The role of technical, biological and pharmacological factors in the laboratory evaluation of anticonvulsant drugs .6. Seasonal influences on maximal electroshock and pentylenetetrazol seizure thresholds

被引:72
作者
Loscher, W
Fiedler, M
机构
[1] Dept. of Pharmacology, T., School of Veterinary Medicine, D-30559 Hannover
关键词
epilepsy; convulsions; melatonin; kindling; seasonal rhythms; antiepileptic drugs; magnetic field;
D O I
10.1016/0920-1211(96)00022-8
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
There is strong evidence for circadian rhythmicity in certain seizure types, whereas only a few studies have addressed the possibility of seasonal rhythms in convulsive activity. In the present experiments, seizure thresholds to different types of seizures were determined twice per month over a period of 13 months in mice under controlled environmental conditions, i.e., constant photoperiod, temperature, humidity, and food. Each group of animals was used for only one experiment, and the age of the mice used per month was the same throughout the study. Furthermore, all experiments were done at the same time in the morning to avoid circadian variation. Thresholds for the following seizure types were determined: (1) tonic hindlimb seizures induced by electrical (transauricular) stimulation; (2) myoclonic seizures induced by intravenous (i.v.) infusion of pentylenetetrazol (PTZ); (3) generalized clonic seizures in response to i.v. PTZ; and (4) tonic forelimb seizures induced by PTZ. A significant seasonality was determined for myoclonic and clonic PTZ seizure thresholds with highest thresholds between February and April and lowest thresholds between July and September. No clear seasonality was seen for chemically or electrically induced tonic seizures. Determination of plasma corticosterone did not disclose any seasonal rhythm in adrenal corticosteroid production that resembled the circannual variation in myoclonic and clonic seizure thresholds. In conclusion, our experiments suggest the existence of seasonal rhythms in PTZ seizure thresholds in laboratory animals despite standardized environmental conditions. A possible explanation for the findings may be the known seasonal alteration of the geomagnetic field which, by its effect on the pineal production of melatonin, may act as a seasonal synchronizer (''zeitgeber'') in animals in the absence of other synchronizing forces, such as seasonal changes in photoperiod and ambient temperature.
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页码:3 / 10
页数:8
相关论文
共 28 条
[11]  
KAEMMERER K, 1983, ZBL VET MED A, V30, P712
[12]   CHEMICAL PROTECTION AGAINST IONIZING RADIATION .1. SAMPLING METHODS FOR SCREENING COMPOUNDS IN RADIATION PROTECTION STUDIES WITH MICE [J].
KIMBALL, AW ;
BURNETT, WT ;
DOHERTY, DG .
RADIATION RESEARCH, 1957, 7 (01) :1-12
[13]  
KULKARNI S K, 1989, Drugs of Today, V25, P555
[14]   THE ROLE OF TECHNICAL, BIOLOGICAL AND PHARMACOLOGICAL FACTORS IN THE LABORATORY EVALUATION OF ANTICONVULSANT DRUGS .2. MAXIMAL ELECTROSHOCK SEIZURE MODELS [J].
LOSCHER, W ;
FASSBENDER, CP ;
NOLTING, B .
EPILEPSY RESEARCH, 1991, 8 (02) :79-94
[15]   THE ROLE OF TECHNICAL, BIOLOGICAL AND PHARMACOLOGICAL FACTORS IN THE LABORATORY EVALUATION OF ANTICONVULSANT DRUGS .3. PENTYLENETETRAZOLE SEIZURE MODELS [J].
LOSCHER, W ;
HONACK, D ;
FASSBENDER, CP ;
NOLTING, B .
EPILEPSY RESEARCH, 1991, 8 (03) :171-189
[16]   GLUCOCORTICOIDS ARE MODULATORS OF GABAA RECEPTORS IN BRAIN [J].
MAJEWSKA, MD ;
BISSERBE, JC ;
ESKAY, RL .
BRAIN RESEARCH, 1985, 339 (01) :178-182
[17]   SEASONAL RHYTHM IN PLASMA TESTOSTERONE AND LUTEINIZING-HORMONE OF MALE LABORATORY RAT [J].
MOCK, EJ ;
KAMEL, F ;
WRIGHT, WW ;
FRANKEL, AI .
NATURE, 1975, 256 (5512) :61-63
[18]  
PORSZASZ J, 1971, Acta Physiologica Academiae Scientiarum Hungaricae, V40, P93
[19]  
Reinberg A., 1974, CIRCANNUAL CLOCKS AN, P423
[20]   STATIC AND EXTREMELY LOW-FREQUENCY ELECTROMAGNETIC-FIELD EXPOSURE - REPORTED EFFECTS ON THE CIRCADIAN PRODUCTION OF MELATONIN [J].
REITER, RJ .
JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, 51 (04) :394-403