Search Results - "Dezhurov, S V"

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  1. 1

    Biodistribution and stability of CdSe core quantum dots in mouse digestive tract following per os administration: Advantages of double polymer/silica coated nanocrystals by Loginova, Y.F., Dezhurov, S.V., Zherdeva, V.V., Kazachkina, N.I., Wakstein, M.S., Savitsky, A.P.

    “…► New QDs coated with combination of polythiol ligands and silica shell were synthesized. ► We examine the QDs stability in digestive tract of mice after per…”
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  2. 2

    Evaluation of the Ophthalmotoxic Effect of Quantum Dots and Bioconjugates Based on Them in Terms of the Prospects for the Treatment of Resistant Endophthalmitis. Experimental Research (Stage 1) by Ponomarev, V. O., Kazaykin, V. N., Lizunov, A. V., Vokhmintsev, A. S., Vainshtein, I. A., Dezhurov, S. V.

    Published in Oftalmologii͡a (01-10-2021)
    “…Endophthalmitis remains one of the most formidable complications of surgery in ophthalmology, leading to significant functional and anatomical changes. The…”
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    3'-5' exonuclease activity of human apurinic/apyrimidinic endonuclease 1 towards DNAs containing dNMP and their modified analogs at the 3 end of single strand DNA break by Dyrkheeva, N S, Khodyreva, S N, Sukhanova, M V, Safronov, I V, Dezhurov, S V, Lavrik, O I

    Published in Biochemistry (Moscow) (01-02-2006)
    “…Human DNA apurinic/apyrimidinic (AP-) endonuclease 1 (APE1) is involved in the base excision repair (BER) pathway. The enzyme hydrolyzes DNA from the 5 side of…”
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  5. 5

    Development of a toolkit for early precision immunochromatographic diagnosis by Krylsky, D. V., Gushchin, A. P., Gushchin, S. A., Dezhurov, S. V., Morenkov, O. S., Gladyshev, P. P., Vasiliev, A. A.

    “…A device is developed for automated immunochromatographic assay, designed for one-time tests at the place of occurrence of a disease. The device comprises a…”
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  6. 6

    Highly efficient modification of DNA polymerase β under conditions of direct and sensitized activation of photoreactive DNAs. Modification of cell extract proteins by Dezhurov, S. V., Grin, I. R., Safronov, I. V., Shishkin, G. V., Lavrik, O. I., Khodyreva, S. N.

    Published in Russian chemical bulletin (01-05-2005)
    “…dUTP and dCTP derivatives containing a 4-azido-2,3,5,6-tetrafluorobenzylideneaminooxy group were incorporated into the 3'-end of the DNA primer within…”
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  7. 7

    A new binary system for photosensitized labeling of DNA polymerases in nuclear extract by Lebedeva, N A, Rechkunova, N I, Dezhurov, S V, Khodyreva, S N, Favre, A, Lavrik, O I

    Published in Biochemistry (Moscow) (01-04-2003)
    “…A binary system of reagents was used for photosensitized labeling of proteins of bovine testis nuclear extract. A dUTP analog containing…”
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  8. 8

    A New Highly Efficient Photoreactive Analogue of dCTP. Synthesis, Characterization, and Application in Photoaffinity Modification of DNA Binding Proteins by Dezhurov, Sergey V, Khodyreva, Svetlana N, Plekhanova, Ekaterina S, Lavrik, Olga I

    Published in Bioconjugate chemistry (01-01-2005)
    “…A new base-substituted analogue of dCTP, exo-N-{2-[N-(4-azido-2,5-difluoro-3-chloropyridine-6-yl)-3-aminopropionyl]aminoethyl}-2‘-deoxycytidine-5‘-triphosphate…”
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  9. 9

    Synthesis of highly photostable NIR-emitting quantum dots CdTeSe/CdS/CdZnS/ZnS by Dezhurov, S. V., Trifonov, A. Yu, Lovygin, M. V., Rybakova, A. V., Krylsky, D. V.

    Published in Nanotechnologies in Russia (01-05-2016)
    “…The use of near IR (NIR) fluorescent labels is promising in such areas as molecular biology, diagnostics and imaging, because this spectrum region is absorbed…”
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    Перспективы применения наночастиц Ag(10%):InP/ZnS MPA в лечении дрожжевых кератомикозов by Ponomarev, V O, Kazaikin, V N, Dezhurov, S V, Rozanova, S M, Kyrf, M V, Timofeev, V L

    “…Актуальность. Резистентные грибковые кератиты (кератомикозы) зы) - это большая проблема в современной офтальмологии. Ограниченный арсенал лекарственных средств…”
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  12. 12

    Analyzing the Handoff of DNA from UvrA to UvrB Utilizing DNA-Protein Photoaffinity Labeling by DellaVecchia, Matthew J, Croteau, Deborah L, Skorvaga, Milan, Dezhurov, Sergey V, Lavrik, Olga I, Van Houten, Bennett

    Published in The Journal of biological chemistry (22-10-2004)
    “…To better define the molecular architecture of nucleotide excision repair intermediates it is necessary to identify the specific domains of UvrA, UvrB, and…”
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  13. 13

    Photoreactive dTTP analogues as substrates for thermostable DNA polymerase from Thermus thermophilus B35 by Lebedeva, N A, Rechkunova, N I, Dezhurov, S V, Degtiarev, S Kh, Lavrik, O I

    Published in Bioorganicheskaia khimiia (01-07-2004)
    “…Substrate properties of several dTTP analogues bearing a photoreactive 2-nitro-5-azidobenzoyl (NAB) group attached at position 5 of uracil through linkers of…”
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  14. 14

    Comparison of functional properties of mammalian DNA polymerase λ and DNA polymerase β in reactions of DNA synthesis related to DNA repair by Lebedeva, Natalia A., Rechkunova, Nadejda I., Dezhurov, Sergey V., Khodyreva, Svetlana N., Favre, Alain, Blanco, Luis, Lavrik, Olga I.

    Published in Biochimica et biophysica acta (10-08-2005)
    “…DNA polymerase λ (Pol λ) is a novel enzyme of the family X of DNA polymerases. Pol λ has some properties in common with DNA polymerase β (Pol β). The substrate…”
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  15. 15

    Comparative study of the efficacy of modifying DNA polymerase and DNA matrix by different photoactive groups at the 3'-end of the DNA primer by Dezhurov, S V, Khodyreva, S N, Rechkunova, N I, Kolpashchikov, D M, Lavrik, O I

    Published in Bioorganicheskaia khimiia (01-01-2003)
    “…The dependence of the modification efficiency of DNA polymerases and DNA template on the nature of photoactivatable group and the length of the linker that…”
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  16. 16

    New reagents for affinity modification of biopolymers. Photoaffinity modification of Tte-DNA polymerase by Kolpashchikov, D M, Zakharenko, A L, Dezhurov, S V, Rechkunova, N I, Khodyreva, S N, Degtiarev, S Kh, Litvak, V V, Lavrik, O I

    Published in Bioorganicheskaia khimiia (01-02-1999)
    “…Arylazides N-(4-azido-2,5-difluoro-3-chloropyridinyl-6)-beta-alanine (Ia) and N-(4-azido-2,5-difluoro-3-chloropyridinyl-6)-glycine (Ib) were synthesized and…”
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