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轻度氧化应激和1,4 - 二氢吡啶衍生物抗氧化剂对人细胞体外生长的调节作用

Growth modulation of human cells in vitro by mild oxidative stress and 1,4-dihydropyridine derivative antioxidants.

作者信息

Lovaković Tomislava, Poljak-Blazi Marija, Duburs Gunars, Cipak Ana, Cindrić Marina, Vigante Brigita, Bisenieks Egils, Jaganjac Morana, Mrakovcić Lidija, Dedić Azra, Zarković Neven

机构信息

J J Strossmayer University, Department of Biology, Osijek, Croatia.

出版信息

Coll Antropol. 2011 Mar;35(1):137-41.

Abstract

Reactive oxygen species and lipid peroxidation products are not only cytotoxic but may also modulate signal transduction in cells. Accordingly, antioxidants may be considered as modifiers of cellular redox signaling. Therefore, the effects of two novel synthetic antioxidants, analogues of 1,4-dihydropyridine derivatives, cerebrocrast and Z41-74 were analysed in vitro on human osteosarcoma cell line HOS, the growth of which can be modulated by lipid peroxidation. The cells were pretreated with either cerebrocrast or Z41-74 and afterwards exposed to mild, copper induced lipid peroxidation or to 4-hydroxynonenal (HNE), the end product of lipid peroxidation. The results obtained have shown that both antioxidants exert growth modulating effects interfering with the lipid peroxidation. Namely, cells treated with antioxidants showed increased metabolic rate and cell growth, thereby attenuating the effects of lipid peroxidation. Such biomodulating effects of cerebrocrast and Z41-74 resembled growth modulating effects of HNE, suggesting that the antioxidants could eventually promote cellular adaptation to oxidative stress interacting with redox signaling and hydroxynonenal HNE-signal transduction pathways. This may be of particular relevance for better understanding the beneficial role of hydroxynonenal HNE in cell growth control. Therefore, cerebrocrast and Z41-74 could be convenient to study further oxidative homeostasis involving lipid peroxidation.

摘要

活性氧和脂质过氧化产物不仅具有细胞毒性,还可能调节细胞内的信号转导。因此,抗氧化剂可被视为细胞氧化还原信号的调节剂。为此,在体外对人骨肉瘤细胞系HOS分析了两种新型合成抗氧化剂(1,4-二氢吡啶衍生物类似物,cerebrocrast和Z41-74)的作用,该细胞系的生长可受脂质过氧化调节。用cerebrocrast或Z41-74预处理细胞,然后使其暴露于轻度的、铜诱导的脂质过氧化或脂质过氧化终产物4-羟基壬烯醛(HNE)中。所得结果表明,两种抗氧化剂均发挥生长调节作用,干扰脂质过氧化。具体而言,用抗氧化剂处理的细胞代谢率和细胞生长增加,从而减弱脂质过氧化的作用。cerebrocrast和Z41-74的这种生物调节作用类似于HNE的生长调节作用,表明抗氧化剂最终可能通过与氧化还原信号和羟基壬烯醛HNE信号转导途径相互作用促进细胞对氧化应激的适应。这对于更好地理解羟基壬烯醛HNE在细胞生长控制中的有益作用可能具有特别重要的意义。因此,cerebrocrast和Z41-74可能便于进一步研究涉及脂质过氧化的氧化稳态。

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