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Simultaneous hydrogel crosslinking and silver nanoparticle formation by using ionizing radiation to obtain antimicrobial hydrogels

机译:通过使用电离辐射获得抗微生物水凝胶的同时水凝胶交联和银纳米粒子形成

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Hydrogel dressings are crosslinked hydrophilic polymers able of swelling in presence of water and can be used in many different types of wound care. In turn, in wound care, silver has been used for a long time as an effective antimicrobial agent. Recent studies have demonstrated an increase of its antimicrobial action when it is used at nanometer scale, that is, as silver nanoparticles (AgNPs), which have anti-inflammatory effect on infected wounds, rashes, and mesh skin grafts. The objective of this work was to study hydrogel dressings containing AgNPs from silver nitrate, synthesized by radiation involving the formation of silver nanoparticles with simultaneous occurrence of crosslinking and sterilization of the polymer systems. One of the hydrogels was prepared with poly(N-vinyl-2- pyrrolidone) (PVP) and the other with poly(vinyl alcohol) (PVA) as main studied polymers. An aqueous solution of AgNO3 was added to both polymer systems separately. The AgNPs synthesis, polymer crosslinking and dressing sterilization were achieved simultaneously by irradiating the resultant solutions with gamma-rays from a 60Co source. Gel fraction, swelling in reverse osmosis water, SEM-EDS, UV-visible spectroscopy, and antimicrobial activity were performed and characterized. The obtained results showed that the dressings have a soft consistency, high degree of crosslinking and swelling, homogeneous distribution of AgNPs with peaks of plasmonic bands about 400 nm, but only PVP hydrogel showed antimicrobial properties to P. aeruginosa and normal S. aureus. Moreover, this hydrogel also showed antimicrobial properties to S. aureus strain multiresistant to penicillins, cephalosporins, carbapenems, sulfonamides, tetracyclines, quinolones, and aminoglycosides, whereas the PVA hydrogel showed antimicrobial properties to P. aeruginosa and bacteriostatic activity to S. aureus. The results suggest that both synthesized dressings have potential for use in wounds and burns infected with gram-positive and gram-negative bacteria.
机译:水凝胶敷料是交联的亲水聚合物能够在水的存在下溶胀,可用于许多不同类型的伤口护理。反过来,在伤口护理中,银已经使用了很长时间作为有效的抗微生物剂。最近的研究表明,当它以纳米级使用时,其抗微生物动作增加,即作为银纳米颗粒(AgNP),这对于对感染的伤口,皮疹和网状皮肤移植物具有抗炎作用。这项工作的目的是研究含有氮素硝酸酯的水凝胶敷料,通过涉及形成银纳米颗粒的辐射合成,同时发生交联和聚合物体系的灭菌。用聚(N-乙烯基-2-吡咯烷酮)(PVP)制备其中一种水凝胶,另一种用聚(乙烯醇)(PVA)为主要研究的聚合物。分别向两种聚合物系统中加入AgNO 3水溶液。通过从60CO源的γ射线照射所得溶液,同时实现AgNP合成,聚合物交联和敷料灭菌。凝胶分数,反渗透水,SEM-EDS,UV可见光谱和抗微生物活性的溶胀和表征。得到的结果表明,敷料具有软稠度,高度交联和肿胀,均匀分布均具有约400nm的等离子体带峰,但仅PVP水凝胶显示铜绿假单胞菌和正常的金黄色葡萄球菌的抗微生物性质。此外,该水凝胶还向青霉素,头孢菌素,肉豆蔻菌素,氨基磺酰胺,四环素,喹诺酮类和氨基糖苷表现出抗微生物特性.PVA水凝胶对铜绿假单胞菌和金黄色葡萄球菌的抗菌性能显示出抗微生物性能。结果表明,合成敷料两种患有伤口和烧伤患有革兰氏阳性和革兰氏阴性细菌的潜力。

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