Seizure-mediated iron accumulation and dysregulated iron metabolism after status epilepticus and in temporal lobe epilepsy

被引:47
|
作者
Zimmer, Till S. [1 ]
David, Bastian [2 ]
Broekaart, Diede W. M. [1 ]
Schidlowski, Martin [2 ,3 ]
Ruffolo, Gabriele [4 ]
Korotkov, Anatoly [1 ]
van der Wel, Nicole N. [5 ,6 ]
van Rijen, Peter C. [7 ]
Muhlebner, Angelika [1 ,8 ]
van Hecke, Wim [8 ]
Baayen, Johannes C. [9 ]
Idema, Sander [9 ]
Francois, Liesbeth [10 ]
van Eyll, Jonathan [10 ]
Dedeurwaerdere, Stefanie [10 ]
Kessels, Helmut W. [11 ]
Surges, Rainer [2 ]
Rueber, Theodor [2 ]
Gorter, Jan A. [11 ]
Mills, James D. [1 ,12 ,13 ]
van Vliet, Erwin A. [1 ,11 ]
Aronica, Eleonora [1 ,14 ]
机构
[1] Univ Amsterdam, Amsterdam UMC, Dept Neuro Pathol, Amsterdam Neurosci, Meibergdreef 9, NL-1105 AZ Amsterdam, Netherlands
[2] Univ Hosp Bonn, Dept Epileptol, Bonn, Germany
[3] German Ctr Neurodegenerat Dis DZNE, Bonn, Germany
[4] Univ Rome Sapienza, Dept Physiol & Pharmacol, Lab Affiliated Ist Pasteur Italia, Rome, Italy
[5] Univ Amsterdam, Amsterdam UMC, Dept Cell Biol & Histol, Amsterdam, Netherlands
[6] Univ Amsterdam, Amsterdam UMC, Dept Electron Microscopy Ctr Amsterdam, Amsterdam, Netherlands
[7] Univ Med Ctr Utrecht, Rudolf Magnus Inst Neurosci, Brain Ctr, Dept Neurosurg, Utrecht, Netherlands
[8] Univ Med Ctr Utrecht, Dept Pathol, Utrecht, Netherlands
[9] Vrije Univ Amsterdam, Amsterdam UMC, Amsterdam Neurosci, Dept Neurosurg, Amsterdam, Netherlands
[10] UCB Pharma, Neurosci Therapeut Area, Braine LAlleud, Belgium
[11] Univ Amsterdam, Swammerdam Inst Life Sci, Ctr Neurosci, Amsterdam, Netherlands
[12] UCL, Dept Clin & Expt Epilepsy, London, England
[13] Chalfont Ctr Epilepsy, Gerrards Cross, England
[14] Stichting Epilepsie Instellingen Nederland SEIN, Heemstede, Netherlands
基金
欧盟地平线“2020”;
关键词
Iron; Glutathione metabolism; Status epilepticus; Temporal lobe epilepsy with hippocampal sclerosis; Astrocytes; GATED CALCIUM-CHANNELS; TRANSFERRIN-BOUND IRON; OXIDATIVE STRESS; BRAIN IRON; HUMAN ASTROCYTES; CELL-DEATH; RAT MODEL; EXPRESSION; CERULOPLASMIN; FERROPORTIN;
D O I
10.1007/s00401-021-02348-6
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Neuronal dysfunction due to iron accumulation in conjunction with reactive oxygen species (ROS) could represent an important, yet underappreciated, component of the epileptogenic process. However, to date, alterations in iron metabolism in the epileptogenic brain have not been addressed in detail. Iron-related neuropathology and antioxidant metabolic processes were investigated in resected brain tissue from patients with temporal lobe epilepsy and hippocampal sclerosis (TLE-HS), post-mortem brain tissue from patients who died after status epilepticus (SE) as well as brain tissue from the electrically induced SE rat model of TLE. Magnetic susceptibility of the presumed seizure-onset zone from three patients with focal epilepsy was compared during and after seizure activity. Finally, the cellular effects of iron overload were studied in vitro using an acute mouse hippocampal slice preparation and cultured human fetal astrocytes. While iron-accumulating neurons had a pyknotic morphology, astrocytes appeared to acquire iron-sequestrating capacity as indicated by prominent ferritin expression and iron retention in the hippocampus of patients with SE or TLE. Interictal to postictal comparison revealed increased magnetic susceptibility in the seizure-onset zone of epilepsy patients. Post-SE rats had consistently higher hippocampal iron levels during the acute and chronic phase (when spontaneous recurrent seizures are evident). In vitro, in acute slices that were exposed to iron, neurons readily took up iron, which was exacerbated by induced epileptiform activity. Human astrocyte cultures challenged with iron and ROS increased their antioxidant and iron-binding capacity, but simultaneously developed a pro-inflammatory phenotype upon chronic exposure. These data suggest that seizure-mediated, chronic neuronal iron uptake might play a role in neuronal dysfunction/loss in TLE-HS. On the other hand, astrocytes sequester iron, specifically in chronic epilepsy. This function might transform astrocytes into a highly resistant, pro-inflammatory phenotype potentially contributing to pro-epileptogenic inflammatory processes.
引用
收藏
页码:729 / 759
页数:31
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