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Antimicrobial Activity of Lignin and Lignin-Derived Cellulose and Chitosan Composites Against Selected Pathogenic and Spoilage Microorganisms

机译:木质素和木质素衍生的纤维素和壳聚糖复合材料对选定的致病和腐败微生物的抗菌活性

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摘要

The antiradical and antimicrobial activity of lignin and lignin-based films are both of great interest for applications such as food packaging additives. The polyphenolic structure of lignin in addition to the presence of O-containing functional groups is potentially responsible for these activities. This study used DPPH assays to discuss the antiradical activity of HPMC/lignin and HPMC/lignin/chitosan films. The scavenging activity (SA) of both binary (HPMC/lignin) and ternary (HPMC/lignin/chitosan) systems was affected by the percentage of the added lignin: the 5% addition showed the highest activity and the 30% addition had the lowest. Both scavenging activity and antimicrobial activity are dependent on the biomass source showing the following trend: organosolv of softwood > kraft of softwood > organosolv of grass. Testing the antimicrobial activities of lignins and lignin-containing films showed high antimicrobial activities against Gram-positive and Gram-negative bacteria at 35 °C and at low temperatures (0–7 °C). Purification of kraft lignin has a negative effect on the antimicrobial activity while storage has positive effect. The lignin release in the produced films affected the activity positively and the chitosan addition enhances the activity even more for both Gram-positive and Gram-negative bacteria. Testing the films against spoilage bacteria that grow at low temperatures revealed the activity of the 30% addition on HPMC/L1 film against both B. thermosphacta and P. fluorescens while L5 was active only against B. thermosphacta. In HPMC/lignin/chitosan films, the 5% addition exhibited activity against both B. thermosphacta and P. fluorescens.
机译:木质素和木质素的薄膜的抗动物和抗微生物活性对于食品包装添加剂如食品包装等的应用既有浓厚的兴趣。除了含O型官能团的存在之外,木质素的多酚结构可能对这些活性可能是责任。该研究使用DPPH测定讨论HPMC / Lignin和HPMC /木质素/壳聚糖膜的抗动物活性。二元(HPMC / Lignin)和三元(HPMC / Lignin /壳聚糖)系统的清除活性(SA)受加入木质素的百分比的影响:5%的加法显示最高的活性,30%的加法具有最低。清除活性和抗微生物活性均取决于生物量来源,显示出以下趋势:软木软木的有机溶胶>软木牛皮纸>草的有机溶胶。测试含木质素和木质素膜的抗微生物活性在35℃和低温(0-7℃)下,对革兰氏阳性和革兰氏阴性细菌进行了高抗微生物活性。牛皮纸的纯化对抗微生物活性产生负面影响,同时储存具有阳性作用。所产生的薄膜中的木质素释放受到阳性的活性,并且壳聚糖添加能够为革兰氏阳性和革兰氏阴性细菌更具更多的活性。在低温下测试抗腐败细菌的薄膜揭示了对B.热亚磷酸酯和P.荧光的30%加入的活性,而L5仅针对B. Thermosphotta活性。在HPMC /木质素/壳聚糖膜中,5%的添加表现出B. Thermosphotta和P.荧光的活性。

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