Search Results - "Sevast'yanov, V. I."

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  1. 1

    Simulation of the development of the mosaic surface structures in polyethylene by Nazarov, V. G., Sevast’yanov, V. I., Stolyarov, V. P., Evlampieva, L. A., Baranov, V. A., Gagarin, M. V.

    Published in Polymer science. Series B (01-10-2009)
    “…Sulfonation of prefluorinated PE films is studied as a tool allowing the development of mosaic (multiplet) surface structures containing fluorinated and…”
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    Journal Article
  2. 2

    Development of an HPLC-UV Method for Quantitative Determination of Acetylsalicylic Acid and Its Main Metabolite by Belov, V. Yu, Kursakov, S. V., Sevast’yanov, V. I., Antonov, E. N., Bogorodskii, S. É., Popov, V. K.

    Published in Pharmaceutical chemistry journal (01-05-2018)
    “…An HPLC-UV method for determination of acetylsalicylic acid and its main metabolite, salicylic acid, in a model solution and in rabbit blood plasma was…”
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    Matrix transdermal systems for caffeine delivery based on polymer and emulsion compounds by Kuznetsova, E. G., Kuryleva, O. M., Salomatina, L. A., Sevast’yanov, V. I.

    Published in Biomedical engineering (01-05-2008)
    “…The goal of this work was to develop and test matrix transdermal therapeutic systems for caffeine delivery. The data on the specific efficiency of the…”
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    Regulation of the biological properties of medical polymer materials with the use of a gas-discharge plasma and vacuum ultraviolet radiation by Vasilets, V. N., Kuznetsov, A. V., Sevast’yanov, V. I.

    Published in High energy chemistry (01-03-2006)
    “…The mechanisms of the interaction of a gas-discharge plasma and vacuum ultraviolet (VUV) radiation with medical polymers were considered. Various techniques…”
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    Supercritical fluid encapsulation of acizol into aliphatic polyether microparticles by Bogorodski, S. E., Krotova, L. I., Kursakov, S. V., Minaeva, S. A., Popov, V. K., Sevast’yanov, V. I.

    Published in Russian journal of physical chemistry. B (01-12-2015)
    “…Encapsulation of pharmaceutical grade acizol (Acizol® pharmaceutical substance) into bioresorbable D,L-polylactide and polylactoglycolide microparticles using…”
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  6. 6

    Determination of acysole in whole blood by high-performance liquid chromatography by Kursakov, S. V., Belov, V. Yu, Sevast’yanov, V. I.

    “…A method is developed for the determination of a carbon monoxide antidote acysole in whole blood using hydrophilic interaction high-performance liquid…”
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  7. 7

    Development and Validation of a Procedure for Acyzole Determination in Whole Human Blood by Kursakov, S. V., Belov, V. Yu, Sevast’yanov, V. I.

    Published in Pharmaceutical chemistry journal (01-07-2014)
    “…7An HPLC procedure using a HILIC column and UV detection was developed for determination of the carbon monoxide antidote acyzole in human blood after…”
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    Supercritical fluid fabrication of components for a sustained-release injectable risperidone dose form by Bagratashvili, V. N., Bogorodskii, S. E., Egorov, A. M., Krotova, L. I., Popov, V. K., Sevast’yanov, V. I.

    Published in Russian journal of physical chemistry. B (01-12-2016)
    “…The process of supercritical fluid encapsulation of pharmaceutical grade risperidone into bioresorbable D,L-polylactide microparticles via the PGSS (Particles…”
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    Journal Article
  9. 9

    Development and Validation of an HPLC-UV Method for Anilocaine Determination in Blood Plasma by Ryzhikova, V. A., Kursakov, S. V., Belov, V. Yu, Sevast’yanov, V. I.

    Published in Pharmaceutical chemistry journal (01-05-2018)
    “…A method for anilocaine determination in rat blood plasma using HPLC with UV-detection was developed. Samples were prepared by liquid—liquid extraction with…”
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  10. 10

    ElastoPHB membrane systems with immobilized bone marrow stromal cells optimize conditions for regeneration of damaged tissue by Potapov, I V, Ilinskii, O M, Kurenkova, L G, Sevastyanov, V I, Egorova, V A, Zaidenov, V A, Rasulov, M F, Onishchenko, N A

    “…The effects of autologous bone marrow stromal cells immobilized on ElastoPHB membranes on reparative processes were studied on a model of rat skeletal muscle…”
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  11. 11

    Plasmochemical modification of fluorocarbon polymers for creation of new hemocompatible materials by Sevast’yanov, V. I., Vasilets, V. N.

    Published in Russian journal of general chemistry (01-03-2009)
    “…The various plasmochemical technique for the surface functionalization and regulation of the biological characteristics of fluorocarbon polymers aimed at the…”
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    Formation of bioactive highly porous polymer matrixes for tissue engineering by Bogorodskii, S. E., Vasilets, V. N., Krotova, L. I., Minaeva, S. A., Mironov, A. V., Nemets, E. A., Surguchenko, V. A., Popov, V. K., Sevast’yanov, V. I.

    “…The processes of fabrication of highly porous (60–90 vol %) bioactive heparin-containing polylactic scaffolds in supercritical carbon dioxide followed by their…”
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  14. 14

    Comparative efficiency of hematologic methods for determining procoagulant activity of biomedical materials by Nemets, E. A., Sevast'yanov, V. I.

    Published in Biomedical engineering (01-11-1999)
    “…The interaction of blood with surfaces of medical devices can have various adverse effects, including thrombosis and thromboembolisms. To increase the…”
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    Comparative study of the influence of polyethylene film surface modification on interaction with blood components by Sevast’yanov, V. I., Nemets, E. A., Stolyarov, V. P., Baranov, V. A., Bozhko, N. N., Nazarov, V. G.

    Published in Inorganic materials : applied research (01-04-2011)
    “…A comparative study of how modification of polyethylene film surfaces performed by plasmachemical treatment and chemical modification by sulfonation and…”
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  17. 17

    Porous Tubular Scaffolds for Tissue Engineering Structures of Small Diameter Blood Vessels by Nemets, E. A., Surguchenko, V. A., Belov, V. Yu, Xajrullina, A. I., Sevastyanov, V. I.

    Published in Inorganic materials : applied research (01-04-2023)
    “…A technology for the formation of porous tubular polymer scaffolds (PTPS) made of polycaprolactone (PCL) with the necessary physical and mechanical…”
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  18. 18

    Three-dimensional scaffold made from recombinant spider silk protein for tissue engineering by Agapov, I. I., Pustovalova, O. L., Moisenovich, M. M., Bogush, V. G., Sokolova, O. S., Sevastyanov, V. I., Debabov, V. G., Kirpichnikov, M. P.

    Published in Doklady. Biochemistry and biophysics (01-06-2009)
    “…The natural polymers (biopolymers) and their derivatives alginates, collagen, gelatin, chitosan, hyaluronic acid, and polyesters of bacterial origin are now…”
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    A new method of administration of the hypoglycemic drug chlorpropamide as a transdermal preparation by Sevast’yanov, V. I., Salomatina, L. A., Yakovleva, N. V., Ur’yash, V. F., Shumakov, V. I.

    Published in Biomedical engineering (01-03-2000)
    “…Conclusions1. It was shown in experimentsin vitro that the sugar-reducing drug chlorpropamide (CP) is able to permeate through non-conserved rabbit skin.2. The…”
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