Department of Biotechnology, Faculty of Biological Science and Technology, University of Isfahan, Isfahan 81746-73441, Iran.
Department of Biotechnology, Faculty of Biological Science and Technology, University of Isfahan, Isfahan 81746-73441, Iran.
Food Chem. 2024 Nov 1;457:140144. doi: 10.1016/j.foodchem.2024.140144. Epub 2024 Jun 16.
The escalating oxidative stress has heightened the daily human demand for diverse antioxidants. Therefore, development of the novel approaches to assess the total antioxidant capacity (TAC) of various nutrients is essential. In this study, drawing inspiration from the active site of native peroxidase enzymes, a novel peroxidase (POD)-like nanozyme was developed based on the cobalt ferrite (CoFeO) nanoparticles functionalized with different catalytic amino acids. Based on the TMB/HO colorimetric system, the most substantial enhancement in POD-like activity was obtained by the glutamic acid coating among different charged amino acids studied, with more than 74% increase in specific activity compared to the bare CoFeO. A signal-off colorimetric sensing platform based on the obtained nanobiocatalyst was developed for the accurate quantification of the antioxidant capacity of phenolic compounds and vitamin C. The sensitive and selective quantification of ascorbic acid, tannic acid, gallic acid, cyanidin-3-glucoside, and quercetin was obtained by this colorimetric method.
不断加剧的氧化应激增加了人类对各种抗氧化剂的日常需求。因此,开发评估各种营养素总抗氧化能力 (TAC) 的新方法至关重要。在这项研究中,受天然过氧化物酶活性位点的启发,基于不同催化氨基酸功能化的钴铁氧体 (CoFeO) 纳米颗粒,开发了一种新型过氧化物酶 (POD) 样纳米酶。基于 TMB/HO 比色体系,在研究的不同带电氨基酸中,谷氨酸涂层获得了最高的 POD 样活性增强,比裸 CoFeO 的比活性提高了 74%以上。基于所获得的纳米生物催化剂,开发了一种信号关闭比色传感平台,用于准确量化酚类化合物和维生素 C 的抗氧化能力。通过这种比色法可以灵敏和选择性地定量测定抗坏血酸、单宁酸、没食子酸、矢车菊素-3-葡萄糖苷和槲皮素。