School of Dentistry and MRC Centre for Immune Regulation, University of Birmingham, St Chads Queensway, Birmingham, UK.
Innate Immun. 2013;19(2):152-9. doi: 10.1177/1753425912455207. Epub 2012 Aug 21.
Periodontitis, a ubiquitous chronic inflammatory disease, is associated with reduced antioxidant defences and neutrophil hyperactivity in terms of reactive oxygen species (ROS) generation. Its phenotype is thus characterized by oxidative stress. We have determined the effect of antioxidant micronutrients ascorbate and α-tocopherol on neutrophil ROS generation. Peripheral neutrophils from periodontally-healthy individuals (n = 20) were challenged with phorbol myristate acetate, IgG-opsonised Staphylococcus aureus, Fusobacterium nucleatum or PBS in the presence and absence of micronutrients (50 µM). Total and extracellular ROS were measured by luminol and isoluminol chemiluminescence respectively. Total and extracellular unstimulated, baseline ROS generation was unaffected by α-tocopherol, but inhibited by ascorbate and a combination of both micronutrients. Fcγ-receptor (Fcγ-R)-stimulated total or extracellular ROS generation was not affected by the presence of individual micronutrients. However, the combination significantly reduced extracellular FcγR-stimulated ROS release. Neither micronutrient inhibited TLR-stimulated total ROS, but the combination caused inhibition. Ascorbate and the micronutrient combination, but not α-tocopherol, inhibited extracellular ROS release by TLR-stimulated cells. Such micronutrient effects in vivo could be beneficial in reducing collateral tissue damage in chronic inflammatory diseases, such as periodontitis, while retaining immune-mediated neutrophil function.
牙周炎是一种普遍存在的慢性炎症性疾病,其特征是抗氧化防御能力降低,中性粒细胞活性增强,导致活性氧(ROS)生成增加。因此,其表型表现为氧化应激。我们已经确定了抗氧化微量营养素抗坏血酸和α-生育酚对中性粒细胞 ROS 生成的影响。从牙周健康个体(n=20)中分离外周中性粒细胞,用佛波醇肉豆蔻酸酯、IgG 调理的金黄色葡萄球菌、核梭杆菌或 PBS 刺激,并在存在和不存在微量营养素(50μM)的情况下进行刺激。通过发光氨和异鲁米诺化学发光分别测量总 ROS 和细胞外 ROS。α-生育酚不影响未刺激的总 ROS 和细胞外 ROS 的产生,但抗坏血酸和两种微量营养素的组合可抑制未刺激的总 ROS 和细胞外 ROS 的产生。Fcγ 受体(Fcγ-R)刺激的总 ROS 或细胞外 ROS 的产生不受单个微量营养素存在的影响。然而,组合显著减少了细胞外 FcγR 刺激的 ROS 释放。两种微量营养素均不抑制 TLR 刺激的总 ROS,但组合抑制 TLR 刺激的总 ROS。抗坏血酸和微量营养素组合,但不是 α-生育酚,抑制 TLR 刺激细胞的细胞外 ROS 释放。这种体内微量营养素的作用可能有助于减少慢性炎症性疾病(如牙周炎)中的附带组织损伤,同时保留免疫介导的中性粒细胞功能。