Diallinas George, Rafailidou Nausica, Kalpaktsi Ioanna, Komianou Aikaterini Christina, Tsouvali Vivian, Zantza Iliana, Mikros Emmanuel, Skaltsounis Alexios Leandros, Kostakis Ioannis K
Department of Biology, National and Kapodistrian University of Athens, Athens, Greece.
Department of Pharmacy, National and Kapodistrian University of Athens, Athens, Greece.
Front Microbiol. 2018 Nov 6;9:2624. doi: 10.3389/fmicb.2018.02624. eCollection 2018.
Fungal infections constitute an emerging threat and a prevalent health problem due to increasing number of immunocompromised people and pharmacological or other treatments aiming at viral infections, cancer or allergies. Currently used antifungals suffer from inefficiency, toxic side effects and developing drug-resistance. Additionally, over the last two decades no new classes of antifungals have been approved, emphasizing the urgent need for developing a novel generation of antifungals. Here, we investigate the antifungal activity of a series of chemically synthesized Hydroxytyrosol (HT) analogs. HT is one of the major phenolic compounds in olive oil, shown to possess radical-scavenging antioxidant, antiproliferative, proapoptotic and anti-inflammatory activities. No previous report has studied HT analogs as antifungals. We show that specific analogs have broad and strong antifungal activity, significantly stronger than the parent compound HT. Using as an cellular model system, we show that antifungal HT analogs have an unprecedented efficiency in fungal plasma membrane destruction. Importantly, antifungal HT analogs did not show toxicity in a mammalian cell line, whereas no resistance to HT analogs was obtained by standard mutagenesis. Our results open the way for the development of a novel, efficient and safer class of antifungals.
由于免疫功能低下人群数量的增加以及针对病毒感染、癌症或过敏的药物治疗或其他治疗手段,真菌感染已成为一个新出现的威胁和普遍存在的健康问题。目前使用的抗真菌药物存在效率低下、毒副作用以及产生耐药性等问题。此外,在过去的二十年里,没有新的抗真菌药物类别获得批准,这凸显了开发新一代抗真菌药物的迫切需求。在此,我们研究了一系列化学合成的羟基酪醇(HT)类似物的抗真菌活性。HT是橄榄油中的主要酚类化合物之一,具有清除自由基的抗氧化、抗增殖、促凋亡和抗炎活性。此前没有关于HT类似物作为抗真菌药物的研究报道。我们发现特定的类似物具有广泛而强大的抗真菌活性,明显强于母体化合物HT。使用作为细胞模型系统,我们表明抗真菌的HT类似物在破坏真菌质膜方面具有前所未有的效率。重要的是,抗真菌的HT类似物在哺乳动物细胞系中未显示出毒性,而通过标准诱变也未获得对HT类似物的抗性。我们的研究结果为开发新型、高效且更安全的抗真菌药物开辟了道路。