Uliana Marciana P, Pires Layla, Pratavieira Sebastião, Brocksom Timothy J, de Oliveira Kleber T, Bagnato Vanderlei S, Kurachi Cristina
Instituto de Física de São Carlos - Universidade de São Paulo, Av: Trabalhador São Carlense, 400, São Carlos, São Paulo 13566-590, Brazil.
Photochem Photobiol Sci. 2014 Aug;13(8):1137-45. doi: 10.1039/c3pp50376c.
Chlorin-e6 (chl-e6) and a hydrogenated derivative (chl-e6H) were semi-synthesized, and their photophysical properties and photodynamic activity against Escherichia coli, Staphylococcus aureus and Candida albicans evaluated. Methyl pheophorbide-a (Mepheo-a) was obtained from S. maxima using methanolic extraction with acid catalysis (CH3OH–H2SO4). Chlorin-e6 was prepared from Mepheo-a by basic hydrolysis with H2O–acetone and NaOH. Hydrogenated Chlorin-e6 was synthesized by a similar procedure starting from the hydrogenated methyl pheophorbide-a (Mepheo-aH). Photophysical studies were performed in order to determine the singlet oxygen quantum yield of chl-e6H which is higher than that of chl-e6. The microorganism inactivation of chl-e6 and chl-e6H was investigated at two concentrations and three fluence levels. Both chl-e6 and chl-e6H showed microorganism inactivation against Gram-positive bacteria and a fungus.
二氢卟吩 - e6(chl - e6)及其氢化衍生物(chl - e6H)被半合成出来,并对它们的光物理性质以及针对大肠杆菌、金黄色葡萄球菌和白色念珠菌的光动力活性进行了评估。脱镁叶绿酸 - a甲酯(Mepheo - a)是通过在酸催化下用甲醇(CH3OH–H2SO4)从极大螺旋藻中提取得到的。二氢卟吩 - e6是由Mepheo - a通过在水 - 丙酮和氢氧化钠存在下进行碱性水解制备而成的。氢化二氢卟吩 - e6是从氢化脱镁叶绿酸 - a甲酯(Mepheo - aH)开始通过类似的步骤合成的。进行了光物理研究以确定chl - e6H的单线态氧量子产率,其高于chl - e6。在两种浓度和三个光通量水平下研究了chl - e6和chl - e6H对微生物的灭活作用。chl - e6和chl - e6H都显示出对革兰氏阳性菌和一种真菌的微生物灭活作用。