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首页> 外文期刊>Science in China, Series C. Life science >Modulation of dragon's blood on tetrodotoxin-resistant sodium currents in dorsal root ganglion neurons and identification of its material basis for efficacy
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Modulation of dragon's blood on tetrodotoxin-resistant sodium currents in dorsal root ganglion neurons and identification of its material basis for efficacy

机译:龙血对背根神经节神经元抗河豚毒素钠电流的调节作用及其药效基础确定

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To clarify the modulation of dragon's blood on the tetrodotoxin-resistant (TTX-R) sodium currents in dorsal root ganglion (DRG) neurons and explore its corresponding material basis for the efficacy, using whole-cell patch clamp technique, the effectsof dragon's blood and the combined effects of three components (cochinchinenin A, cochinchinenin B, and loureirin B) extracted from dragon's blood on the TTX-R sodium currents in acute-isolated DRG neurons of rats were observed. According to the operational definition of material basis for the efficacy of TCM established, the material basis of the modulation on the TTX-R sodium currents in DRG neurons of dragon's blood was judged from the experimental results. The drug interaction equation of Greco et al. was used to assess the interaction of the three components extracted from dragon's blood. This investigation demonstrated that dragon's blood suppressed the peak TTX-R sodium currents in a dose-dependent way and affected the activations of TTX-R sodium currents. The effects of the combination of cochinchinenin A, cochinchinenin B, and loureirin B were in good agreement with those of dragon's blood. Although the three components used alone could modulate TTX-R sodium currents, the concentrations of the three components used alone were respectively higher than those used in combination when the inhibition rates on the TTX-R sodium currents of them used alone and in combination were the same. The combined effects of the three components were synergistic. These results suggested that the interference with pain messages caused by the modulation of dragon's blood on TTX-R sodium currents in DRG neurons may explain some of the analgesic effect of dragon's blood and the corresponding material basis for theefficacy is the combination of cochinchinenin A, cochinchinenin B, and loureirin B.
机译:为了阐明龙血对背根神经节(DRG)神经元的抗河豚毒素(TTX-R)钠电流的调节作用,并使用全细胞膜片钳技术探索龙血的相应物质基础,了解龙血的作用。观察了龙血中提取的三种成分(蛇毒素,蛇毒素B和芦丁素B)对大鼠急性分离DRG神经元TTX-R钠电流的联合作用。根据建立的中药功效的物质基础的操作定义,从实验结果判断龙血DRG神经元中TTX-R钠电流的调制的物质基础。 Greco等人的药物相互作用方程。用于评估从龙血中提取的三个成分的相互作用。这项研究表明,龙血以剂量依赖的方式抑制了TTX-R钠电流峰值,并影响了TTX-R钠电流的激活。刺五加宁A,刺五加宁B和卢蕾瑞宁B的组合效果与龙血相吻合。尽管单独使用的三种成分可以调节TTX-R钠电流,但是当单独使用和组合使用的三种成分对TTX-R钠电流的抑制率分别为时,单独使用的三种成分的浓度要高于组合使用的浓度。相同。这三个部分的综合作用是协同的。这些结果表明,龙血调节DRG神经元中TTX-R钠电流对疼痛信息的干扰可能解释了龙血的某些止痛作用,而相应的物质基础是联合辅酶A,辅酶A B和卢蕾瑞林B.

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