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蛋白酶和过氧化物酶活性的聚合物基多功能复合颗粒的开发。

Development of polymer-based multifunctional composite particles of protease and peroxidase activities.

机构信息

MTA-SZTE Lendület Biocolloids Research Group, Interdisciplinary Excellence Center, Department of Physical Chemistry and Materials Science, University of Szeged, H-6720 Szeged, Hungary.

HAS-USZ Momentum Epithelial Cell Signaling and Secretion Research Group and HCEMM-SZTE Molecular Gastroenterology Research Group, Department of Medicine, University of Szeged, H-6720 Szeged, Hungary.

出版信息

J Mater Chem B. 2022 Apr 6;10(14):2523-2533. doi: 10.1039/d1tb01861b.

Abstract

A hybrid material (SL-PPN-HEP-HRP) of dual enzyme function was prepared by co-immobilization of papain (PPN) and horseradish peroxidase (HRP) on sulphate latex (SL) microspheres using heparin (HEP) polyelectrolyte as a building block in the sequential adsorption method. The doses of PPN, HEP and HRP were optimized in each step of the preparation process to achieve high functional and colloidal stability. The enzymes and the polyelectrolyte strongly adsorbed on the oppositely charged surfaces electrostatic forces, and enzyme leakage was not observed from the hybrid material, as confirmed by colorimetric protein tests and microscopy measurements. It was found that the polyelectrolyte acted as a separator between PPN and HRP to prevent hydrolytic attack on the latter enzyme, which otherwise prevents the joint use of these important biocatalysts. Excellent colloidal stability was obtained for the SL-PPN-HEP-HRP composite and the embedded PPN and HRP showed remarkable protease and peroxidase activities, respectively, at least until five days after preparation. The present results offer a promising approach to develop biocatalytic systems of dual function, which are often required in manufacturing processes in the food industry, where the colloidal stability of such multifunctional materials is a key parameter to achieve remarkable efficiency.

摘要

采用顺序吸附法,将木瓜蛋白酶(PPN)和辣根过氧化物酶(HRP)共固定在硫酸酯胶乳(SL)微球上,制备了具有双重酶功能的杂化材料(SL-PPN-HEP-HRP)。通过优化制备过程中的每一步中 PPN、HEP 和 HRP 的剂量,实现了高功能和胶体稳定性。酶和聚电解质通过静电力强烈吸附在带相反电荷的表面上,并且酶不会从杂化材料中泄漏,这一点通过比色蛋白测试和显微镜测量得到了证实。结果发现,聚电解质充当了 PPN 和 HRP 之间的隔离物,以防止对后者酶的水解攻击,否则这会阻止这些重要生物催化剂的联合使用。SL-PPN-HEP-HRP 复合材料获得了优异的胶体稳定性,嵌入的 PPN 和 HRP 分别具有显著的蛋白酶和过氧化物酶活性,至少在制备后五天内保持稳定。本研究结果为开发双重功能的生物催化体系提供了一种有前景的方法,这种生物催化体系在食品工业的制造过程中经常需要,而这种多功能材料的胶体稳定性是实现显著效率的关键参数。

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