Аннотация:
Samples of zinc-modified hydroxyapatite (HA) Ca(10−x)Znx(PO4)6(OH)2 with different zinc content (x=0.1 and 0.5) were synthesized by the liquid-phase method. It was found that the addition of zinc affects the original hydroxyapatite structure and changes the parameters of the crystal lattice. The materials obtained show antibacterial activity.
Образец цитирования:
A. A. Gutsalova, D. A. Fedorishin, D. N. Lytkina, I. A. Kurzina, “Bioactive materials for bone regeneration based on zinc-modified hydroxyapatite”, Mendeleev Commun., 31:3 (2021), 382–384
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc937
https://www.mathnet.ru/rus/mendc/v31/i3/p382
Эта публикация цитируется в следующих 5 статьяx:
I. I. Preobrazhenskiy, V. I. Putlayev, “Ceramics based on double magnesium–sodium phosphates for bone regeneration”, Mendeleev Commun., 33:4 (2023), 531–533
Mohammad Ali Saghiri, Julia Vakhnovetsky, Anna Vakhnovetsky, Marina Ghobrial, Devyani Nath, Steven M. Morgano, “Functional role of inorganic trace elements in dentin apatite tissue—Part 1: Mg, Sr, Zn, and Fe”, Journal of Trace Elements in Medicine and Biology, 71 (2022), 126932
Xiaomei Wang, Feng Shi, Dechuan Zhao, Yonggang Yan, “Effect of ZnO-doped magnesium phosphate cements on osteogenic differentiation of mBMSCs in vitro”, Journal of Applied Biomaterials & Functional Materials, 20 (2022)
I. V. Averianov, M. A. Stepanova, I. V. Gofman, A. Lavrentieva, V. A. Korzhikov-Vlakh, E. G. Korzhikova-Vlakh, “Osteoconductive biocompatible 3D-printed composites of poly-d,l-lactide filled with nanocrystalline cellulose modified by poly(glutamic acid)”, Mendeleev Commun., 32:6 (2022), 810–812
M. A. Orlova, A. V. Severin, E. S. Shalamova, I. A. Ivanov, S. S. Belyshev, T. P. Trofimova, “Modified hydroxyapatite as a carrier for 69mZn”, Russ Chem Bull, 70:10 (2021), 2023