Department of Medicine, University of Alabama at Birmingham, Birmingham, AL, United States.
Nephrology Research and Training Center, University of Alabama at Birmingham, Birmingham, AL, United States.
Front Immunol. 2019 Feb 4;10:131. doi: 10.3389/fimmu.2019.00131. eCollection 2019.
Despite the prevalence and recognition of its detrimental impact, clinical complications of sepsis remain a major challenge. Here, we investigated the effects of myeloid ferritin heavy chain (FtH) in regulating the pathogenic sequelae of sepsis. We demonstrate that deletion of myeloid FtH leads to protection against lipopolysaccharide-induced endotoxemia and cecal ligation and puncture (CLP)-induced model of sepsis as evidenced by reduced cytokine levels, multi-organ dysfunction and mortality. We identified that such protection is predominantly mediated by the compensatory increase in circulating ferritin (ferritin light chain; FtL) in the absence of myeloid FtH. Our and studies indicate that prior exposure to ferritin light chain restrains an otherwise dysregulated response to infection. These findings are mediated by an inhibitory action of FtL on NF-κB activation, a key signaling pathway that is implicated in the pathogenesis of sepsis. We further identified that LPS mediated activation of MAPK pathways, specifically, JNK, and ERK were also reduced with FtL pre-treatment. Taken together, our findings elucidate a crucial immunomodulatory function for circulating ferritin that challenges the traditional view of this protein as a mere marker of body iron stores. Accordingly, these findings will stimulate investigations to the adaptive nature of this protein in diverse clinical settings.
尽管脓毒症的临床并发症普遍存在且已被认识到,但仍是一个主要挑战。在这里,我们研究了髓系铁蛋白重链(FtH)在调节脓毒症发病机制方面的作用。我们证明,髓系 FtH 的缺失可防止脂多糖诱导的内毒素血症和盲肠结扎穿孔(CLP)诱导的脓毒症模型,其表现为细胞因子水平降低、多器官功能障碍和死亡率降低。我们发现,这种保护主要是通过髓系 FtH 缺失时循环铁蛋白(铁蛋白轻链;FtL)的代偿性增加来介导的。我们的 和 研究表明,铁蛋白轻链的预先暴露可抑制对感染的失调反应。这些发现是通过 FtL 对 NF-κB 激活的抑制作用介导的,NF-κB 激活是脓毒症发病机制中涉及的关键信号通路。我们进一步发现,FtL 预处理可降低 LPS 介导的 MAPK 通路的激活,特别是 JNK 和 ERK。总之,我们的研究结果阐明了循环铁蛋白的重要免疫调节功能,这对该蛋白作为体内铁储存标志物的传统观点提出了挑战。因此,这些发现将刺激在不同临床环境下对该蛋白适应性的研究。