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缓激肽对内脏伤害感受器热反应的致敏作用。

Sensitizing effects of bradykinin on the heat responses of the visceral nociceptor.

作者信息

Kumazawa T, Mizumura K, Minagawa M, Tsujii Y

机构信息

Department of Nervous and Sensory Functions, Nagoya University, Japan.

出版信息

J Neurophysiol. 1991 Dec;66(6):1819-24. doi: 10.1152/jn.1991.66.6.1819.

Abstract
  1. Whether bradykinin (BK), which is known as an endogenous pain-producing substance, induces augmentation of the discharges of polymodal receptors evoked by heat stimulation was investigated in in vitro canine testis-superior spermatic nerve preparations. 2. The heat response was significantly augmented by pretreatments with BK at concentrations greater than 0.094 nM, whereas BK induced significant increases in the mean discharge rates at concentrations above 9.4 nM. Both effects increased in a concentration-dependent manner. The augmenting effect of BK on the heat response diminished within 10 min after application of BK, regardless of concentration. 3. When 9.4 nM BK was applied in a mixture with 940 nM NPC349, a B2 receptor antagonist, the averaged mean discharge rate evoked by BK and the averaged augmenting effect were both significantly suppressed compared with those induced by BK given alone. 4. The augmenting effect of BK on the heat response of polymodal receptors could be observed even in the absence of BK-evoked discharges per se in several cases in which low concentrations of BK or BK plus B2 antagonists were given. 5. These findings suggest that the augmenting effects of BK on the heat response depend on B2 receptor-mediated intracellular processes acting in parallel to, but not directly on, the impulse-generation mechanism of the heat response of the polymodal receptor.
摘要
  1. 缓激肽(BK)作为一种内源性致痛物质,是否会增强热刺激诱发的多模式感受器放电,在体外犬睾丸-精索上神经制备物中进行了研究。2. 浓度大于0.094 nM的BK预处理可显著增强热反应,而浓度高于9.4 nM时,BK可使平均放电率显著增加。两种效应均呈浓度依赖性增加。无论浓度如何,BK对热反应的增强作用在应用BK后10分钟内减弱。3. 当将9.4 nM BK与940 nM B2受体拮抗剂NPC349混合应用时,与单独给予BK相比,BK诱发的平均平均放电率和平均增强效应均显著受到抑制。4. 在给予低浓度BK或BK加B2拮抗剂的几种情况下,即使本身不存在BK诱发的放电,也可观察到BK对多模式感受器热反应的增强作用。5. 这些发现表明,BK对热反应的增强作用取决于B2受体介导的细胞内过程,该过程与多模式感受器热反应的冲动产生机制平行作用,但不直接作用于该机制。

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