Universite Bordeaux 1, INRA, CNRS, UMR 5103 US2B, 351 cours de la Liberation, F-33405 Talence, France.
Biomacromolecules. 2010 Jan 11;11(1):88-96. doi: 10.1021/bm9009528.
This study reports the elaboration of water-resistant, antimicrobial, chitosan and paper-based materials as environmentally friendly food packaging materials. Two types of papers were coated with chitosan-palmitic acid emulsions or with a blend of chitosan and O,O'-dipalmitoylchitosan (DPCT). Micromorphology studies showed that inclusion of hydrophobic compounds into the chitosan matrix was enhanced by grafting them onto chitosan and that this led to their penetration of the paper's core. Compared to chitosan-coated papers, the coating of chitosan-palmitic emulsion kept vapor-barrier properties unchanged (239 and 170 g.m(-2).d(-1) versus 241 and 161 g.m(-2).d(-1)), while the coating of chitosan-DPCT emulsion dramatically deteriorated them (441 and 442 g.m(-2).d(-1)). However, contact angle measurements (110-120 degrees after 1 min) and penetration dynamics analysis showed that both strategies improved liquid-water resistance of the materials. Kit-test showed that all hydrophobized chitosan-coated papers kept good grease barrier properties (degree of resistance 6-8/12). Finally, all chitosan-coated materials exhibited over 98% inhibition on Salmonella Typhimurium and Listeria monocytogenes .
本研究报告了水抗、抗菌、壳聚糖和基于纸的材料的详细制备,作为环保型食品包装材料。两种纸分别用壳聚糖-棕榈酸乳液或壳聚糖和 O,O'-二棕榈酰壳聚糖(DPCT)混合物进行涂层。微观形貌研究表明,通过将疏水性化合物接枝到壳聚糖上,可以增强它们在壳聚糖基质中的包含,从而使它们渗透到纸张的核心。与壳聚糖涂层纸相比,壳聚糖-棕榈酸乳液涂层保持了蒸汽阻隔性能不变(239 和 170 g.m(-2).d(-1) 与 241 和 161 g.m(-2).d(-1)),而壳聚糖-DPCT 乳液涂层则大大降低了其性能(441 和 442 g.m(-2).d(-1))。然而,接触角测量(1 分钟后为 110-120 度)和渗透动力学分析表明,这两种策略都提高了材料的耐液体水性能。套件测试表明,所有疏水化壳聚糖涂层纸都保持了良好的油脂阻隔性能(阻力等级为 6-8/12)。最后,所有壳聚糖涂层材料对肠炎沙门氏菌和单核细胞增生李斯特菌的抑制率均超过 98%。