Kolaviron and selenium reduce hydrogen peroxide-induced alterations of the inflammatory response

IF 3.5 Q3 Biochemistry, Genetics and Molecular Biology Journal of Genetic Engineering and Biotechnology Pub Date : 2018-12-01 DOI:10.1016/j.jgeb.2018.02.004
Tebekeme Okoko
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引用次数: 7

Abstract

The abilities of kolaviron and selenium (either separately or in combination) to prevent hydrogen peroxide-induced alterations in cell viability and activation were investigated. The cell line U937 was incubated with the antioxidants (i.e. kolaviron or selenium) for 24 h before exposure to hydrogen peroxide and cell viability was assessed via trypan blue dye exclusion assay. The U937 cells were also transformed to the macrophage form, incubated with the antioxidants before exposure to hydrogen peroxide. Subsequently, production of nitric oxide and pro-inflammatory cytokines were assessed as indices of macrophage activation. The myoblast cell line H9c2 was also incubated with Se and kolaviron for 24 h before exposure to hydrogen peroxide. Cell viability and generation of reactive oxygen species (ROS) were assessed via MTT and DCHF assays. The results revealed that hydrogen peroxide significantly reduced (p < 0.05) the viability of U937 cells which was ameliorated by kolaviron and selenium. Kolaviron and selenium also reduced hydrogen peroxide-induced secretion of nitric oxide, TNF-α, IL-1 and IL-6 by transformed U937 cells. Hydrogen peroxide also significantly reduced (p < 0.05) the viability of H9c2 cells which was significantly restored by kolaviron. Though selenium had no effect on the proliferation of H9c2 cells, co-treatment with kolaviron significantly reduced hydrogen peroxide-induced alterations. Both kolaviron and selenium also reduced hydrogen peroxide-mediated ROS production by H9c2 cells. In all cases, the combined action of kolaviron and selenium offered greater amelioration of the hydrogen peroxide-induced alterations than their separate effects (p < 0.05) but may not be synergistic or additive.

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可拉维铁和硒可减少过氧化氢引起的炎症反应的改变
研究了可拉维铁和硒(单独或联合使用)对过氧化氢诱导的细胞活力和活化的影响。将细胞系U937与抗氧化剂(即kolaviron或硒)一起孵育24 h,然后暴露于过氧化氢中,通过台苯蓝染料排除法评估细胞活力。U937细胞也转化为巨噬细胞形式,在暴露于过氧化氢之前与抗氧化剂孵育。随后,将一氧化氮和促炎细胞因子的产生作为巨噬细胞活化的指标进行评估。将成肌细胞系H9c2与硒和克拉维铁孵育24 h,然后再暴露于过氧化氢。通过MTT和DCHF测定细胞活力和活性氧(ROS)的产生。结果表明,过氧化氢显著降低(p < 0.05)U937细胞的活力,而克拉维铁和硒对U937细胞的活力有改善作用。可拉维铁和硒还能降低过氧化氢诱导的U937细胞一氧化氮、TNF-α、IL-1和IL-6的分泌。过氧化氢也显著降低了H9c2细胞的活力(p < 0.05),而克拉维铁则显著恢复了H9c2细胞的活力。虽然硒对H9c2细胞的增殖没有影响,但与科拉维铁共处理可显著减少过氧化氢诱导的改变。可拉维铁和硒也能减少H9c2细胞过氧化氢介导的ROS产生。在所有情况下,kolaviron和硒的联合作用比它们单独的作用(p < 0.05)提供了更大的改善过氧化氢诱导的改变,但可能不是协同或相加的。
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来源期刊
Journal of Genetic Engineering and Biotechnology
Journal of Genetic Engineering and Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
5.70
自引率
5.70%
发文量
159
审稿时长
16 weeks
期刊介绍: Journal of genetic engineering and biotechnology is devoted to rapid publication of full-length research papers that leads to significant contribution in advancing knowledge in genetic engineering and biotechnology and provide novel perspectives in this research area. JGEB includes all major themes related to genetic engineering and recombinant DNA. The area of interest of JGEB includes but not restricted to: •Plant genetics •Animal genetics •Bacterial enzymes •Agricultural Biotechnology, •Biochemistry, •Biophysics, •Bioinformatics, •Environmental Biotechnology, •Industrial Biotechnology, •Microbial biotechnology, •Medical Biotechnology, •Bioenergy, Biosafety, •Biosecurity, •Bioethics, •GMOS, •Genomic, •Proteomic JGEB accepts
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