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Egorikhina, M.N.; Rubtsova, Y.P.; Linkova, D.D.; Charykova, I.N.; Farafontova, E.A.; Aleinik, D.Y. Specifics of Cryopreservation of Hydrogel Biopolymer Scaffolds with Encapsulated Mesenchymal Stem Cells. Polymers 2024, 16, 247. https://doi.org/10.3390/polym16020247
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Semenycheva, L.; Chasova, V.O.; Pegeev, N.L.; Uromicheva, M.A.; Mitin, A.V.; Kuznetsova, Y.L.; Farafontova, E.A.; Rubtsova, Y.P.; Linkova, D.D.; Egorikhina, M.N. Production of Graft Copolymers of Cod Collagen with Butyl Acrylate and Vinyl Butyl Ether in the Presence of Triethylborane—Prospects for Use in Regenerative Medicine. Polymers 2023, 15, 3159. https://doi.org/10.3390/polym15153159
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Beschastnov, V.V.; Egorikhina, M.N.; Tulupov, A.A.; Pogodin, I.E.; Orlinskaya, N.Y.; Antoshina, V.V.; Shirokova, I.Y.; Ryabkov, M.G. Immobilization of Bacteriophages in Ex Tempore Hydrogel for the Treatment of Burn Wound Infection. Gels 2023, 9, 625. https://doi.org/10.3390/gels9080625
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Kuznetsova, Y.L.; Gushchina, K.S.; Lobanova, K.S.; Chasova, V.O.; Egorikhina, M.N.; Grigoreva, A.O.; Malysheva, Y.B.; Kuzmina, D.A.; Farafontova, E.A.; Linkova, D.D.; et al. Scaffold Chemical Model Based on Collagen—Methyl Methacrylate Graft Copolymers. Polymers 2023, 15, 2618. https://doi.org/10.3390/polym15122618
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Egorikhina, M.N.; Timofeeva, L.B.; Linkova, D.D.; Rubtsova, Y.P.; Bugrova, M.L.; Charykova, I.N.; Ryabkov, M.G.; Kobyakova, I.I.; Farafontova, E.A.; Aleynik, D.Y. Biocompatibility Study of Hydrogel Biopolymer Scaffold with Encapsulated Mesenchymal Stem Cells. Polymers 2023, 15, 1337. https://doi.org/10.3390/polym15061337
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Egorikhina MN, Kobyakova II, Charykova IN, Linkova DD, Rubtsova YP, Farafontova EA, Aleynik DY. Application of hydrogel wound dressings in cell therapy-approaches to assessment in vitro. Int J Burns Trauma. 2023 Apr 15;13(2):13-32. PMID: 37215513; PMCID: PMC10195216.
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Egorikhina, M.N.; Bokov, A.E.; Charykova, I.N.; Rubtsova, Y.P.; Linkova, D.D.; Kobyakova, I.I.; Farafontova, E.A.; Kalinina, S.Y.; Kolmogorov, Y.N.; Aleynik, D.Y. Biological Characteristics of Polyurethane-Based Bone-Replacement Materials. Polymers 2023, 15, 831. https://doi.org/10.3390/polym15040831
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Yudin, V.V.; Shurygina, M.P.; Egorikhina, M.N.; Aleynik, D.Y.; Linkova, D.D.; Charykova, I.N.; Kovylin, R.S.; Chesnokov, S.A. Pore Structure Tuning of Poly-EGDMA Biomedical Material by Varying the O-Quinone Photoinitiator. Polymers 2023, 15, 2558. https://doi.org/10.3390/polym15112558
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Kuznetsova, Y.L.; Sustaeva, K.S.; Mitin, A.V.; Zakharychev, E.A.; Egorikhina, M.N.; Chasova, V.O.; Farafontova, E.A.; Kobyakova, I.I.; Semenycheva, L.L. Graft Polymerization of Acrylamide in an Aqueous Dispersion of Collagen in the Presence of Tributylborane. Polymers 2022, 14, 4900. https://doi.org/10.3390/polym14224900
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Semenycheva LL, Egorikhina MN*, Chasova VO, Valetova NB, Fukina DG, Sukhareva AA, Ostrosablin AN, Kobyakova II, Farafontova EA and Yu P Rubtsova. An Environmentally Friendly Solution Related to the Use of Fish Production Waste to Manufacture New Materials for Biomedicine. Examines Mar Biol Oceanogr. 5(1). EIMBO. 000606. 2022. DOI: 10.31031/EIMBO.2022.05.000606
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Linkova, D.D.; Rubtsova, Y.P.; Egorikhina, M.N. Cryostorage of Mesenchymal Stem Cells and Biomedical Cell-Based Products. Cells 2022, 11, 2691. https://doi.org/10.3390/cells11172691
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Kuznetsova, Y.; Gushchina, K.; Sustaeva, K.; Mitin, A.; Egorikhina, M.; Chasova, V.; Semenycheva, L. Grafting of Methyl Methacrylate onto Gelatin Initiated by Tri-Butylborane—2,5-Di-Tert-Butyl-p-Benzoquinone System. Polymers 2022, 14, 3290. https://doi.org/10.3390/polym14163290
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Elnara R. Zhiganshina, Maxim V. Arsenyev, Dmytro A. Chubich, Danila A. Kolymagin, Anastasia V. Pisarenko, Dmitry S. Burkatovsky, Evgeny V. Baranov, Alexei G. Vitukhnovsky, Andrew N. Lobanov, Rilond P. Matital, Diana Ya. Aleynik, Sergey A. Chesnokov, Tetramethacrylic benzylidene cyclopentanone dye for one- and two-photon photopolymerization, European Polymer Journal, Volume 162, 2022, 110917, ISSN 0014-3057, https://doi.org/10.1016/j.eurpolymj.2021.110917.
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Bulanov EN, Stasenko KS, Golitsyna ON, Egorikhina MN, Aleynik DY, Skoblikow NE, Knyazev AV. Crystal-chemical and morphological interpretation of the biocompatibility of compounds in a Ca-Na-Bi-fluorapatite system. Dalton Trans. 2022 Jan 17;51(3):969-977. doi: 10.1039/d1dt03558d. PMID: 34931203.
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Egorikhina, M.N.; Bronnikova, I.I.; Rubtsova, Y.P.; Charykova, I.N.; Bugrova, M.L.; Linkova, D.D.; Aleynik, D.Y. Aspects of In Vitro Biodegradation of Hybrid Fibrin–Collagen Scaffolds. Polymers 2021, 13, 3470. https://doi.org/10.3390/polym13203470
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Chasova, V., Semenycheva, L., Egorikhina, M. et al. Cod Gelatin as an Alternative to Cod Collagen in Hybrid Materials for Regenerative Medicine. Macromol. Res. 30, 212–221 (2022). https://doi.org/10.1007/s13233-022-0017-9
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Egorikhina, M.N.; Semenycheva, L.L.; Chasova, V.O.; Bronnikova, I.I.; Rubtsova, Y.P.; Zakharychev, E.A.; Aleynik, D.Y. Changes in the Molecular Characteristics of Bovine and Marine Collagen in the Presence of Proteolytic Enzymes as a Stage Used in Scaffold Formation. Mar. Drugs 2021, 19, 502. https://doi.org/10.3390/md19090502
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·Egorikhina, M.N.; Rubtsova, Y.P.; Aleynik, D.Y. Long-Term Cryostorage of Mesenchymal Stem Cell-Containing Hybrid Hydrogel Scaffolds Based on Fibrin and Collagen. Gels 2020, 6, 44. https://doi.org/10.3390/gels6040044
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Bulanov, E.N., Stasenko, K.S., Aleynik, D.Y. et al. Making bioceramics from CaBiPO-apatite. Bull Mater Sci 44, 17 (2021). https://doi.org/10.1007/s12034-020-02324-y
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Chesnokov SA, Aleynik DY, Kovylin RS, Yudin VV, Egiazaryan TA, Egorikhina MN, Zaslavskaya MI, Rubtsova YP, Gusev SA, Mlyavykh SG, Fedushkin IL. Porous Polymer Scaffolds based on Cross-Linked Poly-EGDMA and PLA: Manufacture, Antibiotics Encapsulation, and In Vitro Study. Macromol Biosci. 2021 May;21(5):e2000402. doi: 10.1002/mabi.202000402. Epub 2021 Mar 23. PMID: 33759338.
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Marfa N. Egorikhina, Diana Ya Aleynik, Yulia P. Rubtsova, Irina N. Charykova, Quantitative analysis of cells encapsulated in a scaffold, MethodsX, Volume 7, 2020, 101146, ISSN 2215-0161, https://doi.org/10.1016/j.mex.2020.101146.
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Morozov, A.G., Razborov, D.A., Egiazaryan, T.A. et al. In Vitro Study of Degradation Behavior, Cytotoxicity, and Cell Adhesion of the Atactic Polylactic Acid for Biomedical Purposes. J Polym Environ 28, 2652–2660 (2020). https://doi.org/10.1007/s10924-020-01803-x
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Egorikhina, M.N.; Rubtsova, Y.P.; Charykova, I.N.; Bugrova, M.L.; Bronnikova, I.I.; Mukhina, P.A.; Sosnina, L.N.; Aleynik, D.Y. Biopolymer Hydrogel Scaffold as an Artificial Cell Niche for Mesenchymal Stem Cells. Polymers 2020, 12, 2550. https://doi.org/10.3390/polym12112550
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Semenycheva LL, Egorikhina MN, Chasova VO, Valetova NB, Kuznetsova YL, Mitin AV. Enzymatic Hydrolysis of Marine Collagen and Fibrinogen Proteins in the Presence of Thrombin. Mar Drugs. 2020 Apr 11;18(4):208. doi: 10.3390/md18040208. PMID: 32290502; PMCID: PMC7230862.
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Bulanov, E., Silina, N., Lelet, M. et al. Study of physicochemical properties of nanohydroxyapatite–chitosan composites. Bull Mater Sci 43, 91 (2020). https://doi.org/10.1007/s12034-020-2065-0
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Yudin V. V. et al. Visible-light induced synthesis of biocompatible porous polymers from oligocarbonatedimethacrylate (OСM-2) in the presence of dialkyl phthalates // Polymer. 2020. Vol. 192. p. 122302.
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Marfa N. Egorikhina, Diana Ya Aleynik, Yulia P. Rubtsova, Grigory Ya Levin, Irina N. Charykova, Ludmila L. Semenycheva, Marina L. Bugrova, Evgeniy A. Zakharychev, Hydrogel scaffolds based on blood plasma cryoprecipitate and collagen derived from various sources: Structural, mechanical and biological characteristics, Bioactive Materials, Volume 4, 2019, Pages 334-345, ISSN 2452-199X, https://doi.org/10.1016/j.bioactmat.2019.10.003.
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Yudin, V.V.; Kulikova, T.I.; Morozov, A.G.; Egorikhina, M.N.; Rubtsova, Y.P.; Charykova, I.N.; Linkova, D.D.; Zaslavskaya, M.I.; Farafontova, E.A.; Kovylin, R.S.; et al. Features of Changes in the Structure and Properties of a Porous Polymer Material with Antibacterial Activity during Biodegradation in an In Vitro Model. Polymers 2024, 16, 379. https://doi.org/10.3390/polym16030379
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Aleynik, D.Y.; Bokov, A.E.; Charykova, I.N.; Rubtsova, Y.P.; Linkova, D.D.; Farafontova, E.A.; Egorikhina, M.N. Functionalization of Osteoplastic Material with Human Placental Growth Factor and Assessment of Biocompatibility of the Resulting Material In Vitro. Pharmaceutics 2024, 16, 85. https://doi.org/10.3390/pharmaceutics16010085