The Effects of Antidepressants on Mitochondrial Function in a Model Cell System and Isolated Mitochondria

被引:60
作者
Abdel-Razaq, W. [1 ]
Kendall, D. A. [2 ]
Bates, T. E. [2 ,3 ]
机构
[1] Hashemite Univ, Fac Allied Hlth Sci, Dept Med Lab Sci, Zarqa 13115, Jordan
[2] Univ Nottingham, Sch Med, Queens Med Ctr, Sch Biomed Sci, Nottingham NG7 2UH, England
[3] BioCity Nottingham, New Use Therapeut Ltd, Nottingham NG1 1GF, England
关键词
Antidepressants; Mechanism of action; Mitochondrial dysfunction; Mitochondrial complexes; Apoptosis; Caspase-3; RAT-BRAIN MITOCHONDRIA; BIPOLAR DISORDER; NEURODEGENERATIVE DISORDERS; GENE-TRANSCRIPTION; RECEPTOR AGONISTS; INDUCED APOPTOSIS; EXPRESSION; DYSFUNCTION; IMIPRAMINE; STRESS;
D O I
10.1007/s11064-010-0331-z
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
The in vitro effects of antidepressant drugs on mitochondrial function were investigated in a CHO beta(2)SPAP cell line used previously to determine the effects of antidepressants on gene transcription (Abdel-Razaq et al., Biochem Pharmacol 73:1995-2003, 2007) and in rat heart isolated mitochondria. Apoptotic effects of clomipramine (CLOM), desipramine (DMI) and of norfluoxetine (NORF, the active metabolite of fluoxetine), on cellular viability were indicated by morphological changes and concentration-dependent increases in caspase-3 activity in CHO cells after 18 h exposure to CLOM, DMI and NORF. However, tianeptine (TIAN) was without effect. CLOM and NORF both reduced integrated mitochondrial function as shown by marked reductions in membrane potential (MMP) in mitochondria isolated from rat hearts. DMI also showed a similar but smaller effect, whereas, TIAN did not elicit any significant change in MMP. Moreover, micromolar concentrations of CLOM, DMI and NORF caused significant inhibitions of the activities of mitochondrial complexes (I, II/III and IV). The inhibitory effects on complex IV activity were most marked. TIAN inhibited only complex I activity at concentrations in excess of 20 mu M. The observed inhibitory effects of antidepressants on the mitochondrial complexes were accompanied by a significant decrease in the mitochondrial state-3 respiration at concentrations above 10 mu M. The results demonstrate that the apoptotic cell death observed in antidepressant-treated cells could be due to disruption of mitochondrial function resulting from multiple inhibition of mitochondrial enzyme complexes. The possibility that antimitochondrial actions of antidepressants could provide a potentially protective pre-conditioning effect is discussed.
引用
收藏
页码:327 / 338
页数:12
相关论文
共 60 条
[1]
The effects of antidepressants on cyclic AMP-response element-driven gene transcription in a model cell system [J].
Abdel-Razaq, W. ;
Bates, T. E. ;
Kendall, D. A. .
BIOCHEMICAL PHARMACOLOGY, 2007, 73 (12) :1995-2003
[2]
CREB activation induced by mitochondrial dysfunction is a new signaling pathway that impairs cell proliferation [J].
Arnould, T ;
Vankoningsloo, S ;
Renard, P ;
Houbion, A ;
Ninane, N ;
Demazy, C ;
Remacle, J ;
Raes, M .
EMBO JOURNAL, 2002, 21 (1-2) :53-63
[3]
Cannabinoid receptor agonists are mitochondrial inhibitors: A unified hypothesis of how cannabinoids modulate mitochondrial function and induce cell death [J].
Athanasiou, Andriam ;
Clarke, Anna B. ;
Turner, Amy E. ;
Kumaran, Nethia M. ;
Vakilpour, Sara ;
Smith, Paul A. ;
Bagiokou, Dimitra ;
Bradshaw, Tracey D. ;
Westwell, Andrew D. ;
Fang, Lin ;
Lobo, Dileep N. ;
Constantinescu, Cris S. ;
Calabrese, Vittorio ;
Loesch, Andrzej ;
Alexander, Stephen P. H. ;
Clothier, Richard H. ;
Kendall, David A. ;
Bates, Timothy E. .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 364 (01) :131-137
[4]
Vanilloid receptor agonists and antagonists are mitochondrial inhibitors: How vanilloids cause non-vanilloid receptor mediated cell death [J].
Athanasiou, Andriani ;
Smith, Paul A. ;
Vakilpour, Sara ;
Kumaran, Nethia M. ;
Turner, Amy E. ;
Bagiokou, Dimitra ;
Layfield, Robert ;
Ray, David E. ;
Westwell, Andrew D. ;
Alexander, Stephen P. H. ;
Kendall, David A. ;
Lobo, Dileep N. ;
Watson, Susan A. ;
Lophatanon, Artitaya ;
Muir, Kenneth A. ;
Guo, De-an ;
Bates, Timothy E. .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 354 (01) :50-55
[5]
BATES TE, 1994, J NEUROCHEM, V63, P640
[6]
POSTNATAL-DEVELOPMENT OF THE COMPLEXES OF THE ELECTRON-TRANSPORT CHAIN IN ISOLATED RAT-BRAIN MITOCHONDRIA [J].
BATES, TE ;
ALMEIDA, A ;
HEALES, SJR ;
CLARK, JB .
DEVELOPMENTAL NEUROSCIENCE, 1994, 16 (5-6) :321-327
[7]
NO synthase and NO-dependent signal pathways in brain aging and neurodegenerative disorders: The role of oxidant/antioxidant balance [J].
Calabrese, V ;
Bates, TE ;
Stella, AMG .
NEUROCHEMICAL RESEARCH, 2000, 25 (9-10) :1315-1341
[8]
Mitochondrial involvement in brain function and dysfunction: Relevance to aging, neurodegenerative disorders and longevity [J].
Calabrese, V ;
Scapagnini, G ;
Stella, AMG ;
Bates, TE ;
Clark, JB .
NEUROCHEMICAL RESEARCH, 2001, 26 (06) :739-764
[9]
Cellular Stress Responses, The Hormesis Paradigm, and Vitagenes: Novel Targets for Therapeutic Intervention in Neurodegenerative Disorders [J].
Calabrese, Vittorio ;
Cornelius, Carolin ;
Dinkova-Kostova, Albena T. ;
Calabrese, Edward J. ;
Mattson, Mark P. .
ANTIOXIDANTS & REDOX SIGNALING, 2010, 13 (11) :1763-1811
[10]
β-amyloid fragment 25-35 selectively decreases complex IV activity in isolated mitochondria [J].
Canevari, L ;
Clark, JB ;
Bates, TE .
FEBS LETTERS, 1999, 457 (01) :131-134