Transition metal-induced apoptosis in generation, mitochondria dysfunction lymphocytes via hydroxyl radical, and caspase-3 activation:: An in vitro model for neurodegeneration

被引:50
作者
Del Río, MJ [1 ]
Vélez-Pardo, C [1 ]
机构
[1] Univ Antioquia, Fac Med, Dept Med Interna, Programa Invest Neurociencias, Medellin, Colombia
关键词
apoptosis; caspase-3; metal; mitochondria; radicals;
D O I
10.1016/j.arcmed.2004.01.001
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Background. Redox transition metals have been implicated as crucial players in pathogenesis of neurodegenerative diseases. Intracellular signaling mechanism(s) responsible C for oxidative stress and death in single-cell model exposed to metals has not yet been fully elucidated. The objective of the study was to determine the mechanism by which metals induced apoptosis in human peripheral blood lymphocytes (PBL). Methods. PBL were exposed to 50, 100, 250, 500, and 1,000 muM (Fe2+), (Mn2+), (Cu2+), and (Zn2+)-(SO4). Apoptotic/necrotic morphology was assessed with acridine orange/ethidium bromide staining. Further evaluations comprised production of H2O2, generation of hydroxyl radical ( .OH), disruption of mitochondrial transmembrane potential (DeltaPsi(m)), caspase-3 activation, and activation of NF-kappaB and p53 transcriptional factors. Results. Morphologic analysis showed that 500 muM provoked maximal percentage of apoptosis (22-30% AO/EB) and minimal necrosis (3-7%), whereas low concentrations were innocuous but 1,000 muM induced mainly necrosis (>40% AO/EB). Metals generated both H2O2, and (.OH) by Fenton reaction. Hydroxyl scavengers protected PBL from metal-induced apoptosis. All metals induced mitochondrial depolarization (17-62% nonfluorescent cells) and activated caspase-3 concomitantly with apoptotic morphology (25-32% AO/EB) at 24 h, and neither NF-kappaB nor p53 transcription factor showed activation. Conclusions. This study provides evidence that redox-active (Fe2+), (Mn2+), (Cu2+), and (Zn2+) ion-induced apoptosis in PBL by (H2O2)/(.OH) generation, resulting in mitochondria depolarization, caspase-3 activation, and nuclear fragmentation independent of NF-kappaB and p53 transcription factors activation. Our data highlight the potential use of lymphocytes as a model to screen antioxidant strategies designed to remove H2O2/.OH associated with metal-catalyzed reactions in neurodegenerative disorders. (C) 2004 IMSS. Published by Elsevier Inc.
引用
收藏
页码:185 / 193
页数:9
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