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酶氧化植物半乳甘露聚糖生成具有新颖性能和应用的生物材料,包括用作递送系统。

Enzyme oxidation of plant galactomannans yielding biomaterials with novel properties and applications, including as delivery systems.

机构信息

Istituto di Chimica del Riconoscimento Molecolare (ICRM), C.N.R, Via Mario Bianco 9, 20131, Milan, Italy.

Istituto di Scienze delle Produzioni Alimentari (ISPA), C.N.R, Via Celoria 2, 20133, Milan, Italy.

出版信息

Appl Microbiol Biotechnol. 2018 Jun;102(11):4687-4702. doi: 10.1007/s00253-018-9028-z. Epub 2018 Apr 26.

Abstract

New biomaterials from renewable sources and the development of "functionalized biopolymers" are fields of growing industrial interest. Plant polysaccharides represent a valid alternative to traditional synthetic polymers, which are obtained from monomers of fossil, non-renewable origin. Several polysaccharides, either in their natural or chemically/biochemically modified forms, are currently employed in the biomedical, food and feed, and industrial fields, including packaging. Sustainable biochemical reactions, such as enzyme modifications of polysaccharides, open further possibilities for new product and process innovation. In the present review, we summarize the recent progress on enzyme oxidation of galactomannans (GM) from few leguminous plants (performed either with galactose oxidase or laccase) and we focus on the versatile and easily accessible laccase/TEMPO oxidative reaction. The latter causes a steep viscosity increase of GM water solutions and a transition of the gels from a viscous to an elastic form, due to formation of emiacetalic bonds and thus of internal cross-linking of the polymers. Following lyophilization of these hydrogels, stable aerogels can be obtained, which were shown to have good potential as delivery systems (DS) of actives. The active molecules tested and herewith described are polymyxin B, an antibiotic; nisin, an antimicrobial peptide; the enzymes lysozyme, protease and lipase; the mixture of the industrial microbiocides 5-chloro-2-methyl-4-isothiazolin-3-one (CIT) and 2-methyl-4-isothiazolin-3-one (MIT). The advantages of such aerogel systems and the possibilities they open for future developments, including as DS, are described.

摘要

从可再生资源中开发新型生物材料和“功能化生物聚合物”是具有巨大工业价值的领域。植物多糖是传统合成聚合物的有效替代品,后者是由不可再生的化石来源的单体获得的。几种多糖,无论是天然的还是化学/生物化学修饰的,目前都被应用于生物医学、食品和饲料以及包括包装在内的工业领域。可持续的生化反应,如多糖的酶修饰,为新产品和新工艺创新开辟了更多可能性。在本综述中,我们总结了几种少数豆科植物来源的半乳甘露聚糖(GM)的酶氧化的最新进展(使用半乳糖氧化酶或漆酶进行),并重点介绍了多功能且易于获得的漆酶/TEMPO 氧化反应。后者会导致 GM 水溶液的粘度急剧增加,并使凝胶从粘性转变为弹性状态,这是由于形成了缩醛键,从而使聚合物内部交联。这些水凝胶经过冷冻干燥后,可以得到稳定的气凝胶,它们作为活性物质的输送系统(DS)具有很好的潜力。在此描述并测试的活性分子有:多粘菌素 B,一种抗生素;乳链菌肽,一种抗菌肽;酶溶菌酶、蛋白酶和脂肪酶;工业杀菌剂 5-氯-2-甲基-4-异噻唑啉-3-酮(CIT)和 2-甲基-4-异噻唑啉-3-酮(MIT)的混合物。描述了这种气凝胶系统的优势,以及它们为未来的发展(包括作为 DS)所开辟的可能性。

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