Conservative iron chelation for neurodegenerative diseases such as Parkinson's disease and amyotrophic lateral sclerosis

被引:88
作者
Devos, David [1 ,2 ,7 ]
Cabantchik, Z. Ioav [3 ]
Moreau, Caroline [2 ]
Danel, Veronique [2 ]
Mahoney-Sanchez, Laura [1 ]
Bouchaoui, Hind [1 ]
Gouel, Flore [1 ]
Rolland, Anne-Sophie [1 ]
Duce, James A. [4 ,5 ]
Devedjian, Jean-Christophe [1 ,6 ]
Cassereau, Julien
Bost, Marie
Abrial, Charlotte
Muller, Jeanne
Olivier, Audrey
Le Masson, Gwendal
Mathis, Stephane
Djigo, Dieynaba
Bonabaud, Sarah
Deloire, Mathilde
Genestet, Steeve
Menanteau, Elsa
Bourgeois, Pauline
Lefilliatre, Mathilde
Viader, Fausto
Abrou, Mouloud
Chavanne, Damien
Bari, Rachida
Guy, Nathalie
Arondo, Sophia Sickout
Rouvet, Sandrine
Beauvais, Katell
Aidan, Mathilde
Madec, Olivier
Danel-Brunaud, Veronique
Tard, Celine
Pleuvret, Marie
Santraine, Valerie
Moutarde, Julie
Couratier, Philippe
Lautrette, Geraldine
Machat, Selma
Penoty, Marie
Villeneuve, Olivier
Labetoulle, Clemence
Catteau, Julie
Bernard, Emilien
Svahn, Juliette
Neuillet, Camille
Attarian, Shahram
机构
[1] Univ Lille, FCRIN Network LICEND COEN Ctr Lille, Serv Pharmacol Clin Serv Neurol NS Pk,CHU Lille, INSERM,UMRS 1171, Lille, France
[2] Univ Lille, FCRIN Network LICEND COEN Ctr Lille, Serv Neurol NS Pk,CHU Lille, INSERM,UMRS 1171, Lille, France
[3] Hebrew Univ Jerusalem, Alexander Silberman Inst Life Sci, Della Pergola Chair, IL-91904 Jerusalem, Israel
[4] Univ Cambridge, ALBORADA Drug Discovery Inst, Cambridge Biomed Campus,Hills Rd, Cambridge, England
[5] Univ Melbourne, Florey Inst Neurosci & Mental Hlth, Melbourne Dementia Res Ctr, Parkville, Vic, Australia
[6] Univ Littoral Cote Opale 1, Pl Yser,BP 72033, F-59375 Dunkerque, France
[7] Univ Lille, Dept Pharmacol Med, CHU Lille, INSERM 1171, F-59037 Lille, France
基金
欧盟地平线“2020”; 英国医学研究理事会;
关键词
Parkinson's disease; Amyotrophic lateral sclerosis; Conservative iron chelation; Ferroptosis; Iron metabolism; TRANSGENIC RATS BEARING; G93A-SOD1 MOUSE MODEL; TUMOR-NECROSIS-FACTOR; SUBSTANTIA-NIGRA; BRAIN IRON; MOTOR CORTEX; CELL-DEATH; SKELETAL-MUSCLE; UP-REGULATION; SPINAL-CORDS;
D O I
10.1007/s00702-019-02138-1
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Focal iron accumulation associated with brain iron dyshomeostasis is a pathological hallmark of various neurodegenerative diseases (NDD). The application of iron-sensitive sequences in magnetic resonance imaging has provided a useful tool to identify the underlying NDD pathology. In the three major NDD, degeneration occurs in central nervous system (CNS) regions associated with memory (Alzheimer's disease, AD), automaticity (Parkinson's disease, PD) and motor function (amyotrophic lateral sclerosis, ALS), all of which require a high oxygen demand for harnessing neuronal energy. In PD, a progressive degeneration of the substantia nigra pars compacta (SNc) is associated with the appearance of siderotic foci, largely caused by increased labile iron levels resulting from an imbalance between cell iron import, storage and export. At a molecular level, alpha-synuclein regulates dopamine and iron transport with PD-associated mutations in this protein causing functional disruption to these processes. Equally, in ALS, an early iron accumulation is present in neurons of the cortico-spinal motor pathway before neuropathology and secondary iron accumulation in microglia. High serum ferritin is an indicator of poor prognosis in ALS and the application of iron-sensitive sequences in magnetic resonance imaging has become a useful tool in identifying pathology. The molecular pathways that cascade down from such dyshomeostasis still remain to be fully elucidated but strong inroads have been made in recent years. Far from being a simple cause or consequence, it has recently been discovered that these alterations can trigger susceptibility to an iron-dependent cell-death pathway with unique lipoperoxidation signatures called ferroptosis. In turn, this has now provided insight into some key modulators of this cell-death pathway that could be therapeutic targets for the NDD. Interestingly, iron accumulation and ferroptosis are highly sensitive to iron chelation. However, whilst chelators that strongly scavenge intracellular iron protect against oxidative neuronal damage in mammalian models and are proven to be effective in treating systemic siderosis, these compounds are not clinically suitable due to the high risk of developing iatrogenic iron depletion and ensuing anaemia. Instead, a moderate iron chelation modality that conserves systemic iron offers a novel therapeutic strategy for neuroprotection. As demonstrated with the prototype chelator deferiprone, iron can be scavenged from labile iron complexes in the brain and transferred (conservatively) either to higher affinity acceptors in cells or extracellular transferrin. Promising preclinical and clinical proof of concept trials has led to several current large randomized clinical trials that aim to demonstrate the efficacy and safety of conservative iron chelation for NDD, notably in a long-term treatment regimen.
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页码:189 / 203
页数:15
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