The effects of berberine on reactive oxygen species production in human neutrophils and in cell-free assays.

Q3 Environmental Science Interdisciplinary Toxicology Pub Date : 2017-10-01 DOI:10.1515/intox-2017-0010
Rami B Kassab, Ondrej Vasicek, Milan Ciz, Antonin Lojek, Tomas Perecko
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引用次数: 7

Abstract

The health benefits of berberine have been recognized for years. Even so, its effects on human neutrophils, the first line of immune defense, have not been reported. The purpose of this study was to investigate the effects of berberine on the human neutrophil oxidative burst. Reactive oxygen species production was analyzed by luminol-enhanced chemiluminescence. The analysis was performed in spontaneous and stimulated (phorbol myristate acetate (PMA) or opsonized zymosan particles (OZP)) whole blood and isolated neutrophils in the presence or absence of berberine. The effects of berberine on oxidant production in cell-free assays were evaluated using luminescence (H2O2-peroxidase-luminol) and fluorescence (Oxygen Radical Absorbance Capacity - ORAC) techniques. Berberine decreased the production of reactive oxygen species in human whole blood and isolated neutrophils stimulated with either PMA or OZP with a different efficiency (EC50 was 69 μM and 197 μM for PMA and OZP, respectively). The effect was more pronounced in isolated neutrophils. Cell-free assays showed the antioxidant activity of berberine against peroxyl radicals and hydrogen peroxide. Based on our results, we suggest that the effects of berberine on reactive oxygen species production in human neutrophils are due to its antioxidant activity.

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小檗碱对人中性粒细胞和无细胞测定中活性氧产生的影响。
小檗碱对健康的益处已被公认多年。即便如此,它对人体中性粒细胞(免疫防御的第一道防线)的影响还没有报道。本研究旨在探讨小檗碱对人体中性粒细胞氧化破裂的影响。用鲁米诺增强化学发光法分析了活性氧的生成。在存在或不存在小檗碱的情况下,在自发的和刺激的(肉豆酸酯磷酯(PMA)或opsonized zymosan颗粒(OZP))全血和分离的中性粒细胞中进行分析。利用发光(h2o2 -过氧化物酶-鲁米诺)和荧光(氧自由基吸收能力- ORAC)技术评估了小檗碱对无细胞测定中氧化剂产生的影响。小檗碱对PMA和OZP刺激的人全血和离体中性粒细胞的活性氧产生有不同程度的抑制作用(PMA和OZP的EC50分别为69 μM和197 μM)。这种效果在分离的中性粒细胞中更为明显。无细胞实验显示小檗碱对过氧自由基和过氧化氢具有抗氧化活性。基于我们的研究结果,我们认为小檗碱对人体中性粒细胞活性氧产生的影响是由于其抗氧化活性。
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Interdisciplinary Toxicology
Interdisciplinary Toxicology Pharmacology, Toxicology and Pharmaceutics-Pharmacology
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