Fabrication of Hybrid Materials from Titanium Dioxide and Natural Phenols for Efficient Radical Scavenging against Oxidative Stress

DPPH 抗氧化剂 儿茶素 氧化应激 酚类 二氧化钛 槲皮素 苯酚 核化学 化学 材料科学 姜黄素 激进的 有机化学 多酚 复合材料 生物化学
作者
Huayang Yu,Zhili Guo,Shuqi Wang,Ganwarige Sumali Nivanthi Fernando,Simran Channa,Algy Kazlauciunas,D.P. Martin,Sergey A. Krasnikov,Alexander N. Kulak,Christine Boesch,Natalia N. Sergeeva
出处
期刊:ACS Biomaterials Science & Engineering [American Chemical Society]
卷期号:5 (6): 2778-2785 被引量:16
标识
DOI:10.1021/acsbiomaterials.9b00535
摘要

Oxidative stress caused by free radicals is one of the great threats to inflict intracellular damage. Here, we report a convenient approach to the synthesis, characterization, and evaluation of the radical activity of titanium-based composites. We have investigated the potential of natural antioxidants (curcumin, quercetin, catechin, and vitamin E) as radical scavengers and stabilizers. The titanium oxide composites were prepared via three steps including sol-gel synthesis, carboxylation, and esterification. The characterization of the titanium-phenol composites was carried out by FTIR, PXRD, UV-vis and SEM methods. The radical scavenging ability of the novel materials was evaluated using DPPH and an in vitro LPO assay using isolated rat liver mitochondria. The novel materials exhibit both a higher stability and an antioxidant activity in comparison to bare TiO2. It was found that curcumin and quercetin based composites show the highest antioxidant efficiency among the composites under study followed by catechin and vitamin E based materials. The results from an MTT assay carried out on the Caco-2 cell line indicate that the composites do not contribute to the cytotoxicity in vitro. This study demonstrates that a combination of powerful antioxidants with titanium dioxide can change its functional properties and provide a convenient strategy against oxidative stress.
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