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Novel nanocomposite hydrogel for wound dressing and other medical applications

机译:用于伤口敷料和其他医学应用的新型纳米复合水凝胶

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Graft copolymerization of diallyldimethylammonium chloride (DADMAC) vinyl monomer together with N, N'-methylene-bis-acrylamide (MBA) crosslinking agent onto water soluble carboxymethyl cellulose (CMC) was carried out using ammonium persulfate (APS) initiator. The copolymerization resulted in the formation of hydrogels. The characteristics and properties of these hydrogels were dependent on the conditions affecting the copolymerization reaction and these, in turn, controlled the pore size and porous structure of the hydrogels. Thus, increasing the monomer concentration caused a major enhancement in the swelling ratio of the hydrogel provided that the monomer was used at a concentration of 40% or more. The opposite was true for initiator concentration: the swelling ratio of the hydrogel decreased significantly by increasing APS concentration from 0.05 to 0.25 mol L-1. With respect to MBA crosslinker, a maximum swelling ratio of 30 could be achieved with hydrogel prepared using MBA at a concentration of 0.1 mol L-1; hydrogel prepared in the presence of MBA at 0.05 mol L-1 exhibited zero swelling ratio while hydrogel prepared using MBA at 0.3 mol L-1 displayed a swelling ratio of 10%. The maximum swelling ratio for hydrogel was achieved at pH 7 and a significant decrease in the swelling ratio of hydrogel was observed within the pH range 2-6 as well as at pH 8. The hydrogel could also be successfully attached to modified cotton fabric, namely partially carboxymethylated cotton (PCMC) through ionic crosslinking. The in situ formation of CuO nanoparticles inside the matrix of CMC-DADMAC nanocomposite hydrogel attached to cotton fabric was also investigated and was confirmed using X-ray diffraction and scanning electron microscopy studies. Furthermore, the functional performance of the novel CuO nanocomposite hydrogel as wound dressing was tested for antibacterial activities; the nanocomposite hydrogels demonstrated excellent antibacterial effect. The work was further extended to include the synthesis and characterization of Ag/CMC-DADMAC nanocomposite hydrogel. The latter displayed high antibacterial activity.
机译:使用过硫酸铵(APS)引发剂,将二烯丙基二甲基氯化铵(DADMAC)乙烯基单体与N,N'-亚甲基-双丙烯酰胺(MBA)交联剂接枝共聚到水溶性羧甲基纤维素(CMC)上。共聚导致水凝胶的形成。这些水凝胶的特性和性质取决于影响共聚反应的条件,并且这些反过来又控制了水凝胶的孔径和多孔结构。因此,如果单体的使用浓度为40%以上,则单体浓度的增加引起水凝胶的溶胀率的大幅提高。引发剂浓度的情况则相反:通过将APS浓度从0.05 mol L-1增加到5%,水凝胶的溶胀率显着降低。对于MBA交联剂,使用MBA以0.1 mol L-1的浓度制备的水凝胶可以达到30的最大溶胀率。在0.05mol L-1的MBA存在下制备的水凝胶显示零溶胀率,而使用0.3mol L-1的MBA制备的水凝胶显示10%溶胀率。水凝胶的最大溶胀率在pH 7时达到,并且在pH范围2-6和pH 8时都观察到水凝胶的溶胀率显着降低。该水凝胶也可以成功地附着在改性棉织物上,即通过离子交联部分羧甲基化的棉(PCMC)。还研究了附着在棉织物上的CMC-DADMAC纳米复合水凝胶基质内部CuO纳米颗粒的原位形成,并通过X射线衍射和扫描电子显微镜研究得到了证实。此外,还测试了新型CuO纳米复合水凝胶作为伤口敷料的抗菌性能;纳米复合水凝胶具有出色的抗菌作用。这项工作进一步扩展到包括Ag / CMC-DADMAC纳米复合水凝胶的合成和表征。后者显示出高的抗菌活性。

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