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Библиографические ссылки статьи: “Оценка функциональной активности нейтрофилов с применением красителей феноксазинового ряда”
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    A. Ulfig, L. Leichert

    Cellular and Molecular Life Sciences. 2021, 78, 385-414

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    C. Nathan, A. Cunningham-Bussel

    Nature Reviews Immunology. 2013, 13, 349-361

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    H. Rosen, S. Klebanoff

    Journal of Experimental Medicine. 1979, 149, 27-39

  4. The Role of Thiocyanate in Modulating Myeloperoxidase Activity during Disease

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  5. Halogenation Activity of Mammalian Heme Peroxidases

    J. Arnhold, E. Malle

    Antioxidants. , 11, 890

  6. Role of myeloperoxidase and oxidant formation in the extracellular environment in inflammation-induced tissue damage

    C. Hawkins, M. Davies

    Free Radical Biology and Medicine. 2021, 172, 633-651

  7. Increased myeloperoxidase activity as an indicator of neutrophil-induced inflammation and sepsis in neonates

    Gammasy TMA, Abushady NM, Hamza MT, Shaker R

    Egyptian Journal of Pediatric Allergy and Immunology (The). 2015, 13, 15-20

  8. Myeloperoxidase as an Active Disease Biomarker: Recent Biochemical and Pathological Perspectives

    A. Khan, M. Alsahli, A. Rahmani

    Medical Sciences. , 6, 33

  9. Хлорноватистая кислота как предшественник свободных радикалов в живых системах

    Панасенко ОМ, Горудко ИВ, Соколов АВ.

    Успехи Биологической Химии. 2013, 53, 195-244

  10. Biochemical basis and metabolic interplay of redox regulation

    L. Zhang, X. Wang, R. Cueto, C. Effi, Y. Zhang, H. Tan, X. Qin, Y. Ji, X. Yang, H. Wang

    Redox Biology. 2019, 26, 101284

  11. Absolute Rate Constants for the Reaction of Hypochlorous Acid with Protein Side Chains and Peptide Bonds

    D. Pattison, M. Davies

    Chemical Research in Toxicology. 2001, 14, 1453-1464

  12. Optical probes for detection and quantification of neutrophils’ oxidative burst. A review

    M. Freitas, J. Lima, E. Fernandes

    Analytica Chimica Acta. 2009, 649, 8-23

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    J. Thomas

    Chemical Society Reviews. , 44, 4494-4500

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    J. Huang, A. Milton, R. Arnold, H. Huang, F. Smith, J. Panizzi, P. Panizzi

    Journal of Leukocyte Biology. 2016, 99, 541-548

  15. Флуоресцентные зонды для обнаружения хлорноватистой кислоты в живых клетках.

    Реут ВЕ, Горудко ИВ, Григорьева ДВ, Соколов АВ, Панасенко ОМ.

    Биоорганическая Химия. 2022, 48, 415-41

  16. A Novel Phenoxazine-based Fluorescent Probe for the Detection of HOCl in Living Cells

    J. Yang, Y. Yao, Y. Shen, Y. Xu, G. Lv, C. Li

    Zeitschrift für anorganische und allgemeine Chemie. 2020, 646, 431-436

  17. A novel near-infrared fluorescent probe based on phenoxazine for the specific detection of HOCl

    J. Yang, W. Zheng, Y. Shen, Y. Xu, G. Lv, C. Li

    Journal of Luminescence. 2020, 226, 117460

  18. The near-infrared fluorescent probes based on phenoxazine for the rapid detection of hypochlorous acid

    W. Zheng, J. Yang, Y. Shen, Y. Yao, G. Lv, S. Hao, C. Li

    Dyes and Pigments. 2020, 179, 108404

  19. Synthetic, biological and optoelectronic properties of phenoxazine and its derivatives: a state of the art review

    Sadhu C, Mitra AK.

    Mol Divers. 2023, ,

  20. Галлоцианин как флуороген для выявления NADPH-зависимой продукции супероксидного анион-радикала клетками крови

    О. Панасенко, В. Реут, И. Бородина, Д. Матюшкина, В. Иванов, Д. Григорьева, И. Горудко, А. Соколов, С. Черенкевич

    Биоорганическая химия. 2021, 47, 153-161

  21. New Application of the Commercially Available Dye Celestine Blue B as a Sensitive and Selective Fluorescent “Turn-On” Probe for Endogenous Detection of HOCl and Reactive Halogenated Species

    V. Reut, S. Kozlov, I. Kudryavtsev, N. Grudinina, V. Kostevich, N. Gorbunov, D. Grigorieva, J. Kalvinkovskaya, S. Bushuk, E. Varfolomeeva, N. Fedorova, I. Gorudko, O. Panasenko, V. Vasilyev, A. Sokolov

    Antioxidants. , 11, 1719

  22. The actin cytoskeleton regulates exocytosis of all neutrophil granule subsets

    N. Jog, M. Rane, G. Lominadze, G. Luerman, R. Ward, K. McLeish

    American Journal of Physiology-Cell Physiology. 2007, 292, C1690-C1700

  23. The Role of Protein Kinase C and [Ca2+]i in Superoxide Anion Synthesis and Myeloperoxidase Degranulation of Human Neutrophils.

    J. NAGAJI

    The Kurume Medical Journal. 1999, 46, 157-162

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    K. Setsukinai, Y. Urano, K. Kakinuma, H. Majima, T. Nagano

    Journal of Biological Chemistry. 2003, 278, 3170-3175

  25. Use of Flow Cytometry for Quality Evaluation of Biomedical Cell Products

    G. Trusov, A. Chaplenko, I. Semenova, E. Melnikova, Y. Olefir

    BIOpreparations. Prevention, Diagnosis, Treatment. , 18, 16-24