4.5 Article

Immobilization of endoglucanase on kaolin by adsorption and covalent bonding

期刊

BIOPROCESS AND BIOSYSTEMS ENGINEERING
卷 44, 期 8, 页码 1627-1637

出版社

SPRINGER
DOI: 10.1007/s00449-021-02545-3

关键词

Cellulases immobilization; Kaolin; Reusability; Adsorption; Covalent bonding

资金

  1. Coordination for the Improvement of Higher Level Personnel (CAPES) [88887.310560/2018-00, 88887.310727/2018-00]
  2. National Council for Scientific and Technological Development (CNPq)

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The research found that both adsorption and covalent bonding were effective methods for immobilizing endoglucanase on kaolin, with the enzyme's catalytic activity maintained after immobilization. Adsorption was shown to be simpler, cheaper, and faster than covalent bonding, making it a promising technique for future studies.
In the current research, endoglucanase, one of the enzymes of the cellulolytic complex, was immobilized on kaolin by two different techniques, adsorption, and covalent bonding. A comparative study was conducted between free, adsorbed, and covalently immobilized endoglucanase. For the covalent bonding, the kaolin particles were functionalized with 3-aminopropyltriethoxysilane (APTES) and activated with glutaraldehyde. Immobilization by adsorption was performed using the kaolin without any treatment. Recovered activities after the endoglucanase immobilization by adsorption and covalent bonding were found to be 60 +/- 2.5 and 65 +/- 3.5%, respectively. The studies of optima pH and temperature, as well as thermal stability, showed that the catalytic characteristic of the enzyme was maintained after the immobilization by both adsorption and covalent bonding. Even after 8 cycles of use, the endoglucanase immobilized by the two techniques retained about 86% of its initial activity. The results showed that the adsorption was as effective as covalent bonding for the immobilization of endoglucanase on kaolin. However, the adsorption technique seems to have a greater potential for use in future studies, as it is simpler, cheaper, and faster than covalent immobilization. Therefore, in this work it was demonstrated that endoglucanases can be immobilized efficiently on kaolin through a very simple immobilization protocol, offering a promising strategy for performing repeated enzymatic hydrolysis reactions.

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