Kacou A, Ouvrard A, Jamet D, Jamet J-L, Blache Y
Université de Toulon, MAPIEM, Toulon, France.
Université de Toulon, Aix Marseille Univ, CNRS, IRD, MIO, CNRS, Toulon, France.
Lett Appl Microbiol. 2019 Apr;68(4):360-368. doi: 10.1111/lam.13150.
The antibiofilm activity of three hemibastadins analogues was evaluated against different marine bacterial strains through mono-species biofilms and through a multi-species model of biofilm. Results showed that compound 3 exhibited interesting antibiofilm efficiencies effective concentrations (EC ) in the range of 30-100 μmol l without acute toxicity against bacteria. Toxicity against nontargeted organisms was also considered showing that the compound did not affect the global bacterial community at a concentration of 75-100 μmol l . These results provided baseline data concerning the toxicity of antibiofilm biocides against marine organisms. SIGNIFICANCE AND IMPACT OF THE STUDY: This study reports relevant information about antibiofilm activity of original derivatives of hemibastadin alkaloids. The most active compound was shown to act as a specific anti-biofilm inhibitor without affecting viability of the targeted bacteria no more than those of the global bacterial community of a seawater sample. Taken together, these findings indicate the potentiality of such compounds to be used as original nonbiocidal molecules for designing eco-friendly antifouling solutions.
通过单物种生物膜和多物种生物膜模型,评估了三种半bastadins类似物对不同海洋细菌菌株的抗生物膜活性。结果表明,化合物3表现出有趣的抗生物膜效率,有效浓度(EC)在30-100μmol/l范围内,对细菌无急性毒性。还考虑了对非目标生物的毒性,结果表明该化合物在75-100μmol/l的浓度下不会影响全球细菌群落。这些结果提供了有关抗生物膜杀菌剂对海洋生物毒性的基线数据。研究的意义和影响:本研究报告了有关半bastadin生物碱原始衍生物抗生物膜活性的相关信息。最具活性的化合物被证明是一种特异性抗生物膜抑制剂,对目标细菌活力的影响不超过海水样本中全球细菌群落的影响。综上所述,这些发现表明这些化合物有潜力作为原始的非杀生分子用于设计环保型防污解决方案。