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首页> 外文期刊>Biochemical and Biophysical Research Communications >beta-carboline derivatives: Novel photosensitizers that intercalate into DNA to cause direct DNA damage in photodynamic therapy
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beta-carboline derivatives: Novel photosensitizers that intercalate into DNA to cause direct DNA damage in photodynamic therapy

机译:β-咔啉衍生物:插入到DNA中的新型光敏剂,在光动力疗法中引起直接的DNA损伤

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Novel 1,3,9-trisubstituted beta-carboline derivatives were found to exhibit DNA photocleavage properties under visible light irradiation in a cell-free system, which could be reduced by antioxidant vitamin E. Their photo-cytotoxicity to human tumor cell line HeLa. was confirmed, in which apoptosis only contributed a small part to the cell death, and necrosis was the dominating outcome of HeLa cells in photodynamic therapy (PDT) using beta-carboline derivatives. Different from other clinical PDT drugs, beta-carboline derivatives were demonstrated to be able to distribute in the nucleus and intercalate into DNA, and consequently cause direct DNA damage by photochemical reaction products in PDT, which was proved by the distinct DNA tails in the comet assay and the considerable amount of DNA damaged cells quantified by flow cytometry. This mechanism could be the explanation for the delay of cell proliferation at DNA synthesis and mitosis. (c) 2006 Elsevier Inc. All rights
机译:发现新型1,3,9-三取代的β-咔啉衍生物在无细胞系统中可见光照射下具有DNA光裂解特性,可被抗氧化剂维生素E降低。它们对人肿瘤细胞系HeLa的光细胞毒性。证实了这一点,其中凋亡仅导致细胞死亡的一小部分,坏死是HeLa细胞在使用β-咔啉衍生物的光动力疗法(PDT)中的主要结果。与其他临床PDT药物不同,已证明β-咔啉衍生物能够在细胞核中分布并嵌入DNA中,并因此通过PDT中的光化学反应产物直接引起DNA损伤,这由彗星中明显的DNA尾巴证明了这一点。检测和通过流式细胞仪定量的大量DNA损伤细胞。该机制可能是DNA合成和有丝分裂时细胞增殖延迟的解释。 (c)2006 Elsevier Inc.保留所有权利

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