Galatenko N. A., Vislohuzova T. V., Rozhnova R. A., Narazhayko L. F.
PERSPECTIVE COMPOSITE MATERIAL BASED ON EPOXYPOLYURETHANE WITH A PROLONGED ACTION OF FERROCENE FOR MEDICINE
Show/Download
About the author:
Galatenko N. A., Vislohuzova T. V., Rozhnova R. A., Narazhayko L. F.
Heading:
CLINICAL AND EXPERIMENTAL MEDICINE
Type of article:
Scientific article
Annotation:
The development of implant materials for bone tissue with improved physical-mechanical, and biological characteristics remains a relevant task in the field of creating polymeric materials for medical use. Therefore, the goal of our work was to create a polymer composites based on epoxypolyurethane (EPU) with ferrocene as a filler to obtain a material with improved physical-mechanical, and biological characteristics for medical use. Using tissue culture and fibroblasts, the concentration of the biologically active substance was determined, which, as part of the polymer carrier, does not lead to toxic effects. It was found that a 0.001% ferrocene solution had a stimulating effect in the early stages of cultivation, compared to the control, and also slowed down the cell degeneration process on the 10th day of the study. The physical-mechanical properties of fumarate-containing epoxy-polyurethanes depend not only on the presence of ferrocene in their composition but also on its concentration, allowing the creation of polymer materials with specified characteristics. According to the results of spectrophotometric studies, it was established that the studied composites are capable of prolonged release of ferrocene from the polymer matrix of the tested composites. The amount of ferrocene released over 30 days constitutes 53% of the total introduced filler amount. Thus, the introduction of a biologically active substance into the epoxy-polyurethane polymer matrix enables the creation of implants based on them, which can be used not only for bone fixation but also for therapeutic purposes.
Tags:
Bibliography:
- Gorbunova NO, Nechaeva LYu, Kulesh DV, Roznova RA, Galatenko NA. Biosumisnyi polimernyi kompozytsiinyi material dlia osteosyntezu z prolonhovanoiu diieiu protytuberkuloznoho preparatu. Polymer Journal. 2011;33(2):181-185. [in Ukrainian].
- Galatenko NA, Gorbunova NO, Astapenko OS, Rozhnov AS. Perspektyvy vykorystannia epoksypoliuretanovykh kompozytsiinykh materialiv u stomatolohii. Polymer Journal. 2015;37(1):3-10. [in Ukrainian].
- Svoderskiy VP, Konstantinova TE, Glazunova VA, Kirichenko LM, Vodjanyi VI, Zaharchuk JO. Doslidzhennia mekhanichnykh i antyfryktsiinykh vlastyvostei ftoroplastovykh karboplastykiv, modyfikovanykh nanoporoshkamy dioksydu tsyrkoniiu. Problems of Tribology. 2014;2:103-110. [in Ukrainian].
- Buketov AV, Brailo MV. Influence of fine mineral additives on the properties of polymer composites. Issues of Chemistry and Chemical Technology. 2014;1:39-43.
- Sharma B, Kumar V. Has Ferrocene Really Delivered Its Role in Accentuating the Bioactivity of Organic Scaffolds? Journal of Medicinal Chemistry. 2021;64(23):16865-16921. DOI: 10.1021/acs.jmedchem.1c00390.
- Peter S, Aderibigbe BA. Ferrocene-Based Compounds with Antimalarial/Anticancer Activity. Molecules. 2019;24(19):3604. DOI: 10.3390/molecules24193604.
- Patra M, Gasser G. The medicinal chemistry of ferrocene and its derivatives. Nature Reviews Chemistry. 2017;1(9):0066. DOI: 10.1038/s41570-017-0066.
- Larik FA, Saeed A, Fattah TA, Muqadar U, Channar PA. Recent advances in the synthesis, biological activities and various applications of ferrocene derivatives. Applied Organometallic Chemistry. 2016;31(8):e3664. DOI: 10.1002/aoc.3664.
- Sharma S. A Short Review of Past, Present, and Future of Metallocene and Its Derivatives as an Effective Therapeutic Agent. Journal of Applied Organometallic Chemistry. 2023;3(2):142-155. DOI: 10.22034/jaoc.2023.398871.1083.
- Ornelas C, Astruc D. Ferrocene-Based Drugs, Delivery Nanomaterials, and Fenton Mechanism: State of the Art, Recent Developments, and Prospects. Pharmaceutics. 2023;15(8):2044. DOI: 10.3390/pharmaceutics15082044.
- Makeieva LV, Gladyr II, Roznova RA, Kulyesh DV, Zakashun TU, Gryzenko VP. Vyvchennia biolohichnoi aktyvnosti ta biosumisnosti poliuretansechovyn z fizychno immobilizovanym folat-koniuhovanym ferotsenom. Polymer Journal. 2014;36(4):434-439. [in Ukrainian].
- Rudenchyk TV, Roznova RA, Bondarenko PO, Demchenko IB, Kiselova TO. The Synthesis and study of new fumarate-containing polyurethanes. Reports of the National Academy of Sciences of Ukraine. 2012;5:146-151.
- ASTM International. ASTM D897-08(2016) Standard Test Method for Tensile Properties of Adhesive Bonds. West Conshohocken: ASTM International; 2016. 3 p.
- Lebediev YeV, Konstantinov YuB, Galatenko NA, Yatsenko VP, Rozhnova RA, Maksymenko VB. Toksykoloho-hihiienichni ta Doklinichni Doslidzhennia Polimernykh Materialiv i Vyrobiv na yikh Osnovi Medychnoho Pryznachennia. Kyiv: Naukova dumka; 2009. 98 s. [in Ukrainian].
- Rozhnova RA, Galatenko NA, Lukashevich SA, Shyrokov OD, Levenets YeG. Nanokompozytsiini epoksypoliuretanovi materialy, shcho napovneni fulerytom. Reports of the National Academy of Sciences of Ukraine. 2015;11:91-97. [in Ukrainian].
- Rudenchyk TV, Roznova RA, Kulesh DV, Demchenko IB, Galatenko NA, Kebuladze IM. Research of biocompatibility of new epoxypolyurethane compositions of medical use. Plastic and reconstructive surgery. 2012;19(2):53-59.
Publication of the article:
«Bulletin of problems biology and medicine», 2024 Issue 4, 175, 288-298 pages, index UDC 678.664:678.686:617.5