Samsonowicz Mariola, Regulska Ewa, Kalinowska Monika
Bialystok University of Technology, Division of Chemistry, Wiejska 45E, 15-351 Bialystok, Poland.
Bialystok University of Technology, Division of Chemistry, Wiejska 45E, 15-351 Bialystok, Poland.
Chem Biol Interact. 2017 Aug 1;273:245-256. doi: 10.1016/j.cbi.2017.06.016. Epub 2017 Jun 15.
High content of hydroxyflavones in fruits, vegetables, cereals and herbs makes them a common component of the human diet. Because of their antioxidant, antiviral, antibacterial, anti-inflammatory, anticancer properties they still pay an attention of many scientific centers. Hydroxyflavones may form complexes with metal cations, and their chelating properties differ significantly depending on the number and position of hydroxyl substituents in the ring. Synthesis of new complexes of hydroxyflavones allows for improvement biological properties, stability, water-solubility, hydrophilicity, bioavailability comparing with the parent hydroxyflavones. It expands the applicability of hydroxyflavones as food additives, diet supplements, preservatives or drug. This paper reviews on the procedures of synthesis of metal complexes with hydroxyflavones, their molecular structure, mode of coordinations, spectroscopic properties and their biological activity. The dependency between the biological activity of these compounds and their molecular structure is discussed.
水果、蔬菜、谷物和草本植物中富含羟基黄酮,这使其成为人类饮食中的常见成分。由于其具有抗氧化、抗病毒、抗菌、抗炎和抗癌特性,它们仍然受到许多科研中心的关注。羟基黄酮可与金属阳离子形成络合物,其螯合特性会因环中羟基取代基的数量和位置而有显著差异。与母体羟基黄酮相比,合成新型羟基黄酮络合物可改善其生物学性质、稳定性、水溶性、亲水性和生物利用度。这扩大了羟基黄酮作为食品添加剂、膳食补充剂、防腐剂或药物的应用范围。本文综述了羟基黄酮金属络合物的合成方法、分子结构、配位方式、光谱性质及其生物活性。还讨论了这些化合物的生物活性与其分子结构之间的关系。