Petrucci Rita, Bortolami Martina, Di Matteo Paola, Curulli Antonella
Department of Basic and Applied Sciences of Engineering, Sapienza University of Rome, 00161 Rome, Italy.
Consiglio Nazionale delle Ricerche, Istituto per lo Studio dei Materiali Nanostrutturati, Unità Operativa di Support, Sapienza, 00161 Rome, Italy.
Nanomaterials (Basel). 2022 Mar 14;12(6):959. doi: 10.3390/nano12060959.
Antioxidants play a central role in the development and production of food, cosmetics, and pharmaceuticals, to reduce oxidative processes in the human body. Among them, phenolic antioxidants are considered even more efficient than other antioxidants. They are divided into natural and synthetic. The natural antioxidants are generally found in plants and their synthetic counterparts are generally added as preventing agents of lipid oxidation during the processing and storage of fats, oils, and lipid-containing foods: All of them can exhibit different effects on human health, which are not always beneficial. Because of their relevant bioactivity and importance in several sectors, such as agro-food, pharmaceutical, and cosmetic, it is crucial to have fast and reliable analysis Rmethods available. In this review, different examples of gold nanomaterial-based electrochemical (bio)sensors used for the rapid and selective detection of phenolic compounds are analyzed and discussed, evidencing the important role of gold nanomaterials, and including systems with or without specific recognition elements, such as biomolecules, enzymes, etc. Moreover, a selection of gold nanomaterials involved in the designing of this kind of (bio)sensor is reported and critically analyzed. Finally, advantages, limitations, and potentialities for practical applications of gold nanomaterial-based electrochemical (bio)sensors for detecting phenolic antioxidants are discussed.
抗氧化剂在食品、化妆品和药品的开发与生产中起着核心作用,以减少人体中的氧化过程。其中,酚类抗氧化剂被认为比其他抗氧化剂更有效。它们分为天然和合成两类。天然抗氧化剂通常存在于植物中,其合成对应物通常在脂肪、油类和含脂食品的加工和储存过程中作为脂质氧化的预防剂添加:它们对人体健康都可能表现出不同的影响,并非总是有益的。由于它们在农业食品、制药和化妆品等多个领域具有相关的生物活性和重要性,拥有快速可靠的分析方法至关重要。在本综述中,分析和讨论了用于快速、选择性检测酚类化合物的基于金纳米材料的电化学(生物)传感器的不同实例,证明了金纳米材料的重要作用,包括有无生物分子、酶等特定识别元件的系统。此外,还报道并批判性地分析了参与此类(生物)传感器设计的一系列金纳米材料。最后,讨论了基于金纳米材料的电化学(生物)传感器检测酚类抗氧化剂的实际应用的优点、局限性和潜力。