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Studies of photophysical characteristics and in vitro photocytotoxicity of photosensitizer dimegine

机译:光敏剂二甲双胍的光物理特性和体外光毒性研究

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In the represented work, a study of a low-toxic photosensitizer of dimegine (disodium salt of 2,4-di (alphamethoxyethyl) -deuteroporphyrin-IX ”) was carried out. The quantum yields of singlet oxygen generation and fluorescence as the main photophysical characteristics of the photosensitizer were studied. To ensure the stability of dimegine upon irradiation, its photobleaching coefficient was investigated. The photocytotoxicity was studied on four cell lines: U87 – human primary glioblastoma cell line, RG2 – rat glioma cell lines, HT1372 – human bladder cancer cell line, AY27 – rat bladder carcinoma cell line. The same cell lines were used in cells distribution studies. Results of this research have shown high effectiveness of photodynamic therapy with dimegine under irradiation by light with a wavelength of 530 nm and 625 nm. Images, received after photosensitizer distribution studies, demonstrated dimegine’s primary location in cell's organelles, thereby allowing to make the assumption about domination of apoptosis over necrosis as mechanism of cell death.
机译:在代表性的工作中,对低毒的二甲胺光敏剂(2,4-二(α甲氧基乙基)-氘代卟啉-IX的二钠盐)进行了研究。研究了单线态氧产生和荧光的量子产率,作为光敏剂的主要光物理特性。为了确保二甲胺的照射稳定性,研究了其光漂白系数。研究了四种细胞系的光细胞毒性:U87 –人原发性胶质母细胞瘤细胞系,RG2 –大鼠神经胶质瘤细胞系,HT1372 –人膀胱癌细胞系,AY27 –大鼠膀胱癌细胞系。在细胞分布研究中使用了相同的细胞系。这项研究的结果表明,在波长为530 nm和625 nm的光照射下,用二甲胺进行光动力疗法的有效性很高。经过光敏剂分布研究后获得的图像表明,二甲双胍在细胞器的主要位置,从而可以假设坏死是细胞凋亡的主要机制,是细胞死亡的机制。

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