de Figueiredo Sonia M, Nogueira-Machado Jose A, Almeida Bruno de M, Abreu Sheila R L, de Abreu Jose A S, Filho Sidney A V, Binda Nancy S, Caligiorne Rachel B
Escola de Nutricao, Universidade, Federal de Ouro Preto, Campus Morro do Cruzeiro, Ouro Preto Minas, Gerais, Brazil. CEP 35400-000.
Recent Pat Endocr Metab Immune Drug Discov. 2014;8(2):85-94. doi: 10.2174/1872214808666140619115319.
Propolis is a resinous material collected by honeybees from numerous plants and serves as a defense against intruders. Because of its relevant curative properties, it is now gaining popularity in health foods and in cosmetic products. Understanding the underlying molecular mechanisms of phytochemicals has become a good strategy in bioprospection for new anti-inflammatory compounds. The biological activity of propolis derives from its high levels of phenolic acids, while flavonoids are thought to account for the activity of propolis extracts. The comprehension of the relationship between propolis and the immune system has progressed in the last years, recent articles have provided important contributions to this investigation field. Studies have shown that propolis suppressed the "IL-6-induced phosphorylation of signal transducer and STAT3", an essential cytokine-activated transcription factor in Th17 development. Therefore, action mechanisms of "propolis on Th17 differentiation could be instrumental in controlling disturbed cytokine networks in inflammation, autoimmune diseases, and infections." The use of propolis has been proposed in some patents as: WO201363714; CN102885854, WO2013142936, US20130266521, and US20130129808, which are related to the treatment of dental diseases; adjuvant in anti-cancer treatment; in cosmetic products; as an anti-inflammatory agent and natural antibiotic. Although there are many publications regarding the propolis efficacy, its applicability to human health and mechanisms of action are not completely understood, creating opportunities for new studies.
蜂胶是蜜蜂从多种植物采集的树脂状物质,用作抵御入侵者的防御手段。由于其相关的治疗特性,它现在在保健食品和化妆品中越来越受欢迎。了解植物化学物质的潜在分子机制已成为生物勘探新型抗炎化合物的良好策略。蜂胶的生物活性源于其高含量的酚酸,而黄酮类化合物被认为是蜂胶提取物活性的原因。近年来,对蜂胶与免疫系统之间关系的理解有了进展,最近的文章为该研究领域做出了重要贡献。研究表明,蜂胶抑制了“IL-6诱导的信号转导子和STAT3磷酸化”,STAT3是Th17细胞发育中一种重要的细胞因子激活转录因子。因此,“蜂胶对Th17分化的作用机制可能有助于控制炎症、自身免疫性疾病和感染中紊乱的细胞因子网络”。在一些专利中提出了蜂胶的用途,如:WO201363714;CN102885854、WO2013142936、US20130266521和US20130129808,这些专利涉及牙科疾病的治疗;抗癌治疗中的佐剂;化妆品中;作为抗炎剂和天然抗生素。尽管有许多关于蜂胶功效的出版物,但其对人类健康的适用性和作用机制尚未完全了解,这为新的研究创造了机会。