印楝素
兴奋性突触后电位
生物
神经科学
神经传递
抑制性突触后电位
钙通道
胆碱能的
中枢神经系统
除虫菊
药理学
钙
化学
生物化学
受体
杀虫剂
生态学
有机化学
作者
Jing‐Da Qiao,Xiaolu Zou,Duo Lai,Ying Yan,Qi Wang,Weicong Li,Shengwen Deng,Hanhong Xu,Huaiyu Gu
摘要
Abstract BACKGROUND Azadirachtin is a botanical pesticide, which possesses conspicuous biological actions such as insecticidal, anthelmintic, antifeedancy, antimalarial effects as well as insect growth regulation. Deterrent for chemoreceptor functions appears to be the main mechanism involved in the potent biological actions of Azadirachtin, although the cytotoxicity and subtle changes to skeletal muscle physiology may also contribute to its insecticide responses. In order to discover the effects of Azadirachtin on the central nervous system ( CNS ), patch‐clamp recording was applied to Drosophila melanogaster , which has been widely used in neurological research . RESULTS Here, we describe the electrophysiological properties of a local neuron located in the suboesophageal ganglion region of D. melanogaster using the whole brain. The patch‐clamp recordings suggested that Azadirachtin modulates the properties of cholinergic miniature excitatory postsynaptic current ( mEPSC ) and calcium currents, which play important roles in neural activity of the CNS . The frequency of mEPSC and the peak amplitude of the calcium currents significantly decreased after application of Azadirachtin . CONCLUSION Our study indicates that Azadirachtin can interfere with the insect's CNS via inhibition of excitatory cholinergic transmission and partly blocking the calcium channel. © 2013 Society of Chemical Industry
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