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硅胶水凝胶作为微藻的包埋材料。

Silica Hydrogels as Entrapment Material for Microalgae.

作者信息

Homburg Sarah Vanessa, Patel Anant V

机构信息

WG Fermentation and Formulation of Biologicals and Chemicals, Faculty of Engineering and Mathematics, Bielefeld University of Applied Sciences, Interaktion 1, 33619 Bielefeld, Germany.

出版信息

Polymers (Basel). 2022 Mar 29;14(7):1391. doi: 10.3390/polym14071391.

Abstract

Despite being a promising feedstock for food, feed, chemicals, and biofuels, microalgal production processes are still uneconomical due to slow growth rates, costly media, problematic downstreaming processes, and rather low cell densities. Immobilization via entrapment constitutes a promising tool to overcome these drawbacks of microalgal production and enables continuous processes with protection against shear forces and contaminations. In contrast to biopolymer gels, inorganic silica hydrogels are highly transparent and chemically, mechanically, thermally, and biologically stable. Since the first report on entrapment of living cells in silica hydrogels in 1989, efforts were made to increase the biocompatibility by omitting organic solvents during hydrolysis, removing toxic by-products, and replacing detrimental mineral acids or bases for pH adjustment. Furthermore, methods were developed to decrease the stiffness in order to enable proliferation of entrapped cells. This review aims to provide an overview of studied entrapment methods in silica hydrogels, specifically for rather sensitive microalgae.

摘要

尽管微藻是用于食品、饲料、化学品和生物燃料的一种很有前景的原料,但由于其生长速度缓慢、培养基成本高、下游加工过程存在问题以及细胞密度较低,微藻生产过程仍然不经济。通过包埋进行固定化是克服微藻生产这些缺点的一种很有前景的工具,并能够实现连续过程,同时保护细胞免受剪切力和污染。与生物聚合物凝胶相比,无机二氧化硅水凝胶具有高度透明性,并且在化学、机械、热和生物学方面都很稳定。自1989年首次报道将活细胞包埋在二氧化硅水凝胶中以来,人们努力通过在水解过程中省略有机溶剂、去除有毒副产物以及替换用于调节pH值的有害无机酸或碱来提高生物相容性。此外,还开发了降低硬度的方法,以使包埋细胞能够增殖。本综述旨在概述在二氧化硅水凝胶中研究的包埋方法,特别是针对相当敏感的微藻。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99ed/9002651/eb0d0a8536d3/polymers-14-01391-g001.jpg

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