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Mendeleev Communications, 2022, Volume 32, Issue 1, Pages 117–119
DOI: https://doi.org/10.1016/j.mencom.2022.01.038
(Mi mendc590)
 

This article is cited in 8 scientific papers (total in 8 papers)

Communications

New water-soluble forms of α-tocopherol: preparation and study of antioxidant activity in vitro

S. V. Kurmaza, N. V. Fadeevaa, J. A. Skripetsb, R. I. Komendanta, V. M. Ignatievab, N. S. Emelyanovaa, J. V. Soldatovaa, I. I. Faingolda, D. A. Poletaevaa, R. A. Kotelnikovaa

a Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow Region, Russian Federation
b Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
Full-text PDF (496 kB) Citations (8)
Abstract: Water-soluble forms of α-tocopherol (vitamin E) possessing antioxidant activity in vitro were obtained by encapsulating in N-vinylpyrrolidone with triethylene glycol dimethacrylate polymer particles and were characterized by various physicochemical methods. Quantum-chemical modeling of a structure of α-tocopherol with the copolymer moiety and its theoretical absorption spectra modeling were carried out.
Keywords: N-vinylpyrrolidone, triethylene glycol dimethacrylate, amphiphilic copolymer, α-tocopherol, encapsulation, antioxidant activity.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (1.3 Mb)


Citation: S. V. Kurmaz, N. V. Fadeeva, J. A. Skripets, R. I. Komendant, V. M. Ignatiev, N. S. Emelyanova, J. V. Soldatova, I. I. Faingold, D. A. Poletaeva, R. A. Kotelnikova, “New water-soluble forms of α-tocopherol: preparation and study of antioxidant activity in vitro”, Mendeleev Commun., 32:1 (2022), 117–119
Linking options:
  • https://www.mathnet.ru/eng/mendc590
  • https://www.mathnet.ru/eng/mendc/v32/i1/p117
  • This publication is cited in the following 8 articles:
    1. V. A. Kurmaz, D. V. Konev, S. V. Kurmaz, N. S. Emel'yanova, “Electrochemical Study of the Antitumor Antibiotic Doxorubicin in Its Free Form and Encapsulated in a Biocompatible Copolymer of N-Vinylpyrrolidone and (di)Methacrylates”, Russ J Electrochem, 60:4 (2024), 321  crossref
    2. V. A. Kurmaz, D. V. Konev, S. V. Kurmaz, N. S. Emelyanova, “Electrochemical study of the free form of anti-tumor antibiotic doxorubicin and encapsulated in a biocompatible copolymer of N-vinyl pyrrolidone with (di)methacrylates”, Èlektrohimiâ, 60:4 (2024), 309  crossref
    3. S. V. Kurmaz, I. V. Ulyanov, N. S. Emelyanova, V. A. Kurmaz, A. V. Kozlov, L. R. Sizov, A. Yu. Rybkin, “Nanosized systems of aluminum phthalocyanine and amphiphilic copolymers of N-vinylpyrrolidone with mono- and dimethacrylates for photodynamic therapy and fluorescence diagnostics”, Mendeleev Commun., 34:4 (2024), 492–495  mathnet  crossref
    4. Yuliya V. Soldatova, Irina I. Faingold, Darya A. Poletaeva, Alexei V. Kozlov, Nina S. Emel'yanova, Igor I. Khodos, Dmitry A. Chernyaev, Svetlana V. Kurmaz, “Design and Investigation of New Water-Soluble Forms of α-Tocopherol with Antioxidant and Antiglycation Activity Using Amphiphilic Copolymers of N-Vinylpyrrolidone”, Pharmaceutics, 15:5 (2023), 1388  crossref
    5. Lingling Ma, Tiecheng Gao, Hao Cheng, Ning Li, Weining Huang, Li Liang, “Encapsulation of Folic Acid and α-Tocopherol in Lysozyme Particles and Their Bioaccessibility in the Presence of DNA”, Antioxidants, 12:3 (2023), 564  crossref
    6. S. V. Kurmaz, I. I. Ivanova, N. S. Emelyanova, D. V. Konev, V. A. Kurmaz, N. V. Filatova, A. A. Balakina, A. A. Terentyev, “Doxorubicin compositions with biocompatible terpolymer of N-vinylpyrrolidone, methacrylic acid and triethylene glycol dimethacrylate”, Mendeleev Commun., 33:2 (2023), 255–258  mathnet  crossref
    7. A. A. Puzyrkov, E. A. Popova, A. A. Selyutin, A. V. Eremin, “Polymer-analogous transformations of poly(N-vinylpyrrolidone) to produce new complexing macromolecular systems”, Mendeleev Commun., 33:3 (2023), 362–364  mathnet  crossref
    8. XUEJIN YANG, YUANYUAN ZHOU, XINYI PENG, XIAOHONG FU, JIANQING MA, JIANFENG LIU, DANDAN CAO, “Comparative transcriptome analysis provides insights into the molecular mechanism of the anti-nematode role of Arachis hypogaea (Fabales: Fabaceae) against Meloidogyne incognita (Tylenchida: Heteroderidae)”, BIOCELL, 47:9 (2023), 2101  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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