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Anti-inflammatory effects of Melaleuca alternifolia essential oil on human polymorphonuclear neutrophils and monocytes.

机译:白千层精油对人多形核中性粒细胞和单核细胞的抗炎作用。

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OBJECTIVE AND DESIGN: The fungicidal and bactericidal actions of the essential oil (EO) of Melaleuca alternifolia seem well established, but their anti-inflammatory and anti-oxidative effects remain unclear. In this study, we investigated in vitro the possible role of whole M. alternifolia EO as a modulator of the oxidative response, i.e. reactive oxygen species (ROS) production, of leukocytes (monocytes and polymorphonuclear neutrophils (PMNs)) in humans. METHODS: Whole blood leukocytes from healthy human volunteers (n = 7), isolated from erythrocytes by haemolytic shock, were incubated for 30 min with M. alternifolia EO (0-0.1%) to determine their ROS production by flow cytometry with or without stimulation of cells. We compared the effects of 3 different stimulating agents acting differently on transductional pathways to stimulate the ROS production: a phorbol ester (PMA), formyl-methionyl-leucyl-phenylalanine (fMLP) and opsonised zymosan (OZ). RESULTS: As attested by the Kruskall-Wallis test, M. alternifolia EO at 0.1% directly stimulated ROS production by PMNs (x 8.7 vs. 0% EO, p < 0.05) and increased the intracellular ROS produced by monocytes. Whichever the stimulating agent used (PMA, fMLP or OZ), M. alternifolia EO decreased the intracellular ROS production at the dilution of 0.1% by PMNs and monocytes, more so with PMNs. CONCLUSION: M. alternifolia EO may be both a direct active mediator of the bactericidal action of the circulating leukocytes and may be efficient in protecting the organism from an excess of ROS, through an anti-oxidant and radical scavenging activity.
机译:目的和设计:互叶白千层香精油(EO)的杀菌和杀菌作用似乎已经确立,但是它们的抗炎和抗氧化作用仍不清楚。在这项研究中,我们在体外研究了整个互花孢霉EO作为人类白细胞(单核细胞和多形核中性粒细胞(PMN))氧化反应(即活性氧(ROS)产生)调节剂的可能作用。方法:将来自健康人类志愿者(n = 7)的全血白细胞(通过溶血性休克从红细胞中分离)与互生孢菌EO(0-0.1%)孵育30分钟,以通过流式细胞术测定刺激或不刺激下的ROS产生细胞。我们比较了三种不同的刺激剂在不同的途径上刺激ROS产生的作用:佛波酯(PMA),甲酰基-甲硫酰基-亮氨酰-苯丙氨酸(fMLP)和调理的酵母聚糖(OZ)。结果:如Kruskall-Wallis检验所证明,0.1%的互花藤分枝杆菌EO直接刺激PMN产生ROS(x 8.7对0%EO,p <0.05),并增加单核细胞产生的细胞内ROS。无论使用哪种刺激剂(PMA,fMLP或OZ),互花米草分枝杆菌EO都能在PMN和单核细胞稀释0.1%的情况下降低细胞内ROS的产生,PMN更是如此。结论:互花米草EO可能既是循环白细胞杀菌作用的直接活性介质,又可以通过抗氧化剂和自由基清除活性有效保护有机体免受过量ROS的侵害。

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