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使用固定化纤维素酶的纤维素纳米纤维的绿色合成。

Green synthesis of cellulose nanofibers using immobilized cellulase.

机构信息

Packing and Packaging Materials Department, National Research Centre, Giza, Egypt; Advanced Materials and Nanotechnology Lab., Center of Excellence, National Research Centre, Giza, Egypt.

Molecular Biology Department, National Research Centre, Giza, Egypt.

出版信息

Carbohydr Polym. 2019 Feb 1;205:255-260. doi: 10.1016/j.carbpol.2018.10.040. Epub 2018 Oct 19.

Abstract

Isolation of cellulose nanofibers (CNF) using cellulase immobilized on cheap and easily formed polymeric gel disks is discussed. Such gel disks based on carrageenan gel coated with hyperbranched polyamidoamine that can covalently bind to cellulase through glutaraldehyde spacer. Thermal and mechanical stability of the coated gel disks were significantly improved. Free and immobilized cellulase exhibited maximum activities at 50 °C and pH 5. However, immobilized cellulase exhibited broader temperature stability than in the free form. Additionally, immobilized cellulase gel disks can be easily separated and reused with great reusability capacity of about 85% of the initial activity after six cycles. Immobilized cellulase was capable to disintegrate cellulose fibers providing nanofibers with diameter of 15-35 nm and several micrometers long. Overall, enhanced thermal stability and reusability of immobilized cellulase pave the way for its use in industrial production of CNF that can be applicable for biomedical and food packaging applications.

摘要

本文讨论了利用固定在廉价且易于形成的聚合物凝胶盘上的纤维素酶从纤维素中分离出纳米纤维(CNF)。这种基于卡拉胶凝胶的凝胶盘用超支化聚酰胺胺涂层,通过戊二醛间隔物可以与纤维素酶共价结合。涂层凝胶盘的热稳定性和机械稳定性得到了显著提高。游离和固定化纤维素酶在 50°C 和 pH5 时表现出最大活性。然而,固定化纤维素酶比游离形式具有更宽的温度稳定性。此外,固定化纤维素酶凝胶盘可以很容易地分离和重复使用,在六次循环后具有约 85%的初始活性的高重复使用能力。固定化纤维素酶能够使纤维素纤维解体,提供直径为 15-35nm 且长度为数微米的纳米纤维。总的来说,固定化纤维素酶的热稳定性和可重复使用性得到了增强,为其在 CNF 的工业生产中的应用铺平了道路,CNF 可适用于生物医学和食品包装应用。

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