Immobilization of Cholesterol Oxidase: An Overview

Shubhrima Ghosh, Razi Ahmad, S. Khare
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引用次数: 16

Abstract

Cholesterol oxidases are bacterial oxidases widely used commercially for their application in the detection of cholesterol in blood serum, clinical or food samples. Additionally, these enzymes find potential applications as an insecticide, synthesis of anti-fungal antibiotics and a biocatalyst to transform a number of sterol and non-sterol compounds. However, the soluble form of cholesterol oxidases are found to be less stable when applied at higher temperatures, broader pH range, and incur higher costs. These disadvantages can be overcome by immobilization on carrier matrices.This review focuses on the immobilization of cholesterol oxidases on various macro/micro matrices as well as nanoparticles and their potential applications. Selection of appropriate support matrix in enzyme immobilization is of extreme importance. Recently, nanomaterials have been used as a matrix for immobilization of enzyme due to their large surface area and small size. The bio-compatible length scales and surface chemistry of nanoparticles provide reusability, stability and enhanced performance characteristics for the enzyme-nanoconjugates.In this review, immobilization of cholesterol oxidase on nanomaterials and other matrices are discussed. Immobilization on nanomatrices has been observed to increase the stability and activity of enzymes. This enhances the applicability of cholesterol oxidases for various industrial and clinical applications such as in biosensors.
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胆固醇氧化酶的固定化:综述
胆固醇氧化酶是一种细菌氧化酶,在商业上广泛应用于检测血清、临床或食品样品中的胆固醇。此外,这些酶在杀虫剂、抗真菌抗生素的合成以及转化许多甾醇和非甾醇化合物的生物催化剂方面具有潜在的应用前景。然而,发现可溶性形式的胆固醇氧化酶在较高温度、较宽pH范围下应用时稳定性较差,并且产生较高的成本。这些缺点可以通过固定在载体矩阵上来克服。本文综述了胆固醇氧化酶在各种宏/微基质和纳米颗粒上的固定化及其应用前景。在酶固定化过程中,选择合适的支撑基质至关重要。近年来,纳米材料因其体积小、表面积大而被广泛用于酶的固定化。纳米颗粒的生物相容性长度尺度和表面化学性质为酶-纳米偶联物提供了可重用性、稳定性和增强的性能特征。本文综述了胆固醇氧化酶在纳米材料和其他基质上的固定化研究进展。在纳米基质上固定化可以提高酶的稳定性和活性。这增强了胆固醇氧化酶在各种工业和临床应用中的适用性,如生物传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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