Differential effects of typical and atypical neuroleptics on mitochondrial function in vitro

被引:77
作者
Modica-Napolitano, JS
Lagace, CJ
Brennan, WA
Aprille, JR
机构
[1] Univ Richmond, Dept Biol, Richmond, VA 23173 USA
[2] Augusta Mental Hlth Inst, Augusta, ME 04332 USA
[3] Tufts Univ, Sch Med, Boston, MA 02111 USA
[4] Merrimack Coll, Dept Biol, N Andover, MA 01845 USA
关键词
neuroleptics; mitochondrial bioenergetic function; extrapyramidal symptoms; tardive dyskinesia; electron transport; respiratory enzyme complex 1; oxidative phosphorylation;
D O I
10.1007/BF02980205
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A series of typical (chlorpromazine, haloperidol and thioridazine) and atypical (risperidone, quetiapine, clozapine and olanzapine) antipsychotics were tested for effects on integrated bioenergetic functions of isolated rat liver mitochondria. Polarographic measurement of oxygen consumption in freshly isolated mitochondria showed that electron transfer activity at respiratory complex I is inhibited by chlorpromazine, haloperidol, risperidone, and quetiapine, but not by clozapine, olanzapine, or thioridazine. Chlorpromazine and thioridazine act as modest uncouplers of oxidative phosphorylation. The typical neuroleptics inhibited NADH-coenzyme Q reductase in freeze-thawed mitochondria, which is a direct measure of complex I enzyme activity. The inhibition of NADH-coenzyme Q reductase activity by the atypicals risperidone and quetiapine was 2-4 fold less than that for the typical neuroleptics. Clozapine and olanzapine had only slight effects on NADH-coenzyme Q reductase activity, even at 200 muM. The relative potencies of these neuroleptic drugs as inhibitors of mitochondrial bioenergetic function is similar to their relative potencies as risk factors in the reported incidence of extrapyramidal symptoms, including tardive dyskinesia (TD). This suggests that compromised bioenergetic function may be involved in the cellular pathology underlying TD.
引用
收藏
页码:951 / 959
页数:9
相关论文
共 30 条
[1]   THE MITOCHONDRIAL TOXIN 3-NITROPROPIONIC ACID INDUCES VACUOUS CHEWING MOVEMENTS IN RATS - IMPLICATIONS FOR TARDIVE-DYSKINESIA [J].
ANDREASSEN, OA ;
JORGENSEN, HA .
PSYCHOPHARMACOLOGY, 1995, 119 (04) :474-476
[2]   Neurotoxicity associated with neuroleptic-induced oral dyskinesias in rats - Implications for tardive dyskinesia? [J].
Andreassen, OA ;
Jorgensen, HA .
PROGRESS IN NEUROBIOLOGY, 2000, 61 (05) :525-541
[3]   Inhibition of mitochondrial complex I by haloperidol: the role of thiol oxidation [J].
Balijepalli, S ;
Boyd, MR ;
Ravindranath, V .
NEUROPHARMACOLOGY, 1999, 38 (04) :567-577
[4]   DO DEFECTS IN MITOCHONDRIAL ENERGY-METABOLISM UNDERLIE THE PATHOLOGY OF NEURODEGENERATIVE DISEASES [J].
BEAL, MF ;
HYMAN, BT ;
KOROSHETZ, W .
TRENDS IN NEUROSCIENCES, 1993, 16 (04) :125-131
[5]   AGING, ENERGY, AND OXIDATIVE STRESS IN NEURODEGENERATIVE DISEASES [J].
BEAL, MF .
ANNALS OF NEUROLOGY, 1995, 38 (03) :357-366
[6]   Olanzapine versus haloperidol: Acute phase results of the international double-blind olanzapine trial [J].
Beasley, CM ;
Hamilton, SH ;
Crawford, AM ;
Dellva, MA ;
Tollefson, GD ;
Tran, PV ;
Blin, O ;
Beuzen, JN .
EUROPEAN NEUROPSYCHOPHARMACOLOGY, 1997, 7 (02) :125-137
[7]   NEUROLEPTIC MEDICATIONS INHIBIT COMPLEX-I OF THE ELECTRON-TRANSPORT CHAIN [J].
BURKHARDT, C ;
KELLY, JP ;
LIM, YH ;
FILLEY, CM ;
PARKER, WD .
ANNALS OF NEUROLOGY, 1993, 33 (05) :512-517
[8]   ACTION OF CHLORPROMAZINE AND IMIPRAMINE ON RAT-BRAIN MITOCHONDRIA [J].
BYCZKOWSKI, JZ ;
BORYSEWICZ, R .
GENERAL PHARMACOLOGY-THE VASCULAR SYSTEM, 1979, 10 (05) :369-372
[9]   Extrapyramidal syndromes and new antipsychotic drugs: Findings in patients and non-human primate models [J].
Casey, DE .
BRITISH JOURNAL OF PSYCHIATRY, 1996, 168 :32-39
[10]  
CHOUINARD G, 1980, CAN J NEUROL SCI, V7, P233