Аннотация:
New mucoadhesive two-component carriers for drug delivery based on synthetic acrylamide/diethylacrylamide and natural alginate hydrogels have been synthesized. The introduction of sodium alginate into polyacrylamide/ poly(diethylacrylamide) gels, followed by their crosslinking with metal ions, significantly changed structure and properties of hydrogels, such as swelling degree, drug capacity and drug release rate in physiological solution. The structure of the gels was characterized by FTIR spectroscopy and scanning electron microscopy.
Образец цитирования:
M. Yu. Gorshkova, L. V. Vanchugova, I. F. Volkova, I. V. Obydennova, I. L. Valuev, L. I. Valuev, “Novel mucoadhesive carriers based on alginate-acrylamide hydrogels for drug delivery”, Mendeleev Commun., 32:2 (2022), 189–191
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc609
https://www.mathnet.ru/rus/mendc/v32/i2/p189
Эта публикация цитируется в следующих 11 статьяx:
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Shishuai Qiao, Weinan Chen, Xiaoguang Zheng, Li Ma, “Preparation of pH-sensitive alginate-based hydrogel by microfluidic technology for intestinal targeting drug delivery”, International Journal of Biological Macromolecules, 254 (2024), 127649
Juan Yu, Houpei Lin, Jiaxin Peng, Tian Wang, Hao Zhang, Ming Li, Dewei Chu, Keyu Xie, “In situ construction of ultra-stable zincophilic sodium alginate artificial interface layer for dendrite-free anode in aqueous zinc-ion batteries”, Electrochimica Acta, 488 (2024), 144191
D. G. Sinelnikova, O. A. Novoskoltseva, N. G. Loiko, Yu. A. Nikolaev, A. A. Yaroslavov, “Hybrid polycomplexes of anionic alginate with a synthetic cationic polymer: attractive and poisonous for microorganisms”, Mendeleev Commun., 34:1 (2024), 31–33
M. Yu. Gorshkova, I. F. Volkova, E. S. Grigoriyan, S. P. Molchanov, “Structure and properties of hydrogels based on sodium alginate and synthetic polyacids”, Mendeleev Commun., 34:3 (2024), 372–375
Vukasin Ugrinovic, Maja Markovic, Bojan Bozic, Vesna Panic, Djordje Veljovic, “Poly(methacrylic acid) hydrogels crosslinked by poly(ethylene glycol) diacrylate as pH-responsive systems for drug delivery applications”, Hem Ind, 77:4 (2023), 235
V. V. Spiridonov, A. R. Lukmanova, D. V. Pozdyshev, A. A. Markova, Yu. L. Volodina, G. V. Golovina, V. V. Shakhmatov, V. A. Kuzmin, V. I. Muronetz, A. A. Yaroslavov, “Ionically cross-linked micro-sized hydrogels with encapsulated drug: Structure, cell uptake kinetics and cytotoxicity”, Mendeleev Commun., 33:4 (2023), 553–555
E. S. Dolinina, E. V. Parfenyuk, “Effect of hyaluronic acid encapsulation in a silica hydrogel matrix on drug penetration through the skin”, Mendeleev Commun., 33:4 (2023), 556–558
I. I. Preobrazhenskiy, V. I. Putlayev, “The ability to control swelling and degradation processes of hydrogels based on a mixture of PEGMA/PEGDA monomers”, Mendeleev Commun., 33:1 (2023), 83–85
M. Yu. Gorshkova, L. V. Vanchugova, I. F. Volkova, I. V. Obydennova, I. L. Valuev, L. I. Valuev, “Thermosensitive and mucoadhesive hydrogels based on modified alginate as drug carriers”, Mendeleev Commun., 33:6 (2023), 799–801