Dark and Photoinduced Cytotoxicity of Cationic Chlorin e6 Derivatives with Different Numbers of Charged Groups

IF 1 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
Y. Pylina, I. Khudyaeva, O. Startseva, D. Shadrin, O. G. Shevchenko, I. Velegzhaninov, N. V. Kukushkina, D. B. Berezin, D. V. Belykh
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引用次数: 4

Abstract

Dark and photoinduced toxicity of several novel and previously described derivatives of chlorin e 6 with tetraalkylammonium substituents differing from each other in number of cationic groups and their location in the macrocycle were studied in HeLa cells and mammalian erythrocytes. The optimal design of cationic derivatives of chlorin e 6 that provides the most efficient photodynamic effect was shown to require the localization of cationic substituents in the same part of the molecule. In combination with the hydrophobicity of the chlorin macrocycle, it increases the amphiphilic properties of the whole molecule and enhances its interaction with biomembranes. incubated 3 h thermostatic shaker corresponding volume of 0.2 % DMSO. The of pho activity inferred based on the degree of erythrocyte hemolysis after 1 and 3 h of incubation at constant irradiation of cells with the red light at wavelength of 660 nm (light source LEDs with a power of 60 mW each). The of cytotox inferred on the degree of hemolysis after 1 and 3 h of incubation of erythrocytes in the
不同带电荷基团数量的阳离子氯e6衍生物的暗和光致细胞毒性
在HeLa细胞和哺乳动物红细胞中研究了几种新的和先前描述的氯e6衍生物的暗和光诱导毒性,这些衍生物具有不同的阳离子基团数量和它们在大环中的位置。研究表明,氯e6阳离子衍生物的最佳设计要求阳离子取代基在分子的同一部分定位,以提供最有效的光动力学效应。与氯大环的疏水性结合,增加了整个分子的两亲性,增强了其与生物膜的相互作用。恒温激振器中相应体积的0.2% DMSO孵育3 h。用波长为660 nm的红光(光源led功率为60 mW)持续照射细胞1 h和3 h后,根据红细胞溶血程度推断pho活性。细胞毒素的测定依据红细胞在体外孵育1、3小时后的溶血程度
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来源期刊
Macroheterocycles
Macroheterocycles CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
2.30
自引率
21.40%
发文量
0
期刊介绍: The journal is a forum for the specialists investigating macroheterocyclic compounds. It publishes original experimental and theoretical works (full papers and short communications) and reviews on synthesis, structural characterization, physical and coordination chemistry as well as practical application of macroheterocycles.
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