化学
聚苯乙烯
木聚糖酶
固定化酶
戊二醛
纳米颗粒
吸附
硅烷化
化学工程
铜
色谱法
产量(工程)
热稳定性
响应面法
表面改性
催化作用
共价键
有机化学
作者
Shivam Sharma,Sudarshan Sahu,Shailendra Kumar Arya,Anupreet Kaur
标识
DOI:10.1080/10826068.2026.2621861
摘要
This research introduces a straightforward and efficient technique for anchoring enzymes onto a polystyrene surface by employing cysteine-functionalized copper nanoparticles as a bridging agent. The process entails activating the polystyrene surface through nitration and silanization using (3-mercaptopropyl) trimethoxysilane, followed by the attachment of cysteine-capped copper nanoparticles via thiol groups. This nanoparticle layer serves as a platform for the covalent immobilization of xylanase, facilitated by glutaraldehyde treatment. The immobilization procedure resulted in an immobilization yield of 25.79 ± 0.82%, calculated based on protein depletion, while the immobilized xylanase retained approximately 77% of its initial catalytic activity after immobilization. The immobilized enzyme also exhibited enhanced thermal and pH stability compared to its soluble counterpart. Furthermore, the immobilized enzyme was applied in clarifying fruit juices, leading to a 29.9% improvement in clarity for orange juice and a 26.9% enhancement for grape juice. This study highlights the promising potential of the developed approach in the fruit juice clarification industry.
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