Karaca Özge Gülüzar, Moran Büşra, Türk Mustafa, Bal-Öztürk Ayça, İzbudak Burçin, Aydin Yasar Andelib, Utkan Güldem, Alemdar Neslihan
Marmara University, Department of Chemical Engineering, Maltepe 34854, Istanbul, Turkey.
Scientific Technical Research and Application Center, Hitit University, Corum 19030, Turkey.
Int J Biol Macromol. 2024 Jun;271(Pt 1):132521. doi: 10.1016/j.ijbiomac.2024.132521. Epub 2024 May 19.
Herein, GO (graphene oxide) or rGO (reduced graphene oxide) which is produced by the green synthesis method using plant extract (Laurus nobilis) was incorporated into a polymeric structure consisting of carboxymethyl cellulose (CMC) and polyethylene glycol (PEG) to produce a wound dressing material with enhanced mechanical and electrical properties. The effect of GO and rGO on the wound dressing features of the produced materials was investigated and compared to each other. Conductivity tests demonstrated that rGO contributed more significantly to the electrical conductivity than GO. While rGO-CMC/PEG/CA reached 3.01 × 10 S.cm as the conductivity value, that of GO-CMC/PEG/CA was determined as 0.85 × 10 S.cm. As for the mechanical tests, it was seen that rGO achieved the best results in terms of elastic modulus (588.62 N/mm), tensile strength (94.95 MPa) and elongation at break (17.64 %) compared to GO reinforced and pure hydrogel. Curcumin and ascorbic acid were used for antibiotic-free wound treatment and their release kinetics were also modeled. The results showed that rGO reinforced hydrogel provided a more controlled release. All results assured that both the produced GO reinforced and especially rGO reinforced hydrogels could be utilized as modern wound dressing materials with suitable properties to achieve remarkable results for wound healing.
在此,通过使用植物提取物(月桂叶)的绿色合成方法制备的氧化石墨烯(GO)或还原氧化石墨烯(rGO)被掺入由羧甲基纤维素(CMC)和聚乙二醇(PEG)组成的聚合物结构中,以制备具有增强的机械和电学性能的伤口敷料材料。研究并比较了GO和rGO对所制备材料伤口敷料特性的影响。电导率测试表明,rGO对电导率的贡献比GO更显著。rGO-CMC/PEG/CA的电导率值达到3.01×10 S.cm,而GO-CMC/PEG/CA的电导率值确定为0.85×10 S.cm。至于机械测试,与GO增强和纯水凝胶相比,rGO在弹性模量(588.62N/mm)、拉伸强度(94.95MPa)和断裂伸长率(17.64%)方面取得了最佳结果。姜黄素和抗坏血酸用于无抗生素伤口治疗,并且对它们的释放动力学进行了建模。结果表明,rGO增强水凝胶提供了更可控的释放。所有结果都表明,所制备的GO增强尤其是rGO增强的水凝胶都可以用作具有合适性能的现代伤口敷料材料,以在伤口愈合方面取得显著效果。