Nostro Antonia, Papalia Teresa
Pharmaco-Biological Department, Faculty of Pharmacy, University of Messina, Italy.
Recent Pat Antiinfect Drug Discov. 2012 Apr;7(1):28-35. doi: 10.2174/157489112799829684.
During the last few years the scientific community has shown a considerable interest in the study of plant materials as sources of new compounds to be processed into antimicrobial agents. In this context, carvacrol, a monoterpenic phenol, has emerged for its wide spectrum activity extended to food spoilage or pathogenic fungi, yeast and bacteria as well as human, animal and plant pathogenic microorganisms including drug-resistant and biofilm forming microorganisms. The antibacterial activity of carvacrol has been attributed to its considerable effects on the structural and functional properties of cytoplasmatic membrane. The data reported in this review provide an overview of the published literature regarding the antimicrobial properties of carvacrol and the recent patents claimed in order to highlight its future applications as a new antimicrobial agent. These could concern either the natural preservation in the cosmetic and food industries or an alternative which supports the conventional antimicrobial protocols. Interestingly, carvacrol alone or associated with one or more synergistic products could be incorporated in different formulations for biomedical and food packaging applications. However, more detailed safety investigations and in vivo studies should be carried out so that this molecule could be used in the future.
在过去几年中,科学界对研究植物材料作为新化合物来源以加工成抗菌剂表现出了浓厚兴趣。在此背景下,香芹酚作为一种单萜酚,因其广泛的活性而崭露头角,其活性范围涵盖食品腐败菌、致病真菌、酵母和细菌,以及包括耐药菌和形成生物膜的微生物在内的人类、动物和植物致病微生物。香芹酚的抗菌活性归因于其对细胞质膜结构和功能特性的显著影响。本综述中报道的数据概述了已发表的关于香芹酚抗菌特性的文献以及近期申请的专利,以突出其作为新型抗菌剂的未来应用。这些应用可能涉及化妆品和食品工业中的天然保鲜,或作为传统抗菌方案的替代方法。有趣的是,香芹酚单独使用或与一种或多种协同产品结合,可用于生物医学和食品包装应用的不同配方中。然而,应进行更详细的安全性研究和体内研究,以便该分子能够在未来得到应用。