Laboratory of Organometallic Synthesis, Center of Applied NanoSciences (CANS), Facultad de Ciencias Exactas, Universidad Andres Bello, República 330, Santiago 8370186, Chile.
Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andres Bello, Av. República 275, Santiago 8370146, Chile.
Molecules. 2024 Oct 6;29(19):4726. doi: 10.3390/molecules29194726.
Four synthetic Schiff bases (PSB1 [(E)-2-(((4-aminopyridin-3-yl)imino)methyl)-4,6-dibromophenol], PSB2 [(E)-2-(((4-aminopyridin-3-yl)imino)methyl)-4,6-diiodophenol], PSB3 [(E)-2-(((4-aminopyridin-3-yl)imino)methyl)-4-iodophenol], and PSB4 [(E)-2-(((4-aminopyridin-3-yl)imino)methyl)-4-chloro-6-iodophenol]) were fully characterized. These compounds exhibit an intramolecular hydrogen bond between the hydroxyl group of the phenolic ring and the nitrogen of the azomethine group, contributing to their stability. Their antimicrobial activity was evaluated against various Gram-negative and Gram-positive bacteria, and it was found that the synthetic pyridine Schiff bases, as well as their precursors, showed no discernible antimicrobial effect on Gram-negative bacteria, including Typhi (and mutant derivatives), Typhimurium, , and . In contrast, a more pronounced biocidal effect against Gram-positive bacteria was found, including , , , , , and . Among the tested compounds, PSB1 and PSB2 were identified as the most effective against Gram-positive bacteria, with PSB2 showing the most potent biocidal effects. Although the presence of reactive oxygen species (ROS) was noted after treatment with PSB2, the primary mode of action for PSB2 does not appear to involve ROS generation. This conclusion is supported by the observation that antioxidant treatment with vitamin C only partially mitigated bacterial inhibition, indicating an alternative biocidal mechanism.
四种合成希夫碱(PSB1 [(E)-2-((4-氨基吡啶-3-基)亚氨基)甲基)-4,6-二溴苯酚]、PSB2 [(E)-2-((4-氨基吡啶-3-基)亚氨基)甲基)-4,6-二碘苯酚]、PSB3 [(E)-2-((4-氨基吡啶-3-基)亚氨基)甲基)-4-碘苯酚]和 PSB4 [(E)-2-((4-氨基吡啶-3-基)亚氨基)甲基)-4-氯-6-碘苯酚])被充分表征。这些化合物在酚环的羟基和亚氨基氮之间存在分子内氢键,有助于它们的稳定性。它们的抗菌活性被评估对各种革兰氏阴性和革兰氏阳性菌,结果发现合成吡啶希夫碱及其前体对革兰氏阴性菌,包括 Typhi(和突变衍生物)、Typhimurium、、和 ,没有明显的抗菌作用。相比之下,对革兰氏阳性菌发现了更明显的杀菌作用,包括 、、、、、和 。在测试的化合物中,PSB1 和 PSB2 被鉴定为对革兰氏阳性菌最有效,PSB2 显示出最强的杀菌效果。虽然在用 PSB2 处理后注意到活性氧物种(ROS)的存在,但 PSB2 的主要作用模式似乎不涉及 ROS 的产生。这一结论得到了以下观察结果的支持:用维生素 C 进行抗氧化处理只能部分减轻细菌抑制作用,表明存在替代杀菌机制。