Andjouh Sofyane, Blache Yves
a MAPIEM , Université de Toulon , La Garde , France.
Biofouling. 2016 Sep;32(8):871-81. doi: 10.1080/08927014.2016.1200562.
Rapid and efficient synthesis of 23 analogues inspired by bromotyramine derivatives, marine natural products, by means of CuSO4-catalysed [3+2] alkyne-azide cycloaddition is described. The final target was then assayed for anti-biofilm activity against three Gram-negative marine bacteria, Pseudoalteromonas ulvae (TC14), Pseudoalteromonas lipolytica (TC8) and Paracoccus sp. (4M6). Most of the synthesised bromotyramine/triazole derivatives are more active than the parent natural products Moloka'iamine (A) and 3,5-dibromo-4-methoxy-β-phenethylamine (B) against biofilm formation by the three bacterial strains. Some of these compounds were shown to act as non-toxic inhibitors of biofilm development with EC50 < 200 μM without any effect on bacterial growth even at high concentrations (200 μM).
本文描述了通过硫酸铜催化的[3+2]炔烃-叠氮环加成反应,快速高效地合成了23种受溴酪胺衍生物、海洋天然产物启发的类似物。然后对最终目标化合物进行了抗生物膜活性测试,针对三种革兰氏阴性海洋细菌,即解淀粉假交替单胞菌(TC14)、解脂假交替单胞菌(TC8)和副球菌属(4M6)。大多数合成的溴酪胺/三唑衍生物在抑制这三种细菌菌株形成生物膜方面比母体天然产物莫洛卡胺(A)和3,5-二溴-4-甲氧基-β-苯乙胺(B)更具活性。其中一些化合物被证明是生物膜形成的无毒抑制剂,其半数有效浓度(EC50)<200μM,即使在高浓度(200μM)下对细菌生长也没有任何影响。