Vardanyan Ani, Agback Tatiana, Golovko Oksana, Diétre Quentin, Seisenbaeva Gulaim A
Department of Molecular Sciences, Swedish University of Agricultural Sciences, P.O. Box 7015, Uppsala 75007, Sweden.
Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, P.O. Box 7050, Uppsala 75007, Sweden.
ACS ES T Water. 2024 Jan 30;4(2):751-760. doi: 10.1021/acsestwater.3c00811. eCollection 2024 Feb 9.
Biocatalytic degradation with the use of enzymes has gained great attention in the past few years due to its advantages of high efficiency and environmental friendliness. Novel, cost-effective, and green nanoadsorbents were produced in this study, using natural silicates as an enzyme host matrix for core-shell immobilization technique. With the natural silicate as a core and silica layer as a shell, it was possible to encapsulate two different enzymes: horseradish peroxidase (HRP) and laccase, for removal and degradation of three pharmaceuticals: diclofenac (DFC), carbamazepine (CBZ), and paracetamol (PC). The biocatalysts demonstrated high oxidation rates for the selected pollutants. In particular HRP immobilized fly ash and perlite degraded DFC and PC completely during 3 days of interaction and also showed high degradation rates for CBZ. Immobilized laccase was successful in PC degradation, where up to 70-80% degradation of the compounds with aromatic rings was reported by NMR measurements for a high drug concentration of 10 μg/mL. The immobilization method played a significant role in this process by providing stability and protection for the enzymes over 3 weeks. Furthermore, the enzymes acted differently in the three chosen supports due to their complex chemical composition, which could have an effect on the overall enzyme activity.
近年来,利用酶进行生物催化降解因其高效性和环境友好性的优点而备受关注。本研究以天然硅酸盐为酶宿主基质,采用核壳固定化技术制备了新型、经济高效且绿色的纳米吸附剂。以天然硅酸盐为核,二氧化硅层为壳,可以包封两种不同的酶:辣根过氧化物酶(HRP)和漆酶,用于去除和降解三种药物:双氯芬酸(DFC)、卡马西平(CBZ)和对乙酰氨基酚(PC)。生物催化剂对所选污染物表现出较高的氧化速率。特别是固定化在粉煤灰和珍珠岩上的HRP在3天的相互作用过程中完全降解了DFC和PC,对CBZ也显示出较高的降解率。固定化漆酶成功降解了PC,对于10μg/mL的高药物浓度,核磁共振测量表明具有芳香环的化合物降解率高达70-80%。固定化方法在这一过程中发挥了重要作用,为酶提供了超过3周的稳定性和保护。此外,由于三种所选载体的化学成分复杂,可能会影响酶的整体活性,酶在其中的作用也有所不同。