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大鼠三叉神经节神经元膜P2X嘌呤受体的特征
作者姓名:Gu YZ  Yin GF  Guan BC  Li ZW
作者单位:华中科技大学同济医学院神经生物学系,武汉,430030
摘    要:采用全细胞膜片钳技术研究了大鼠三叉神经节(trigeminal ganglion,TG)神经元膜P2X嘌呤受体的特征。结果发现:大部分受检细胞(78.9%,142/180)对ATP敏感,ATP.激活电流有明显的浓度依赖性。少数细胞无反应(21.1%,38/180)。在对ATP敏感的142个细胞中,绝大部分引起一内向电流(95.1%,135/142),少数为外向电流(2.1%,3/142),另有部分细胞出现双相电流(2.8%,4/142)。引起的内向电流在小直径细胞(〈30μm)上多表现为快去敏感电流,对vanilloid高度敏感;在中等大小的细胞(30~40μm)上多表现为慢去敏感电流,对vanilloid不敏感:绝大多数大细胞(〉40μm)对ATP和vanilloid均不敏感。此外,电流的波形与细胞直径密切相关。无论小细胞还是中等细胞其I-V曲线均表现出明显的内向整流趋势。我们还研究了ATP-激活电流的动力学特征,并观察了P2嘌呤受体激动剂、拮抗剂的效应。结果提示:不同类型的ATP受体.离子通道在不同类型的TG神经元上的表达具有不同的特点。

关 键 词:腺苷三磷酸  嘌呤受体  三叉神经节  膜片钳技术
收稿时间:2005-10-24
修稿时间:2005-12-28

Characteristics of P2X purinoceptors in the membrane of rat trigeminal ganglion neurons
Gu YZ,Yin GF,Guan BC,Li ZW.Characteristics of P2X purinoceptors in the membrane of rat trigeminal ganglion neurons[J].Acta Physiologica Sinica,2006,58(2):164-170.
Authors:Gu Yuan-Zheng  Yin Guang-Fu  Guan Bing-Cai  Li Zhi-Wang
Institution:Department of Neurobiology, Tongji Medical College of Huazhong University of Science and Technology, Wuhan 430030, China. E-mail: zhiwangli@yahoo.com.
Abstract:The characteristics of purinoceptors in the membrane of rat trigeminal ganglion (TG) neurons were studied by using whole- cell patch clamp technique. The results showed that most of neurons examined (78.9%, 142/180) were responsive to ATP in a concentration-dependent manner; the others (21.1%, 38/180) were ATP insensitive. Of the ATP-sensitive cells, the majority (95.1%, 135/142) responded to ATP with an inward current, a few (2.1%, 3/142) with an outward current, and the rest (2.8%, 4/142) with biphasic current. Small sized cells (<30 mum) responded to ATP with a rapid desensitizing inward current and were highly sensitive to vanilloid; the medium sized cells (30~40 mum) responded to ATP with slow desensitizing inward current and were not sensitive to vanilloid; while the majority of large sized cells (>40 mum) did not respond to ATP and vanilloid. The waveform of ATP-activated inward currents was related to the cell diameter. The I-V curves for both small and medium sized cells manifested obvious inward rectification. Furthermore, we studied the kinetic features of ATP-activated currents and the effects of P2 purinoceptor agonists and antagonists on I(ATP). The findings suggest that ATP receptor-ion channels are expressed differently among different types of rat TG neurons.
Keywords:adenosine triphosphate  purinoceptor  trigeminal ganglion  patch clamp technique
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