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A Simple Approach to Produce Tailor-Made Chitosans with Specific Degrees of Acetylation and Molecular Weights

机译:一种简单的方法可以生产定制的壳聚糖具有特异性乙酰化和分子量

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摘要

Chitin is a structural polysaccharide that is found in crustaceans, insects, fungi and some yeasts. Chitin deacetylation produces chitosan, a well-studied biopolymer with reported chemical and biological properties for diverse potential applications for drug delivery, metal ion absorption, scaffolds and tissue engineering. Most known properties of chitosan have been determined from samples obtained from a variety of sources and in different conditions, this is, from chitosans with a wide range of degrees of N-acetylation (DA) and molecular weight (MW). However, as for any copolymer, the physicochemical and mechanical characteristics of chitosan highly depend on their monomer composition (DA) and chain size (MW). This work presents a simple methodology to produce chitosans with specific and predictive DA and MW. Reaction with acetic anhydride proved to be an efficient method to control the acetylation of chitosan, DAs between 10.6% and 50.6% were reproducibly obtained. In addition to this, MWs of chitosan chains were reduced in a controlled manner in two ways, by ultrasound and by acidic hydrolysis at different temperatures, samples with MWs between 130 kDa and 1300 kDa were obtained. DAs were determined by 1H-NMR and MWs by gel permeation chromatography.
机译:几丁质是一种结构多糖,在甲壳类动物,昆虫,真菌和一些酵母中发现。甲壳素脱乙酰化产生壳聚糖,一种研究的生物聚合物,具有报告的化学和生物学性质,用于不同的药物递送,金属离子吸收,支架和组织工程。已经从各种来源中获得的样品和不同条件中获得的样品中最着名的壳聚糖属性,这是来自壳聚糖的壳聚糖,具有宽范围的N-乙酰化(DA)和分子量(MW)。然而,对于任何共聚物,壳聚糖的物理化学和机械特性高度取决于它们的单体组合物(DA)和链尺寸(MW)。这项工作提出了一种简单的方法,用于生产具有特定和预测DA和MW的壳聚糖。用乙酸酐反应证明是控制壳聚糖乙酰化的有效方法,可重复地获得10.6%和50.6%的DAS。除此之外,通过两种方式,通过超声波和不同温度下的酸性水解,壳聚糖链的MWS以受控的方式减少,获得130kDa和1300kDa之间的Mws的样品。通过凝胶渗透色谱法由1H-NMR和MWS测定DAS。

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