Effect of bioactive aldehydes on cell proliferation and c-myc expression in HL-60 human leukemic cells.

Cancer detection and prevention Pub Date : 2000-01-01
G Barrera, S Pizzimenti, A Serra, V M Fazio, R A Canuto, M U Dianzani
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Abstract

Lipid peroxidation produces several toxic carbonyls, including biologically active aldehydes. In previous studies, we demonstrated that 4-hydroxynonenal (HNE), one of the major products of lipoperoxidation, inhibited growth and c-myc expression in K562 and HL-60 human leukemic cells. In this study, we compared the HNE effects with those of 4-hydroxyoctenal (HOE), 4-hydroxyundecenal (HUE; different lengths of the lipophilic tail), and the analogous aldehydes 2-trans-nonanal (lacking the OH group) and nonenal (lacking the OH group and the trans CC double bond), on HL-60 cell proliferation and c-myc expression. HUE and HOE inhibited growth and c-myc expression in a dose-dependent fashion, with an effectiveness comparable with that of HNE, whereas 2-nonenal and nonanal did not affect these parameters. Our results showed that different aldehydes produced from lipid peroxidation may contribute to growth inhibition by c-myc downregulation and that the molecular features involved seem to be the hydroxy group and the trans CC double bond.

生物活性醛对HL-60人白血病细胞增殖及c-myc表达的影响。
脂质过氧化产生几种有毒的羰基,包括生物活性醛。在之前的研究中,我们证实了4-羟基壬烯醛(HNE)是脂质过氧化的主要产物之一,可以抑制K562和HL-60人白血病细胞的生长和c-myc的表达。本研究比较了4-羟基辛烯醛(HOE)、4-羟基癸烯醛(HUE;2-反式壬醛(缺乏OH基团)和壬醛(缺乏OH基团和反式CC双键)对HL-60细胞增殖和c-myc表达的影响。HUE和HOE以剂量依赖性的方式抑制生长和c-myc表达,其有效性与HNE相当,而2-壬烯醛和壬烯醛对这些参数没有影响。我们的研究结果表明,脂质过氧化产生的不同醛可能通过下调c-myc来抑制生长,其分子特征似乎是羟基和反式CC双键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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