Da Silva Pereira Everton Henrique, Nicevic Marija, Garcia Eduardo Lanzagorta, Moritz Vicente Fróes, Ozcelik Zeliha Ece, Tas Buket Alkan, Fournet Margaret Brennan
PRISM, Research Institute, Technological University of the Shannon, Midlands Midwest, Athlone, Co., Dublin Rd, N37 HD68 Westmeath, Ireland.
Polymers (Basel). 2024 Dec 14;16(24):3490. doi: 10.3390/polym16243490.
The escalating global concern regarding plastic waste accumulation and its detrimental environmental impact has driven the exploration of sustainable alternatives to conventional petroleum-based plastics. This study investigates the development of antimicrobial blends of bacterial nanocellulose (BNC) derived from plastic waste and polyhydroxyalkanoates (PHB), further enhanced with essential oils. The antimicrobial activity of the resulting BNC/PHB blends was tested in vitro against , , and . The incorporation of essential oils, particularly cinnamon oil, significantly enhanced the antimicrobial properties of the BNC/PHB blends. The BNC with 5% PHB blend exhibited the highest antifungal inhibition against at 90.25%. Additionally, blends with 2% and 10% PHB also showed antifungal activity, inhibiting 68% of growth. These findings highlight the potential of incorporating essential oils into BNC/PHB blends to create effective antimicrobial materials. The study concludes that enhancing the antimicrobial properties of BNC/PHB significantly broadens its potential applications across various sectors, including wound dressings, nanofiltration masks, controlled-release fertilizers, and active packaging.
全球对塑料垃圾堆积及其对环境的有害影响的关注度不断升级,这推动了人们对传统石油基塑料可持续替代品的探索。本研究调查了由塑料垃圾衍生的细菌纳米纤维素(BNC)与聚羟基脂肪酸酯(PHB)的抗菌共混物的开发,并通过精油进一步增强其性能。所得BNC/PHB共混物的抗菌活性在体外针对 、 和 进行了测试。精油的加入,尤其是肉桂油,显著增强了BNC/PHB共混物的抗菌性能。含5%PHB的BNC共混物对 的抗真菌抑制率最高,为90.25%。此外,含2%和10%PHB的共混物也表现出抗真菌活性,抑制了68%的 生长。这些发现突出了将精油掺入BNC/PHB共混物中以制造有效抗菌材料的潜力。该研究得出结论,增强BNC/PHB的抗菌性能显著拓宽了其在各个领域的潜在应用,包括伤口敷料、纳米过滤口罩、控释肥料和活性包装。