首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Phenothiazinium photosensitisers VII: Novel substituted asymmetric N-benzylphenothiaziniums as photoantimicrobial agents
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Phenothiazinium photosensitisers VII: Novel substituted asymmetric N-benzylphenothiaziniums as photoantimicrobial agents

机译:吩噻嗪鎓光敏剂VII:新型取代的不对称N-苄基吩噻嗪鎓类作为光抗菌剂

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摘要

The synthesis of asymmetrical analogues of methylene blue, in which one of the dimethylamino groups is replaced by a diethylamino or di-n-propylamino group, and the other by benzylamino or 4-substituted benzylamino, is reported, the substituents being alkyl, alkoxyl or halogen. As expected, because of their longer alkyl chains these diethylamino- and di-n-propylamino derivatives proved to be considerably more lipophilic than the parent compound methylene blue, while maintaining suitable maximum absorption wavelengths and singlet oxygen efficiencies for photoantimicrobial use. Also as expected, in screening tests against Gram-positive and Gram-negative bacteria, the substituted benzylamino derivatives were highly active on illumination, presumably via singlet oxygen damage, and exhibited considerably increased activity against both classes relative to that of the standard, methylene blue. In addition, the more lipophilic derivatives exhibited greater activity against Escherichia coll This may be due to increased interaction with the lipid-rich outer membrane of this Gram-negative bacterium: DNA binding of the derivatives was also increased, relative to methylene blue, showing large bath-ochromic shifts (>10 nm) on binding typical of strong intercalators.
机译:据报道,合成了亚甲基蓝的不对称类似物,其中一个二甲基氨基被一个二乙基氨基或二正丙基氨基取代,另一个被苄基氨基或4-取代的苄基氨基取代,取代基是烷基,烷氧基或卤素。如所期望的,由于它们的更长的烷基链,这些二乙基氨基和二正丙基氨基衍生物被证明比母体化合物亚甲基蓝具有更高的亲脂性,同时保持了适合光抗菌剂使用的最大吸收波长和单线态氧效率。同样如预期的那样,在针对革兰氏阳性和革兰氏阴性细菌的筛选测试中,取代的苄基氨基衍生物在光照下具有很高的活性,可能是由于单线态氧损伤,并且相对于标准品亚甲基蓝而言,对两种类别的活性均大大提高。此外,亲脂性较高的衍生物对埃希氏菌具有更大的活性。这可能是由于与革兰氏阴性细菌与富含脂质的外膜的相互作用增强:相对于亚甲蓝,衍生物的DNA结合也增加了,在强嵌入剂的典型结合作用下,镀液发生了镀铬色移(> 10 nm)。

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