluorescent dyes, one should use the dyes whose fluorescence weakly depends on DNA composition and structure. With the ImD-310 dye created for this purpose, we have analyzed the staining of single- and double-stranded oligo- and polynucleotides of different nucleotide composition, length, and concentration both in solution and being immobilized in biological microchip gel pads. It turned out that ImD-310 has no pronounced specificity to the single- and double-stranded nucleotide sequences, while the intensity of fluorescence for the dye complexes with d(A)8, d(T)8, d(C)8, and d(G)8 at high temperatures (50 degrees C) differs by less than 25%. A linear correlation has been established between the intensity of fluorescence and the amount of oligonucleotides immobilized on a biological microchip. The plots of the intensity of fluorescence against the concentration of NaCl and the temperature were obtained. By using a generic microchip containing all 4096 hexamer oligonucleotides, it has been determined that the dye has no distinct specificity to any certain motifs of the nucleotide sequence. Thus, ImD-310 may serve as an efficient fluorescent probe to quickly estimate the amount of oligonucleotides immobilized in a microchip, in an electrophoretic gel, etc.

Base Sequence↗

[Alginate gel microchip for real-time monitoring of intracellular processes in bacterial and yeast cells].

A method of alginate-based hydrogel cell microchip manufacturing is proposed. The development of mild conditions for cell immobilization in microvolumes of non-toxic alginate gel allows extending the range of microorganisms used. Different approaches to cell analysis using microchip have been approved in pilot studies. By the example of Escherichia coli, Bordetella bronchiseptica and Saccharomyces cerevisiae it is shown that cell microchip can be successfully applied for monitoring of nucleic acid and protein synthesis in growing cells simultaneously using two fluorescent dyes. The influence of chloramphenicol on the nucleic acids and protein synthesis in five bacterial strains has been studied on the microchip. The microchip was also applied for the analysis of inducible fluorescent protein EGFP synthesis in E. coli cells, the correlation between the level of EGFP synthesis and concentration of the inductor in the medium has been established.

Alginates↗

[Biochip development for polymorphism analysis in biotransformation system genes].

Large-scale population researches, diagnostics of genetic predisposition to multifactorial diseases, screening of the polymorphic loci associated with individual sensitivity to pharmaceutical preparations, require the development of effective, exact and rapid methods of analysis for detection of many mutations simultaneously. One of the most perspective methods to solve these problems is a method of allele-specific hybridization with biochips. Taking the analysis of mutations in genes CYP1A1, CYP2D6, GSTM1, GSTT1, NAT2, CYP2C9, CYP2C19 and MTHFR as an example we showed the efficiency of using the approach for identification of individual genetic polymorphism. We believe that the biochips can be also a convenient tool in pharmacogenetics researches.

Biotransformation↗

[The design and trial of conjugates for performing lanthanide immunofluorescence analysis].

The possibility of using a number of complexons for labeling of antibodies to Venezuelan equine encephalomyelitis virus and to adenovirus with europium ions was studied. The resultant conjugates, irrespective of the type of complexon, were shown to retain their immunochemical activity and could be used for lanthanide immunofluorescence analysis of virus-specific antigens.

Adenoviridae↗

[Use of 3,3',5,5'-tetramethylbenzidine as substrate in immunoenzyme analysis].

The possibility of using 3,3",5,5'-tetramethylbenzidine and its derivatives in solid-phase enzyme immunoassay and in dot enzyme immunoassay on membrane filters has been demonstrated in experiments with arboviruses. All the tested substrates were fit for specific indication of viral antigens and provided an adequate sensitivity of analyses in comparison with the routinely used substrates, ortho-phenylenediamine and ortho-toluidine. An important advantage of the tested substrates is the absence of carcinogenicity.

Antigens, Viral↗

[Europium-labelled Staphylococcus aureus protein A as a reagent for determining specific antibodies].

In this work the conditions of labeling protein A with europium ions were studied and the conjugates obtained in this study were compared with traditional peroxidase conjugates currently used in immunochemistry. The conjugates of protein A with Eu3+ chelate were obtained with the use of cyclic dianhydride of diethylenetriaminepentaacetic acid (DADETPA). Conjugation methods with the use of DADETPA was shown to permit obtaining high-quality conjugates with europium chelates. Europium-labeled protein A ensured the sensitivity of the determination of adsorbed IgG at a level of 2 ng/ml and the dynamic analytical range within 3-1,000 ng/ml, which essentially exceeded similar characteristics of peroxidase conjugates with protein A. Europium-labeled protein A was used for the detection of antibodies to Francisella tularensis in the sera of humans immunized against tularemia. The sensitivity of this assay exceeded that of the enzyme immunoassay 10- to 40-fold. A conclusion was made on the possibility of using europium labelled protein A for the determination of specific antibodies to F.tularensis. This preparation may be useful in the determination of specific antibodies in low-immune sera.

Adolescent↗