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结合来自黑曲霉ATCC 9642的原位果胶酶的杂化聚合物-无机仿生载体的合成。

Synthesis of a hybrid polymer-inorganic biomimetic support incorporating in situ pectinase from Aspergillus niger ATCC 9642.

作者信息

Bustamante-Vargas Cindy Elena, Mignoni Marcelo Luis, de Oliveira Débora, Venquiaruto Luciana Dornelles, Valduga Eunice, Toniazzo Geciane, Dallago Rogério Marcos

机构信息

Departamento de Ciências Agrárias, Universidade Regional do Alto Uruguai e das Missões, URI-Erechim, Erechim, RS, 99700-000, Brazil.

出版信息

Bioprocess Biosyst Eng. 2015 Aug;38(8):1569-77. doi: 10.1007/s00449-015-1399-2. Epub 2015 Apr 19.

Abstract

The hybrid alginate/gelatin/calcium oxalate (AGOCa) support was successfully synthesized through the biomimetic mineralization method for immobilization in situ of a pectinolytic extract from Aspergillus niger ATCC 9642 via entrapment technique. The efficiency of immobilization reached 72.7%. Sodium oxalate buffer (100 mM, pH 5.5) was selected as adjuvant of the immobilization process by allowing the formation of a calcified shell around the calcium alginate capsule, significantly increasing the stability to storage, thermal and recycling of the enzymatic immobilized pectinolytic extract. The pH and temperature for maximum activity were from 5.0 to 6.0 and 60 to 80 °C, respectively. The new hybrid support can be a potential alternative to obtain immobilized pectinases with properties for advantageous industrial applications.

摘要

通过仿生矿化方法成功合成了藻酸盐/明胶/草酸钙(AGOCa)复合载体,采用包埋技术将黑曲霉ATCC 9642的果胶酶提取物原位固定。固定效率达到72.7%。选择草酸钠缓冲液(100 mM,pH 5.5)作为固定过程的助剂,使藻酸钙胶囊周围形成钙化壳,显著提高了固定化果胶酶提取物的储存稳定性、热稳定性和循环利用性。最大活性的pH值和温度分别为5.0至6.0和60至80℃。这种新型复合载体可能是获得具有有利于工业应用特性的固定化果胶酶的潜在替代品。

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