Can bee propolis help us fight against methicillin-resistant Staphylococcus aureus (MRSA)?

Nicolas Ripari, Maria Beatriz Toti, J. Bastos, J. M. Sforcin
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Abstract

Methicillin-resistant Staphylococcus aureus (MRSA) is a multidrug-resistant pathogen in nosocomial infections. Since the 1950’s, MRSA has acquired several resistance factors including efflux pumps and drug target modifications. Some studies investigated the anti-MRSA capacity of propolis samples collected in different regions and their immunomodulatory action. The aim of this review is to gather the data published up to August 2022 about propolis action on MRSA strains and its modulatory action on phagocytes. The PubMed database was used looking for articles containing the keywords “propolis”, “immunomodulation”, “MRSA” and the name of each compound. As propolis contains a variety of compounds making it impossible to isolate the major bioactive components, we reviewed the main compounds found in several propolis samples and their mechanisms towards the resistance factors displayed by MRSA. Some perspectives for using propolis-based medications and the formulation of new antimicrobial/immunomodulatory agents are discussed. Propolis extracts and active compounds exert antibacterial action over MRSA strains acting on resistance factors. Moreover, propolis modulates pro-inflammatory markers in phagocytes. Because propolis compounds may act synergistically, it’s crucial to understand how these components interact in order to synthesize standardized formulations and enhance their bioavailability for clinical applications to combat MRSA.
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蜂胶能帮助我们对抗耐甲氧西林金黄色葡萄球菌(MRSA)吗?
耐甲氧西林金黄色葡萄球菌(MRSA)是医院感染中的一种耐多药病原体。自20世纪50年代以来,耐甲氧西林金黄色葡萄球菌已经获得了多种耐药性因素,包括外排泵和药物靶点修饰。一些研究调查了不同地区采集的蜂胶样品的抗MRSA能力及其免疫调节作用。这篇综述的目的是收集截至2022年8月发表的关于蜂胶对MRSA菌株的作用及其对吞噬细胞的调节作用的数据。PubMed数据库用于查找包含关键词“蜂胶”、“免疫调节”、“MRSA”和每种化合物名称的文章。由于蜂胶含有多种化合物,无法分离出主要的生物活性成分,我们综述了在几种蜂胶样品中发现的主要化合物及其对MRSA显示的抗性因子的作用机制。讨论了蜂胶类药物的使用前景以及新型抗菌/免疫调节剂的配方。蜂胶提取物和活性化合物对作用于抗性因子的MRSA菌株具有抗菌作用。此外,蜂胶调节吞噬细胞中的促炎标志物。由于蜂胶化合物可能具有协同作用,因此了解这些成分是如何相互作用的,以合成标准化制剂并提高其生物利用度,从而在临床应用中对抗耐甲氧西林金黄色葡萄球菌至关重要。
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