Pormohammad Ali, Hansen Dave, Turner Raymond J
Department of Biological Sciences, Faculty of Science, University of Calgary, Calgary, AB T2N 1N4, Canada.
C-Crest Laboratories Inc., Montreal, QC H1P 3H8, Canada.
Antibiotics (Basel). 2022 Aug 12;11(8):1099. doi: 10.3390/antibiotics11081099.
Plant-based natural compounds (PBCs) are comparatively explored in this study to identify the most effective and safe antibacterial agent/s against six World Health Organization concern pathogens. Based on a contained systematic review, 11 of the most potent PBCs as antibacterial agents are included in this study. The antibacterial and antibiofilm efficacy of the included PBCs are compared with each other as well as common antibiotics (ciprofloxacin and gentamicin). The whole plants of two different strains of are extracted to compare the results with sourced ultrapure components. Out of 15 PBCs, tetrahydrocannabinol, cannabidiol, cinnamaldehyde, and carvacrol show promising antibacterial and antibiofilm efficacy. The most common antibacterial mechanisms are explored, and all of our selected PBCs utilize the same pathway for their antibacterial effects. They mostly target the bacterial cell membrane in the initial step rather than the other mechanisms. Reactive oxygen species production and targeting [Fe-S] centres in the respiratory enzymes are not found to be significant, which could be part of the explanation as to why they are not toxic to eukaryotic cells. Toxicity and antioxidant tests show that they are not only nontoxic but also have antioxidant properties in as an animal model.
本研究对植物源天然化合物(PBCs)进行了比较探索,以确定针对世界卫生组织关注的六种病原体最有效且安全的抗菌剂。基于一项有针对性的系统评价,本研究纳入了11种最具潜力的作为抗菌剂的PBCs。将纳入的PBCs的抗菌和抗生物膜功效相互比较,同时与常用抗生素(环丙沙星和庆大霉素)进行比较。提取两种不同菌株的整株植物,以便将结果与来源的超纯成分进行比较。在15种PBCs中,四氢大麻酚、大麻二酚、肉桂醛和香芹酚显示出有前景的抗菌和抗生物膜功效。探究了最常见的抗菌机制,我们所选的所有PBCs都通过相同途径发挥抗菌作用。它们在初始步骤中大多靶向细菌细胞膜,而非其他机制。未发现活性氧的产生以及对呼吸酶中[Fe-S]中心的靶向作用具有显著意义,这可能是它们对真核细胞无毒的部分原因。毒性和抗氧化试验表明,在作为动物模型的[具体动物]中,它们不仅无毒,还具有抗氧化特性。