轻度铁过量后的炎症会不同程度地改变小鼠大脑区域的铁代谢、氧化和神经炎症状态

Azhaar Ashraf, Manal Aljuhani, Chantal J. Hubens, Jérôme Jeandriens, Harold G. Parkes, K. Geraki, A. Mahmood, Amy H. Herlihy, Po-Wah So
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摘要

铁失衡和神经炎症是老年大脑的特征,在神经退行性疾病中会加剧,可能诱发氧化应激介导的神经退行性病变。在这项研究中,研究人员研究了轻度全身性铁注射对成年 C57Bl/6J 小鼠随后由脂多糖(LPS)诱发的炎症的潜在影响。认知测试结束后,解剖区域脑组织,通过全反射 X 射线荧光和同步辐射 X 射线荧光元素图谱测量铁(金属)含量,并通过 Western 印迹分析铁调节蛋白、铁突变相关蛋白、胶质细胞特异性蛋白和脂质过氧化物。免疫组化法评估了小胶质细胞形态和星形胶质细胞增多情况。与铁引物和随后的LPS诱导炎症相比,只用铁治疗能提高新物体定位任务的认知能力。无论是否进行铁治疗,LPS诱导的炎症都会降低海马血红素加氧酶-1的水平,并增加4-羟基壬烯醛的水平。相反,在大脑皮层,铁蛋白轻链和xCT(Xc-系统轻链)的升高是对LPS诱导的炎症的反应,无论是否进行了铁刺激。在海马和皮层中,铁和 LPS 的联合作用也会增加小胶质细胞分支/过程长度和星形胶质细胞免疫活性。在此,我们证明了铁引物和随后的 LPS 诱导的炎症会导致铁失衡、抗氧化功能受损、脂质过氧化增加以及神经炎症状态改变,而这些都是大脑区域依赖性的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inflammation subsequent to mild iron excess differentially alters regional brain iron metabolism, oxidation and neuroinflammation status in mice
Iron dyshomeostasis and neuroinflammation, characteristic features of the aged brain, and exacerbated in neurodegenerative disease, may induce oxidative stress-mediated neurodegeneration. In this study, the effects of potential priming with mild systemic iron injections on subsequent lipopolysaccharide (LPS)-induced inflammation in adult C57Bl/6J mice were examined. After cognitive testing, regional brain tissues were dissected for iron (metal) measurements by total reflection X-ray fluorescence and synchrotron radiation X-Ray fluorescence-based elemental mapping; and iron regulatory, ferroptosis-related, and glia-specific protein analysis, and lipid peroxidation by western blotting. Microglial morphology and astrogliosis were assessed by immunohistochemistry. Iron only treatment enhanced cognitive performance on the novel object location task compared with iron priming and subsequent LPS-induced inflammation. LPS-induced inflammation, with or without iron treatment, attenuated hippocampal heme oxygenase-1 and augmented 4-hydroxynonenal levels. Conversely, in the cortex, elevated ferritin light chain and xCT (light chain of System Xc−) were observed in response to LPS-induced inflammation, without and with iron-priming. Increased microglial branch/process lengths and astrocyte immunoreactivity were also increased by combined iron and LPS in both the hippocampus and cortex. Here, we demonstrate iron priming and subsequent LPS-induced inflammation led to iron dyshomeostasis, compromised antioxidant function, increased lipid peroxidation and altered neuroinflammatory state in a brain region-dependent manner.
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