共 87 条
- [1] Organization W.H., (2021)
- [2] Greenhalgh D.G., Management of burns, N. Engl. J. Med., 380, pp. 2349-2359, (2019)
- [3] Kopecki Z., Development of next-generation antimicrobial hydrogel dressing to combat burn wound infection, Biosci. Rep., 41, (2021)
- [4] Mahmoudi H., Pourhajibagher M., Chiniforush N., Soltanian A.R., Alikhani M.Y., Bahador A., Biofilm formation and antibiotic resistance in meticillin-resistant and meticillin-sensitive Staphylococcus aureus isolated from burns, J. Wound Care, 28, pp. 66-73, (2019)
- [5] Farokhi M., Mottaghitalab F., Babaluei M., Mojarab Y., Kundu S.C., Advanced multifunctional wound dressing hydrogels as drug carriers, Macromol. Biosci., 2200111, (2022)
- [6] Aswathy S., Narendrakumar U., Manjubala I., Commercial hydrogels for biomedical applications, Heliyon, 6, (2020)
- [7] Rezaei F., Damoogh S., Reis R.L., Kundu S.C., Mottaghitalab F., Farokhi M., Dual drug delivery system based on pH-sensitive silk fibroin/alginate nanoparticles entrapped in PNIPAM hydrogel for treating severe infected burn wound, Biofabrication, 13, (2020)
- [8] Motasadizadeh H., Tavakoli M., Damoogh S., Mottaghitalab F., Gholami M., Atyabi F., Farokhi M., Dinarvand R., Dual drug delivery system of teicoplanin and phenamil based on pH-sensitive silk fibroin/sodium alginate hydrogel scaffold for treating chronic bone infection, Biomater. Adv., 139, (2022)
- [9] Zarrin N.K., Mottaghitalab F., Reis R.L., Kundu S.C., Farokhi M., Thermosensitive chitosan/poly (N-isopropyl acrylamide) nanoparticles embedded in aniline pentamer/silk fibroin/polyacrylamide as an electroactive injectable hydrogel for healing critical-sized calvarial bone defect in aging rat model, Int. J. Biol. Macromol., 213, pp. 352-368, (2022)
- [10] Yucel T., Cebe P., Kaplan D.L., Vortex-induced injectable silk fibroin hydrogels, Biophys. J., 97, pp. 2044-2050, (2009)