首页> 美国卫生研究院文献>Clinical and Translational Science >Anticonvulsant Activity of Essential Oil From Leaves of Zhumeria majdae (Rech.) in Mice: The Role of GABAA Neurotransmission and the Nitric Oxide Pathway
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Anticonvulsant Activity of Essential Oil From Leaves of Zhumeria majdae (Rech.) in Mice: The Role of GABAA Neurotransmission and the Nitric Oxide Pathway

机译:马鞭草(Chumeria majdae)的精油在小鼠中的抗惊厥作用:GABAA神经传递和一氧化氮途径的作用

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摘要

The essential oil from the leaves of Rech. (ZMEO) has been shown to have several beneficial effects in the clinic. In this work we examined the anticonvulsant activities of ZMEO in an experimental mouse model of seizure and aimed to identify any possible underlying mechanisms. ZMEO (5, 10, 20, and 40 mg/kg intraperitoneally (i.p.)) or diazepam, as the reference anticonvulsant drug (25, 50 and 100 µg/kg i.p.), were administered 60 minutes prior to pentylenetetrazol (PTZ) injection (intravenously (i.v.) or i.p.) and changes in threshold, latency, and frequency of clonic seizure were examined. The PTZ i.p.‐induced model of seizure was also applied for examining the protective effects of ZMEO pretreatment against PTZ‐induced mortality. In some studies, the anticonvulsant effect of the combination of diazepam and ZMEO was also studied. The protective effects of ZMEO against hindlimb tonic extensions (HLTEs) were also examined by maximal electroshock (MES) seizure testing. The γ‐aminobutyric acid (GABA)ergic mechanism and nitric oxide (NO) pathway involvement in anticonvulsant activity of ZMEO were assessed by pretreating animals with flumazenil, ‐nitro‐L‐arginine methyl ester (L‐NAME), aminoguanidine, and L‐arginine in a PTZ‐induced model of seizure. Administration of 20 mg/kg ZMEO significantly increased chronic seizure threshold and latency while reducing frequency of convulsions and mortality in the PTZ‐induced model. In the doses studied, ZMEO could not protect mice from HLTE and mortality induced by MES. Pretreatment with L‐arginine and diazepam potentiated the anticonvulsant effects of ZMEO, whereas pretreatment with L‐NAME, aminoguanidine, and flumazenil reversed anticonvulsant activity. The anticonvulsant activity of ZMEO may be mediated in part through a GABAergic mechanism and the NO signaling pathway.
机译:从Rech的叶子的精油。 (ZMEO)在临床上已显示出多种有益作用。在这项工作中,我们检查了ZMEO在癫痫发作的实验小鼠模型中的抗惊厥活性,目的是确定任何可能的潜在机制。在注射戊烯四唑(PTZ)之前60分钟给予ZMEO(腹膜内(ip)5、10、20和40 mg / kg腹膜内(ip)或地西epa(25、50和100μg/ kg ip腹膜内注射)(静脉注射(iv)或ip),检查阈值,潜伏期和阵挛性癫痫发作频率的变化。 PTZ IP诱发的癫痫发作模型也用于检查ZMEO预处理对PTZ诱发的死亡的保护作用。在一些研究中,还研究了地西epa和ZMEO组合的抗惊厥作用。还通过最大电击(MES)癫痫发作检查来检查ZMEO对后肢强直延伸(HLTE)的保护作用。通过对动物进行氟马西尼预处理,评估了γ-氨基丁酸(GABA)的增效机制和一氧化氮(NO)途径参与ZMEO抗惊厥活性的作用, -PTZ诱发的癫痫发作模型中的-硝基-L-精氨酸甲酯(L-NAME),氨基胍和L-精氨酸在PTZ诱导的模型中,给予20 mg / kg的ZMEO显着增加了慢性癫痫发作的阈值和潜伏期,同时减少了惊厥的频率和死亡率。在研究的剂量下,ZMEO不能保护小鼠免受HLTE和MES诱导的死亡率的影响。用L-精氨酸和地西epa预处理可增强ZMEO的抗惊厥作用,而用L-NAME,氨基胍和氟马西尼预处理可逆转抗惊厥活性。 ZMEO的抗惊厥活性可能部分通过GABA能机制和NO信号通路介导。

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