Marri Viviana, Richner Heinz
Comp Biochem Physiol A Mol Integr Physiol. 2015 Jan;179:192-6. doi: 10.1016/j.cbpa.2014.10.013.
The activation of immune defences counteracts pathogens, but mounting an immune response is costly and can negatively impact life-history traits. Immune activation releases highly reactive species that kill pathogens but can also cause oxidative damage to host tissues, and these negative effects may therefore constrain further investment in immune responses. To offset these toxic effects, animals rely on a complex system of antioxidants. Here, we tested if vitamin E, a dietary antioxidant, can reduce oxidative damage induced by an immune challenge and thus enhance the immune response. In a 2 × 2 experimental design, we supplemented great tit nestlings with either vitamin E or a placebo, and then injected them with either a bacterial lipopolysaccharide (LPS), or a buffer solution (PBS) as a control. LPS-treated nestlings mounted an inflammatory response and increased antioxidant capacity, without any change in ROM (reactive oxygen metabolites), an index of early oxidative damage. These results suggest that the likely transient increase in reactive species of the LPS injection was counteracted by a rise in endogenous antioxidant defences that was independent of supplementary dietary antioxidants. Indeed, vitamin E supplementation neither affected oxidative status nor enhanced the immune response, suggesting that in our experimental condition great tit nestlings were not limited in vitamin E and in antioxidants in general. Overall, our results show that birds can mount an effective antioxidant response to face an immune challenge, and can therefore avoid stress caused by a transient increase in reactive species generated by immune activation.
免疫防御的激活可对抗病原体,但启动免疫反应代价高昂,且会对生活史特征产生负面影响。免疫激活会释放高活性物质,这些物质能杀死病原体,但也会对宿主组织造成氧化损伤,因此这些负面影响可能会限制对免疫反应的进一步投入。为抵消这些毒性作用,动物依赖于一个复杂的抗氧化系统。在此,我们测试了膳食抗氧化剂维生素E是否能减少免疫挑战诱导的氧化损伤,从而增强免疫反应。在一个2×2实验设计中,我们给大山雀雏鸟补充维生素E或安慰剂,然后给它们注射细菌脂多糖(LPS)或缓冲溶液(PBS)作为对照。经LPS处理的雏鸟产生了炎症反应并提高了抗氧化能力,而早期氧化损伤指标活性氧代谢物(ROM)没有任何变化。这些结果表明,LPS注射后活性物质可能的短暂增加被内源性抗氧化防御的增强所抵消,而这与补充膳食抗氧化剂无关。事实上,补充维生素E既不影响氧化状态,也不增强免疫反应,这表明在我们的实验条件下,大山雀雏鸟一般不存在维生素E和抗氧化剂缺乏的情况。总体而言,我们的结果表明,鸟类能够产生有效的抗氧化反应来应对免疫挑战,因此能够避免免疫激活产生的活性物质短暂增加所带来的压力。