Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa , Apartado 127, 2781-901, Oeiras, Portugal.
Biomacromolecules. 2014 May 12;15(5):1806-13. doi: 10.1021/bm500201s. Epub 2014 Apr 8.
Biopolymers often have unique properties of considerable interest as a basis for new materials. It is however not evident how to extract them from plants without destroying their chemical skeleton and inherent properties. Here we report the ex situ reconstitution of the biopolyester suberin as a new waterproof and antimicrobial material. In plant cell walls, suberin, a cross-linked network of aromatic and aliphatic monomers, builds up a hydrophobic protective and antimicrobial barrier. Recently we succeeded in extracting suberin from the plant cell wall using the ionic liquid cholinium hexanoate. During extraction the native three-dimensional structure of suberin was partially preserved. In this study, we demonstrate that this preservation is the key for its ex situ reconstitution. Without any chemical additives or purification, the suberin composing macromolecules undergo self-association on the casting surface forming a film. Suberin films obtained show barrier properties similar to those of the suberin barrier in plants, including a potentially broad bactericidal effect.
生物聚合物通常具有独特的性质,作为新材料的基础具有相当大的意义。然而,如何在不破坏其化学骨架和固有性质的情况下从植物中提取它们还不清楚。在这里,我们报告了生物聚酯软木脂的异位重构,作为一种新的防水和抗菌材料。在植物细胞壁中,软木脂是一种芳香族和脂肪族单体的交联网络,构成了疏水的保护和抗菌屏障。最近,我们成功地使用离子液体胆碱己酸盐从植物细胞壁中提取软木脂。在提取过程中,软木脂的天然三维结构得到了部分保留。在这项研究中,我们证明了这种保留是其异位重构的关键。无需任何化学添加剂或纯化,组成软木脂的大分子就在浇铸表面上自行聚集形成薄膜。获得的软木脂薄膜表现出与植物中软木脂屏障相似的阻隔性能,包括潜在的广谱杀菌作用。