Fraczyk Justyna, Wasko Joanna, Walczak Malgorzata, Kaminski Zbigniew J, Puchowicz Dorota, Kaminska Irena, Bogun Maciej, Kolasa Marcin, Stodolak-Zych Ewa, Scislowska-Czarnecka Anna, Kolesinska Beata
Institute of Organic Chemistry, Faculty of Chemistry, Lodz University of Technology, Zeromskiego 116, 90-924 Lodz, Poland.
Lukasiewicz Research Network-Textile Research Institute, Brzezinska 5/15, 92-103 Lodz, Poland.
Materials (Basel). 2020 Jan 11;13(2):337. doi: 10.3390/ma13020337.
Current restrictions on the use of antibiotics, associated with increases in bacterial resistance, require new solutions, including materials with antibacterial properties. In this study, copper alginate fibers obtained using the classic wet method were used to make nonwovens which were modified with arginine-glycine-aspartic acid (RGD) derivatives. Stable polysaccharide-peptide conjugates formed by coupling with 4-(4,6-dimethoxy-1,3,5-triazin-2-yl)-4-methylmorpholinium toluene-4-sulfonate (DMT/NMM/TosO), and materials with physically embedded RGD derivatives, were obtained. The materials were found to be characterized by very high antibacterial activity against and . Cytotoxicity studies confirmed that the materials are not cytotoxic. Copper alginate conjugates with RGD peptides have strong potential for use in regenerative medicine, due to their biocompatibility and innate antibacterial activity.
当前对抗生素使用的限制,伴随着细菌耐药性的增加,需要新的解决方案,包括具有抗菌特性的材料。在本研究中,使用经典湿法制备的海藻酸铜纤维用于制作经精氨酸-甘氨酸-天冬氨酸(RGD)衍生物改性的无纺布。通过与4-(4,6-二甲氧基-1,3,5-三嗪-2-基)-4-甲基吗啉鎓甲苯-4-磺酸盐(DMT/NMM/TosO)偶联形成了稳定的多糖-肽缀合物,以及获得了物理包埋RGD衍生物的材料。发现这些材料对[具体细菌名称1]和[具体细菌名称2]具有非常高的抗菌活性。细胞毒性研究证实这些材料无细胞毒性。由于其生物相容性和固有的抗菌活性,海藻酸铜与RGD肽的缀合物在再生医学中有很强的应用潜力。