The effect of Madopar on absence‑like seizures in WAG/Rij rats.

IF 1.4 4区 医学 Q4 NEUROSCIENCES
Ali Al-Kaleel, O. Erbaş, H. Aygün
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引用次数: 0

Abstract

The aim of this study was to investigate the effect of Madopar on the absence seizures and the anxiety‑like behavior (assessed using the open field test) in Wistar Albino Glaxo/Rijswijk (WAG/Rij) rats. Twenty‑eight male WAG/Rij rats were randomly divided into four groups: group I: control; group II: Madopar 5 mg/kg; group III: Madopar 50 mg/kg; group IV: Madopar 100 mg/kg. A tripolar electrode was attached to all WAG/Rij rats. Electrocorticography (ECoG) recordings were made before and after Madopar (5, 50, and 100 mg/kg) injection for three hours. Anxiety‑related behavior was studied using the open field test for 5 min after the ECoG recordings. Madopar significantly reduced the number and duration of spike‑wave discharges (SWDs) when compared to the control group. The highest dose of Madopar (100 mg/kg) significantly reduced the duration of SWDs when compared to Madopar (5 mg/kg). All Madopar doses did not alter the duration of grooming, but the highest doses of Madopar significantly increased the number of squares crossed in the open field test when compared to the control and Madopar (5 mg/kg) groups. These results revealed that Madopar reduced the absence‑like seizures and the anxiety‑related behavior in WAG/Rij rats. This may emphasize the therapeutic properties of the Madopar/L‑dopa in absence epilepsy.
美多巴对WAG/Rij大鼠失神样癫痫发作的影响。
本研究的目的是探讨美多巴对Wistar白化葛兰素/瑞杰(WAG/Rij)大鼠失神发作和焦虑样行为的影响(采用开阔场试验评估)。28只雄性WAG/Rij大鼠随机分为四组:第一组:对照组;II组:美多巴5 mg/kg;III组:美多巴50 mg/kg;IV组:美多巴100 mg/kg。WAG/Rij大鼠均连接三极电极。分别在美多帕(5、50、100 mg/kg)注射3小时前后进行皮质电图(ECoG)记录。在ECoG记录后5分钟采用空地测试研究焦虑相关行为。与对照组相比,美多巴显著减少了尖峰波放电(SWDs)的次数和持续时间。与美多巴(5mg /kg)相比,最高剂量的美多巴(100mg /kg)显著缩短了SWDs持续时间。所有的美多巴剂量都没有改变梳理的持续时间,但与对照组和美多巴(5 mg/kg)组相比,最高剂量的美多巴显著增加了野外试验中交叉的方块数量。这些结果表明,美多巴减少了WAG/Rij大鼠的缺席样癫痫发作和焦虑相关行为。这可能强调了美多巴/左旋多巴在缺席性癫痫中的治疗特性。
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来源期刊
CiteScore
2.20
自引率
7.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: Acta Neurobiologiae Experimentalis (ISSN: 0065-1400 (print), eISSN: 1689-0035) covers all aspects of neuroscience, from molecular and cellular neurobiology of the nervous system, through cellular and systems electrophysiology, brain imaging, functional and comparative neuroanatomy, development and evolution of the nervous system, behavior and neuropsychology to brain aging and pathology, including neuroinformatics and modeling.
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