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通过交联酶聚集体制备固定化的耐热细胞内漆酶:表征、在双酚A去除中的应用及植物毒性评估

A heat-resistant intracellular laccase immobilized via cross-linked enzyme aggregate preparation: Characterization, application in bisphenol A removal and phytotoxicity evaluation.

作者信息

Ademakinwa Adedeji Nelson

机构信息

Department of Physical and Chemical Sciences, Elizade University, Ilara-Mokin, Ondo-State, Nigeria.

出版信息

J Hazard Mater. 2021 Oct 5;419:126480. doi: 10.1016/j.jhazmat.2021.126480. Epub 2021 Jun 25.

DOI:10.1016/j.jhazmat.2021.126480
PMID:34218192
Abstract

Aureobasidium pullulans laccase was immobilized via cross-linked enzyme aggregate (CLEA) and deployed in bisphenol-A (BPA) removal. The immobilization and BPA removal processes were mathematically modeled. The CLEA-treated BPA was evaluated for phytotoxicity. The optimum conditions for CLEA resulting in the highest immobilization yield were ammonium sulfate (60% w/v), glutaraldehyde (30 mM), pH (4.5), time (6 h) and temperature (45 °C). The CLEA retained about 56% of its activity after twelve catalytic cycles. The optimum pH and temperature of the laccase CLEA were 5.5 and 60 °C respectively. The SEM indicated that the laccase CLEA was type II (unstructured). The data obtained from the heat inactivation kinetics and thermodynamic characterization indicated that the CLEA was stable to heat denaturation than the free enzyme. The kinetic parameters obtained for the CLEA with ABTS as substrate were 101.3 µM, 2.94 µmols mg and 0.03 dm s mg for the Km, Kcat and Kcat/Km respectively. The optimum conditions for BPA removal using the CLEA were temperature (30 °C), time (2 h), CLEA (1.0 mg) and BPA concentration (40 mg/L). After the 7th cycle, BPA removal by the laccase CLEA was 63 ± 2.3%. From the germination index values obtained, the CLEA-treated BPA solution showed no phytotoxicity to germinated S. bicolor seeds compared to the untreated (BPA-only) solutions.

摘要

通过交联酶聚集体(CLEA)固定化出芽短梗霉漆酶,并将其用于去除双酚A(BPA)。对固定化过程和BPA去除过程进行了数学建模。对经CLEA处理的BPA进行了植物毒性评估。获得最高固定化产率的CLEA的最佳条件为硫酸铵(60% w/v)、戊二醛(30 mM)、pH(4.5)、时间(6小时)和温度(45℃)。经过12个催化循环后,CLEA保留了约56%的活性。漆酶CLEA的最佳pH和温度分别为5.5和60℃。扫描电子显微镜表明漆酶CLEA为II型(无定形)。从热失活动力学和热力学表征获得的数据表明,与游离酶相比,CLEA对热变性更稳定。以ABTS为底物时,CLEA的动力学参数分别为:Km为101.3 μM,Kcat为2.94 μmol·mg,Kcat/Km为0.03 dm·s·mg。使用CLEA去除BPA的最佳条件为温度(30℃)、时间(2小时)、CLEA(1.0 mg)和BPA浓度(40 mg/L)。在第7个循环后,漆酶CLEA对BPA的去除率为63±2.3%。从获得的发芽指数值来看,与未处理(仅含BPA)的溶液相比,经CLEA处理的BPA溶液对发芽的二色胡枝子种子没有植物毒性。

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