HYDROGEN PEROXIDASE ENZYME ACTIVITY AT DIFFERENT CONCENTRATIONS OF BSA

A. İlhan, U. Kökbaş, L. Kayrın
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Abstract

Cross-linked enzymes are more stable at a certain temperature than free enzymes. Bovine serum albumin (BSA), which has a large number of amine groups, provides a strong binding between enzyme aggregates, thus leading to increased activity and stability of the bioactive layer. The enzyme-BSA mixture becomes more stable after covalent bonding with a crosslinking agent such as glutaraldehyde. The HRP enzyme was immobilized on the gold electrode together with BSA, gelatin and glutaraldehyde with the help of UV light. Four different electrodes were prepared using different amounts of BSA at 7.5 mg, 15 mg, 30 mg and 60 mg concentrations for each electrode Using four different electrodes prepared, 16 electrochemical measurements were performed with four different ferrous iron analytes. Glutaraldehyde binds to the BSA polymer, which has a higher affinity than the enzyme, reducing the tight covalent cross-links caused by BSA on the HRP and ensuring the continuation of the enzyme activity. It was observed that different BSA concentrations significantly affected the enzyme activity. The concentration of polymers to be used for crosslinking enzymes is an important factor in electrochemical studies.
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过氧化氢酶在不同浓度牛血清白蛋白下的活性
交联酶在一定温度下比游离酶更稳定。牛血清白蛋白(Bovine serum albumin, BSA)具有大量的胺基,可在酶聚集物之间提供强结合,从而提高生物活性层的活性和稳定性。与戊二醛等交联剂形成共价键后,酶-牛血清白蛋白混合物变得更加稳定。利用紫外光将HRP酶与牛血清白蛋白、明胶和戊二醛一起固定在金电极上。用7.5 mg、15 mg、30 mg和60 mg浓度的BSA制备了4个不同的电极,用4种不同的电极对4种不同的亚铁分析物进行了16次电化学测量。戊二醛与牛血清白蛋白聚合物结合,具有比酶更高的亲和力,减少了牛血清白蛋白对HRP造成的紧密共价交联,确保酶活性的持续。不同BSA浓度对酶活性有显著影响。用于交联酶的聚合物的浓度是电化学研究中的一个重要因素。
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