Cattò Cristina, Fassi Enrico M A, Grazioso Giovanni, Gelain Arianna, Villa Stefania, Cappitelli Francesca
Department of Food, Environmental and Nutritional Sciences, University of Milan, via G. Celoria 2, 20133 Milan, Italy.
Department of Pharmaceutical Sciences, University of Milan, via L. Mangiagalli 25, 20133 Milan, Italy.
ACS Omega. 2025 May 20;10(21):22285-22295. doi: 10.1021/acsomega.5c03581. eCollection 2025 Jun 3.
Zosteric acid (ZA), or -(sulphooxy)-cinnamic acid, is a secondary metabolite of the seagrass Zostera marina able to reduce biofilm formation of a wide range of bacteria and fungi, through a nonbiocidal mode of action. However, the lack of information concerning the specific chemical structural elements responsible for ZA's antibiofilm activity has hindered the scaling up of this green-based technology for real applications. In this study, a small library of molecules based on ZA scaffold diversity was screened against the eukaryotic fungus Candida albicans, in order to identify the key chemical features of ZA necessary for inhibiting fungal biofilm at sublethal concentrations. Results, supported by multivariate statistical analysis, revealed that the presence of (i) the () double bond, (ii) the free carboxylic group in the side chain, and (iii) the substitution with a hydroxyl group were all instrumental for maintaining the antibiofilm activity of the molecules. Additionally, molecular modeling studies suggested that the best performing derivatives interacted with NADP-(H) quinone oxidoreductase, influencing the microbial redox balance.
带状疱疹酸(ZA),即α-(磺氧基)-肉桂酸,是海草大叶藻的一种次生代谢产物,能够通过非杀菌作用模式减少多种细菌和真菌的生物膜形成。然而,由于缺乏关于负责ZA抗生物膜活性的特定化学结构元素的信息,阻碍了这种基于绿色的技术扩大规模以用于实际应用。在本研究中,针对真核真菌白色念珠菌筛选了一个基于ZA支架多样性的小分子文库,以确定在亚致死浓度下抑制真菌生物膜所需的ZA的关键化学特征。多变量统计分析支持的结果表明,(i)碳碳双键、(ii)侧链中的游离羧基以及(iii)羟基取代的存在对于维持分子的抗生物膜活性均至关重要。此外,分子模拟研究表明,表现最佳的衍生物与NADP-(H)醌氧化还原酶相互作用,影响微生物的氧化还原平衡。