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Phenothiazinium photosensitisers, Part VI: Photobactericidal asymmetric derivatives

机译:吩噻嗪鎓光敏剂,第六部分:光杀菌不对称衍生物

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The synthesis of derivatives of Methylene Blue (C.I. Basic Blue 9) has generally employed symmetrical and non-symmetrical dialkylamine functionality in the auxochromic C-3 and C-7 positions of the chromophore. In the present work asymmetric derivatives were synthesised having dialkylamino groups at position 3 and either arylamino or aralkylamino groups at position 7, of the phenothiazinium ring. Physicochemical testing of the derivatives showed that the λ_(max) and ε_(max) values of the asymmetrical derivatives having arylamine substitution were very close to those of the symmetrical bis(dialkylamino) analogues but that the singlet oxygen yields were minimal, in line with previously published work concerning symmetrical bis(arylamino) derivatives. Synthesised asymmetric analogues having benzy-lamino or cyclohexylamino, rather than arylamino-substitution exhibited restored singlet oxygen generation. As expected, in screening tests against Gram-positive and Gram-negative bacteria, the aralkylamino and cyclohexylamino derivatives were highly active on illumination, presumably via singlet oxygen damage. However, the asymmetric arylamino derivatives were similarly photobactericidal, possibly due to molecular rigidification of these derivatives in the cellular milieu. Considerably increased activity was observed in each class relative to that of the standard methylene blue. In addition, the more lipophilic derivatives exhibited greater activity against Escherichia coli. This may be due to increased interaction with the lipid-rich outer membrane of this Gram-negative organism.
机译:亚甲基蓝(C.I.碱性蓝9)的衍生物的合成通常在生色团的无色C-3和C-7位使用对称和不对称的二烷基胺官能团。在本工作中,合成了非对称衍生物,其在吩噻嗪鎓环的3位具有二烷基氨基,在7位具有芳氨基或芳烷基氨基。衍生物的理化测试表明,具有芳胺取代基的不对称衍生物的λ_(max)和ε_(max)值与对称双(二烷基氨基)类似物的λ_(max)和ε_(max)值非常接近,但单重态氧的收率最低,与以前发表的有关对称双(芳基氨基)衍生物的著作。具有苄基-氨基或环己基氨基而不是芳基氨基取代的合成不对称类似物表现出恢复的单线态氧生成。如预期的那样,在针对革兰氏阳性和革兰氏阴性细菌的筛选测试中,推测可能是由于单线态氧损伤,芳烷基氨基和环己基氨基衍生物具有很高的照明活性。然而,不对称的芳基氨基衍生物类似地具有光杀菌作用,这可能是由于这些衍生物在细胞环境中的分子刚性所致。相对于标准亚甲基蓝,在每个类别中均观察到了显着增加的活性。另外,亲脂性更高的衍生物表现出对大肠杆菌的更大活性。这可能是由于与该革兰氏阴性生物的富含脂质的外膜相互作用增加。

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