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首页> 外文期刊>Archives of pharmacal research >Antihypertensive role of glossopharyngeal nerve stimulation by nifedipine using as calcium channel blocking agent in hypertension: an experimental study.
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Antihypertensive role of glossopharyngeal nerve stimulation by nifedipine using as calcium channel blocking agent in hypertension: an experimental study.

机译:硝苯地平用作高血压钙通道阻断剂的硝酸酚咽神经刺激的抗高血压作用:实验研究。

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摘要

Nifedipine is a therapeutic drug in acute attacks of hypertension because of its rapid absorption from oral mucosa. Taste receptors are innervated by glossopharyngeal nerves (GPN) as well as by facial and vagal nerves. Sensory neurons of the GPNs are localised in the petrous ganglion (PG). Transection of the taste sensitive GPN fibres causes taste bud and PG degeneration and spontaneous hypertension. In this study, the role of chemical stimulation of the taste buds of the GPN by nifedipine and its role in treatment of hypertension were investigated in rabbits. Nifedipine was dropped sublingually (20 mg) for 4 days in the study group, followed by measuring blood pressures again. Then, the lingual branches of GPNs were cut. One month later, blood pressures were measured for 4 days. All animals were sacrificed humanely at the end of the experiment, and normal and degenerated neuron densities in the petrosal ganglions were enumerated stereologically. The antihypertensive effect of nifedipine decreased after GPNs denervation, in accordance with the increase of degenerated neurons in the PG. The chemical stimulation of taste buds of the GPNs by nifedipine may be an important effect of nifedipine application in addition to its calcium channel blocking effect. The rapid decrease in blood pressure following sublingual use of nifedipine may also result from the direct stimulation of taste buds innervated by the GPNs.
机译:尼弗哌啶是一种治疗药物,其急性发作的高血压因口腔粘膜快速吸收。味觉受体通过肾上腺神经(GPN)以及面部和迷水神经来支配。 GPN的感觉神经元在浮石神经节(PG)中局部化。味道敏感性GPN纤维的趋势导致芽和PG退化和自发性高血压。在这项研究中,在兔子中研究了Nifemipine的GPN的味蕾的化学刺激的作用及其在高血压治疗中的作用。在研究组中,尼弗哌啶舌下掉舌下(20mg)4天,然后再次测量血压。然后,切割GPN的语言分支。一个月后,测量血压4天。在实验结束时,所有动物在实验结束时被处死,并且立体地列举了岩石神经节的正常和退化的神经元密度。在PG中退化神经元的增加,GPNS消除后硝苯地平的抗高血症效应降低。通过硝苯地平的GPNS的味蕾的化学刺激可能是硝苯地平应用的重要作用,除了其钙通道阻断效果。舌下使用后乳腺素血压的快速降低也可能是由于GPN地理的味蕾的直接刺激而导致。

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