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Vitamin D alleviates lead induced renal and testicular injuries by immunomodulatory and antioxidant mechanisms in rats.维生素 D 通过免疫调节和抗氧化机制缓解大鼠铅诱导的肾和睾丸损伤。
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2
Change in iron metabolism in rats after renal ischemia/reperfusion injury.大鼠肾缺血/再灌注损伤后铁代谢的变化
PLoS One. 2017 Apr 20;12(4):e0175945. doi: 10.1371/journal.pone.0175945. eCollection 2017.
3
Iron accumulation, glutathione depletion, and lipid peroxidation must occur simultaneously during ferroptosis and are mutually amplifying events.铁积累、谷胱甘肽耗竭和脂质过氧化在铁死亡过程中必须同时发生,且是相互放大的事件。
Med Hypotheses. 2017 Apr;101:69-74. doi: 10.1016/j.mehy.2017.02.017. Epub 2017 Feb 28.
4
Hemolytic anemia repressed hepcidin level without hepatocyte iron overload: lesson from Günther disease model.溶血性贫血在无肝细胞铁过载的情况下抑制了铁调素水平:来自温特病模型的经验教训。
Haematologica. 2017 Feb;102(2):260-270. doi: 10.3324/haematol.2016.151621. Epub 2016 Nov 10.
5
Unexplained isolated hyperferritinemia without iron overload.不明原因的孤立性血清铁蛋白血症,不伴有铁过载。
Am J Hematol. 2017 Apr;92(4):338-343. doi: 10.1002/ajh.24641. Epub 2017 Feb 7.
6
Hephaestin and ceruloplasmin facilitate iron metabolism in the mouse kidney.亚铁蛋白和铜蓝蛋白促进小鼠肾脏中的铁代谢。
Sci Rep. 2016 Dec 19;6:39470. doi: 10.1038/srep39470.
7
Ferritin and iron studies in anaemia and chronic disease.贫血和慢性病中的铁蛋白与铁研究
Ann Clin Biochem. 2017 Jan;54(1):43-48. doi: 10.1177/0004563216675185. Epub 2016 Nov 7.
8
Ferroptosis is an autophagic cell death process.铁死亡是一种自噬性细胞死亡过程。
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9
Role of phenolics from Spondias pinnata bark in amelioration of iron overload induced hepatic damage in Swiss albino mice.腰果树皮中酚类物质在改善瑞士白化小鼠铁过载诱导的肝损伤中的作用。
BMC Pharmacol Toxicol. 2016 Jul 26;17(1):34. doi: 10.1186/s40360-016-0077-6.
10
Autophagy promotes ferroptosis by degradation of ferritin.自噬通过降解铁蛋白促进铁死亡。
Autophagy. 2016 Aug 2;12(8):1425-8. doi: 10.1080/15548627.2016.1187366. Epub 2016 May 31.

急、慢性铁过载对正常大鼠肾脏细胞铁稳态分子表达的影响不同。

Acute and Chronic Iron Overloading Differentially Modulates the Expression of Cellular Iron-homeostatic Molecules in Normal Rat Kidney.

机构信息

Laboratory Medicine Department, Faculty of Applied Medical Sciences.

Umm Al-Qura University, Makkah, Saudi Arabia.

出版信息

J Histochem Cytochem. 2018 Nov;66(11):825-839. doi: 10.1369/0022155418782696. Epub 2018 Jun 6.

DOI:10.1369/0022155418782696
PMID:29873589
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6213567/
Abstract

Little is known about the renal responses to acute iron overloading. This study measured the renal tubular expression of transferrin receptor-1 (TfR1), cubilin/megalin receptors, hepcidin, ferroportin, and ferritin chains following subacute intoxication of 40 male Wistar rats with a single oral dose of ferrous iron (300 mg/kg). The animals were randomly subdivided into 4 equal subgroups at the time of necropsy (1, 2, 4, and 8 hr). The results were compared with the controls ( n=15) and with the chronic group ( n=15), which received iron for 4 weeks (75 mg/kg/day; 5 days/week). Although both toxicity models inhibited TfR1, they upregulated the cubilin/megalin receptors and hepcidin, and triggered iron deposition in tubular cells. The ferritin heavy-chain and ferroportin were downregulated in the 2-hr and 4-hr acute subgroups, whereas chronic toxicity promoted their expression, compared with controls. Moreover, the 4-hr and 8-hr subgroups had higher intracellular Fe and marked cell apoptosis compared with the chronic group. In conclusion, the kidney appears to sustain iron reabsorption in both intoxication models. However, the cellular iron storage and exporter proteins were differentially expressed in both models, and their inhibition post-acute toxicity might contribute toward the intracellular accumulation of Fe, oxidative stress, and ferroptosis.

摘要

目前对于急性铁过载对肾脏的影响知之甚少。本研究通过对 40 只雄性 Wistar 大鼠进行单次口服亚铁(300mg/kg)亚急性中毒实验,检测了转铁蛋白受体 1(TfR1)、内转铁蛋白受体/巨球蛋白受体、铁调素、亚铁转运蛋白和铁蛋白链在肾小管中的表达。在解剖时,动物被随机分为 4 个相等的亚组(1、2、4 和 8 小时)。将结果与对照组(n=15)和慢性组(n=15)进行比较,慢性组连续 4 周(75mg/kg/天;每周 5 天)接受铁处理。尽管这两种毒性模型都抑制了 TfR1,但它们都上调了内转铁蛋白受体/巨球蛋白受体和铁调素,并触发了管状细胞中的铁沉积。与对照组相比,2 小时和 4 小时急性亚组的铁蛋白重链和亚铁转运蛋白下调,而慢性毒性则促进了它们的表达。此外,与慢性组相比,4 小时和 8 小时亚组的细胞内铁含量更高,细胞凋亡更明显。总之,肾脏在两种中毒模型中似乎都能维持铁的重吸收。然而,在这两种模型中,细胞内铁储存和输出蛋白的表达不同,其在急性毒性后的抑制可能导致细胞内铁的积累、氧化应激和铁死亡。