Department of Pre-clinic, Faculty of Medicine, Mahasarakham University, Nakhon Sawan Road, Mahasarakham 44000, Thailand.
Neurosci Lett. 2011 Aug 1;500(1):36-40. doi: 10.1016/j.neulet.2011.06.001. Epub 2011 Jun 12.
Activation of microglia could be beneficial and yet simultaneously harmful depending upon nature of pathological milieu. Regardless of disease-specific etiology, iron accumulation, particularly in activated microglia, is a notable feature associated with a series of neuropathologies, including Alzheimer's diseases. Although mounting evidence supports the role of iron in oxidative brain injury, knowledge on its regulatory role in neuroinflammation is still scarce. Here, we hypothesize that cellular iron status may be involved in determining the roles of activated microglia in neuroinflammatory processes. In this study, we examined effects of iron on expression of MMPs known to be involved in nervous system inflammation and degeneration using rat microglial cell line (HAPI). Stimulation experiments were performed using lipopolysaccharide (LPS). We demonstrated by RT-PCR that increased cellular iron levels enhanced the expression of MMP-9 in activated microglia, but had no effect on MMP-1. Studies using western blot and gelatin zymography analyses demonstrated that increased cellular iron levels in activated microglia enhanced the secretion of MMP-9 and MMP-1. Taken together, these results demonstrated regulatory roles of iron in the expression of MMPs by activated microglia at the transcription and translation levels. Using a colorimetric NBT reduction assay, we showed that increased cellular iron levels impaired zymosan phagocytic activity in activated microglia. Thus, these findings further our understanding toward the consequences of iron accumulation by activated microglia in neurodegeneration and suggest a possible link between iron metabolism in activated microglia and neuroinflammation.
小胶质细胞的激活可能有益,也可能有害,具体取决于病理环境的性质。无论疾病的特定病因如何,铁的积累,特别是在激活的小胶质细胞中,是与一系列神经病理学相关的显著特征,包括阿尔茨海默病。尽管越来越多的证据支持铁在氧化脑损伤中的作用,但关于其在神经炎症中的调节作用的知识仍然很少。在这里,我们假设细胞铁状态可能参与决定激活的小胶质细胞在神经炎症过程中的作用。在这项研究中,我们使用大鼠小胶质细胞系(HAPI)检查了铁对已知参与神经系统炎症和变性的 MMPs 表达的影响。刺激实验使用脂多糖(LPS)进行。通过 RT-PCR 我们证明,细胞内铁水平的增加增强了激活的小胶质细胞中 MMP-9 的表达,但对 MMP-1 没有影响。使用 Western blot 和明胶酶谱分析的研究表明,激活的小胶质细胞中细胞内铁水平的增加增强了 MMP-9 和 MMP-1 的分泌。总之,这些结果表明铁在转录和翻译水平上调节激活的小胶质细胞中 MMPs 的表达。通过比色 NBT 还原测定,我们表明细胞内铁水平的增加损害了激活的小胶质细胞中酵母聚糖的吞噬活性。因此,这些发现进一步了解了激活的小胶质细胞中铁积累对神经变性的后果,并提示激活的小胶质细胞中铁代谢与神经炎症之间可能存在联系。