Intracellular iron accumulation throughout the progression of sepsis influences the phenotype and function of activated macrophages in renal tissue damage.

IF 3.2 3区 医学 Q2 PHYSIOLOGY Frontiers in Physiology Pub Date : 2025-01-30 eCollection Date: 2025-01-01 DOI:10.3389/fphys.2025.1430946
Mira Hanna, Ahmed M A Akabawy, Mohamed Mansour Khalifa, Marawan Abd Elbaset, Reda Abdelnasser Imam, Hanan Seddiek
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Abstract

Sepsis, the most common cause of acute kidney injury, remains a major socioeconomic burden. A dysregulated immune response leads to progressive organ dysfunction. Although numerous inflammatory pathways were described, most are still vague and need to be studied in terms of the mechanisms to improve the therapeutic intervention. We tackled the relationship between intracellular iron overload and macrophage polarization within 6, 24, and 72 h of sepsis induction. In our study, sepsis-induced kidney injury was caused by using the cecal ligation and puncture (CLP) model. Our results indicated severe renal tissue damage with a progressive increase in serum BUN and creatinine with architectural tissue damage and positive PAS staining. There was increased expression of CD8+ CD68+ M1 macrophage markers with upregulation of iNOS and co-expression of CD163+. Alternatively, Arg1+ Fizz1+ M2 macrophage markers were downregulated with increased iNOS/Arg1 ratio. TFR1, cubilin, and DMT1, as iron transport systems, were increased compared to sham but were significant after 72 h, while ZIP8 showed no significant change. There was a correlation between iron overload and M1 macrophage polarization with CD163+ phenotype, together with fibrotic changes. The intracellular iron overload with downregulation of ferritin was strongly related to macrophage polarization that was exaggerated at 72 h. Finally, early introduced therapy to target free iron during sepsis is a proposed novel solution for protecting the renal tissue from acute injury due to macrophage activation that may end up with chronic kidney injury, if not mortality.

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脓毒症过程中细胞内铁积累影响肾组织损伤中活化巨噬细胞的表型和功能。
脓毒症是急性肾损伤的最常见原因,仍然是一个主要的社会经济负担。失调的免疫反应导致进行性器官功能障碍。尽管许多炎症途径被描述,但大多数仍是模糊的,需要在机制方面进行研究,以改善治疗干预。我们研究了脓毒症诱导后6、24和72小时内细胞内铁超载与巨噬细胞极化之间的关系。在我们的研究中,采用盲肠结扎和穿刺(CLP)模型引起脓毒症性肾损伤。我们的结果显示严重的肾组织损伤,血清BUN和肌酐进行性升高,伴有建筑组织损伤和PAS染色阳性。巨噬细胞CD8+ CD68+ M1标记物表达增加,iNOS上调,CD163+共表达。另外,巨噬细胞中Arg1+ Fizz1+ M2标记物下调,iNOS/Arg1比值升高。TFR1、cubilin和DMT1作为铁转运系统,与假手术相比,TFR1、cubilin和DMT1在72h后显著增加,而ZIP8无显著变化。铁超载和M1巨噬细胞极化与CD163+表型以及纤维化变化存在相关性。细胞内铁超载和铁蛋白下调与巨噬细胞极化密切相关,巨噬细胞极化在72小时后被夸大。最后,在败血症期间早期引入针对游离铁的治疗是一种新的解决方案,可以保护肾组织免受巨噬细胞激活引起的急性损伤,这些损伤可能导致慢性肾损伤,如果不是死亡的话。
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来源期刊
CiteScore
6.50
自引率
5.00%
发文量
2608
审稿时长
14 weeks
期刊介绍: Frontiers in Physiology is a leading journal in its field, publishing rigorously peer-reviewed research on the physiology of living systems, from the subcellular and molecular domains to the intact organism, and its interaction with the environment. Field Chief Editor George E. Billman at the Ohio State University Columbus is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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