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壳聚糖:来源和制备方法综述。

Chitosan: A review of sources and preparation methods.

机构信息

School of Science, University of Waikato.

School of Science, University of Waikato.

出版信息

Int J Biol Macromol. 2021 Feb 1;169:85-94. doi: 10.1016/j.ijbiomac.2020.12.005. Epub 2020 Dec 4.

Abstract

Chitosan, derived from chitin, has many desirable biomedical attributes. This review aims to explore different sources of chitin and methods of chitosan production with industrial consideration. This article first discussed different sources of chitin for industrial scale production, with considerations given to both their environmental impacts and commercialization potential. Secondly, this article reviews the two categories of chitosan preparation - chemical methods and biological methods - based on existing publications which used lobster by-products as a feedstock source. The mechanisms of the chemical methods are firstly summarized, and then the different chemical agents and reaction parameters used are discussed. Next, both enzymatic and fermentation-based approaches are reviewed under biological methods and compared with chemical methodologies, with lactic fermentation methods as the major focus. This article concludes that lobster cephalothorax could be an ideal source for chitosan preparation on an industrial scale; and chemical methods involve simpler processing overall, while producing chitosan with stronger bioactivities because of the lower molecular weight (MW) and higher degree of deacetylation (DD) achieved by the products. Moreover, due to biological methods inevitably necessitating further chemical processing, an approach involving some unconventional chemical methods has been regarded as a more suitable strategy for industrial scale chitosan production.

摘要

壳聚糖来源于甲壳素,具有许多理想的生物医学特性。本综述旨在探讨不同来源的甲壳素和壳聚糖生产方法,并考虑工业应用。本文首先讨论了工业规模生产甲壳素的不同来源,同时考虑了它们的环境影响和商业化潜力。其次,根据现有的以龙虾副产品为原料的出版物,本文综述了壳聚糖制备的两类方法——化学法和生物法。首先总结了化学法的机制,然后讨论了不同的化学试剂和反应参数。接下来,在生物方法下综述了酶法和发酵法,并与化学方法进行了比较,以乳酸发酵法为主要研究对象。本文得出结论,龙虾头胸甲可以作为工业规模制备壳聚糖的理想原料;化学方法总体上涉及更简单的加工过程,同时由于产物的分子量(MW)更低、脱乙酰度(DD)更高,因此具有更强的生物活性。此外,由于生物方法不可避免地需要进一步的化学处理,因此涉及一些非常规化学方法的方法被认为是更适合工业规模壳聚糖生产的策略。

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