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Study of the in vitro cytotoxic potential of natural and synthetic coumarin derivatives using human normal and neoplastic skin cell lines.

机译:使用人类正常和赘生性皮肤细胞系研究天然和合成香豆素衍生物的体外细胞毒性潜力。

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摘要

A selection of natural and synthetic coumarin compounds, including the hydroxylated and nitrated derivatives, were assessed for their cytotoxic potential using the microculture 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay for cellular viability. For the first time this study utilized both human skin malignant melanocytes (SK-MEL-31) and normal human skin fibroblastic cells (HS613.SK), allowing identification of those coumarin derivatives that are selectively toxic. Coumarin was found to exhibit comparatively low toxicity in both cell types, while 7-hydroxycoumarin (7-OHC) and coumarin had similar activity in SK-MEL-31 cells. The entire series of hydroxylated coumarins were considerably more toxic in HS613.SK than in SK-MEL-31 cells. Novel synthetic nitrated coumarins, 6-nitro-7-hydroxycoumarin (6-NO2-7-OHC) and 3,6,8-nitro-7-hydroxycoumarin (3,6,8-NO2-7-OHC), were shown to be significantly more toxic to SK-MEL-31 than HS613.SK cells. In the malignant melanocyte skin cell line (SK-MEL-31) the cytotoxic effects of these nitro-derivatives were shown to be dose and time dependent. Therefore, the cytotoxic potential of coumarins appears to be highly dependent on the nature and position of the functional group. In addition, nitration of 7-OHC produced compounds that were cytotoxic to malignant melanocytes, suggesting that these nitro-derivatives may have a chemotherapeutic role in the future.
机译:使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物(MTT)微培养法评估了天然和合成香豆素化合物(包括羟基化和硝化衍生物)的细胞毒性潜力细胞活力。该研究首次利用人皮肤恶性黑素细胞(SK-MEL-31)和正常人皮肤成纤维细胞(HS613.SK),从而鉴定出具有选择性毒性的香豆素衍生物。香豆素在两种细胞类型中均表现出较低的毒性,而7-羟基香豆素(7-OHC)和香豆素在SK-MEL-31细胞中具有相似的活性。整个系列的羟基香豆素在HS613.SK中的毒性要比在SK-MEL-31细胞中大得多。新型合成硝化香豆素,6-硝基-7-羟基香豆素(6-NO2-7-OHC)和3,6,8-硝基-7-羟基香豆素(3,6,8-NO2-7-OHC)显示对SK-MEL-31的毒性要比HS613.SK细胞高得多。在恶性黑素细胞皮肤细胞系(SK-MEL-31)中,这些硝基衍生物的细胞毒性作用显示出剂量和时间依赖性。因此,香豆素的细胞毒性潜力似乎高度依赖于官能团的性质和位置。此外,硝化7-OHC产生的化合物对恶性黑素细胞具有细胞毒性,这表明这些硝基衍生物将来可能具有化学治疗作用。

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