Akyüz Esin, Şen Furkan Burak, Bener Mustafa, Başkan Kevser Sözgen, Tütem Esma, Apak Reşat
Department of Chemistry, Faculty of Engineering, Istanbul University-Cerrahpasa, Avcilar, 34320 Istanbul, Turkey.
Turkish Academy of Sciences (TUBA), Piyade St. No: 27, Çankaya, Ankara 06690, Turkey.
ACS Omega. 2019 Jan 31;4(1):2455-2462. doi: 10.1021/acsomega.8b03286.
In this work, chicken egg white protein (CEW)-protected gold nanoclusters (CEW-AuNCs) were prepared from CEW and HAuCl to measure the Cu(II)-induced prooxidant activity of antioxidant compounds such as epicatechin, epigallocatechin gallate, catechin, rosmarinic acid, resveratrol, ascorbic acid, and glutathione. These compounds reduced Cu(II) to Cu(I), and the latter was mainly bound to thiol groups in the CEW-AuNC structure. As the protein-bound Cu(I) may act as a catalytic center for generating reactive oxygen species, the Cu(II) reducing ability of antioxidants is an indirect measure of their prooxidant potency. The bound Cu(I) may be released with the cuprous-selective ligand neocuproine (Nc), forming the basis of a spectrophotometric method measuring absorbance at 450 nm wavelength of the Cu(I)-Nc chelate. The developed method involved a one-pot synthesis and determination without preseparation and was applied to binary synthetic mixtures of studied antioxidant compounds and to certain herbal plant (green tea, linden, echinacea, and artichoke leaf) extracts to determine the total prooxidant activities. The obtained results were statistically compared with those of the literature Cu(II)-Nc assay using a calcium proteinate-based solid biosensor. The developed biosensor was durable, reliable, easily applicable, and of low cost and wide linear range and could determine the prooxidant activities of natural antioxidant samples with high reproducibility.
在本研究中,由鸡蛋白蛋白(CEW)和氯金酸制备了鸡蛋白蛋白保护的金纳米团簇(CEW-AuNCs),以测定铜(II)诱导的抗氧化剂(如表儿茶素、表没食子儿茶素没食子酸酯、儿茶素、迷迭香酸、白藜芦醇、抗坏血酸和谷胱甘肽)的促氧化活性。这些化合物将铜(II)还原为铜(I),后者主要与CEW-AuNC结构中的巯基结合。由于与蛋白质结合的铜(I)可能作为产生活性氧的催化中心,抗氧化剂的铜(II)还原能力是其促氧化能力的间接度量。结合的铜(I)可以与亚铜选择性配体新亚铜灵(Nc)一起释放,形成一种在450nm波长处测量铜(I)-Nc螯合物吸光度的分光光度法的基础。所开发的方法涉及一步合成和测定,无需预分离,并应用于所研究的抗氧化剂化合物的二元合成混合物以及某些草药植物(绿茶、椴树、紫锥菊和洋蓟叶)提取物,以测定总促氧化活性。使用基于蛋白钙的固体生物传感器,将获得的结果与文献中铜(II)-Nc测定的结果进行统计学比较。所开发的生物传感器耐用、可靠、易于应用、成本低且线性范围宽,能够以高重现性测定天然抗氧化剂样品的促氧化活性。