Lazo Glenda L, Lemes Danieli Cristina, Pauletti Patrícia M, Bastos Jairo K, Ambrósio Sérgio Ricardo, Veneziani Rodrigo Cassio S, Pires Regina Helena
Universidade de Franca, Programa de Pós-Graduação em Promoção de Saúde, Av. Dr. Armando Salles de Oliveira, 201, 14404-600 Franca, SP, Brazil.
Agrarian University of Ecuador, Faculty of Veterinary Medicine and Zootechnics, 25 de Julio y Pio Jaramillo Ave., 090104 Guayaquil, Ecuador.
An Acad Bras Cienc. 2025 Jun 20;97(3):e20241302. doi: 10.1590/0001-3765202520241302. eCollection 2025.
Propolis, harvested by bees from local and seasonal flora, exhibits a diverse chemical composition renowned for its antimicrobial, antioxidant, and anti-inflammatory attributes. This positions it as a promising ally in combatting antimicrobial resistance. This narrative review aims to provide a comprehensive investigation of in vitro studies investigating propolis' antimicrobial efficacy. Employing the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) methodology, we conducted searches in PubMed, SciELO, and Lilacs databases. Articles published between 2011 and 2023, in English, Spanish, or Portuguese, and focusing on propolis' in vitro antimicrobial activity against human pathogens were included using descriptors. Out of 291 initially identified articles, 34 were meticulously chosen post-application of exclusion criteria. Despite originating from diverse regions, propolis consistently demonstrates a rich profile abundant in fundamental phenolic compounds and flavonoids. The synergy of its constituent elements' leads to significant antibacterial significant antibacterial and antifungal effects via distinct mechanisms. Appreciating the varied chemical compositions of propolis is imperative for optimizing its therapeutic potential. Its remarkable antibacterial and antifungal attributes, alongside standardized testing methodologies and exploration of synergistic combinations with conventional antibiotics or essential oils, present compelling strategies for effectively addressing antimicrobial resistance.
蜂胶是蜜蜂从当地季节性植物中采集而来,其化学成分多样,以抗菌、抗氧化和抗炎特性而闻名。这使其成为对抗抗菌耐药性的一个有前景的帮手。本叙述性综述旨在全面调查研究蜂胶抗菌功效的体外研究。我们采用系统评价和Meta分析的首选报告项目(PRISMA)方法,在PubMed、SciELO和Lilacs数据库中进行检索。纳入了2011年至2023年间发表的、以英文、西班牙文或葡萄牙文撰写、聚焦于蜂胶对人类病原体的体外抗菌活性的文章,检索词使用描述符。在最初识别出的291篇文章中,应用排除标准后精心挑选出34篇。尽管蜂胶产自不同地区,但其始终呈现出富含基本酚类化合物和黄酮类化合物的丰富成分。其组成成分的协同作用通过不同机制产生显著的抗菌和抗真菌效果。认识到蜂胶化学成分的多样性对于优化其治疗潜力至关重要。其显著的抗菌和抗真菌特性,以及标准化的测试方法,还有探索与传统抗生素或精油的协同组合,为有效应对抗菌耐药性提供了引人注目的策略。