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Bradykinin-induced activation of nociceptors: receptor and mechanistic studies on the neonatal rat spinal cord-tail preparation in vitro.

机译:缓激肽诱导的伤害感受器激活:新生大鼠脊髓尾制剂的受体和机理研究。

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摘要

1. The effects of bradykinin on nociceptors have been characterized on a preparation of the neonatal rat spinal cord with functionally connected tail maintained in vitro. Administration of bradykinin to the tail activated capsaicin-sensitive peripheral fibres and evoked a concentration-dependent (EC50 = 130 nM) depolarization recorded from a spinal ventral root (L3-L5). 2. The response to bradykinin was unaffected by the peptidase inhibitors, bestatin (0.4 mM), thiorphan (1 microM), phosphoramidon (1 microM) and MERGETPA (10 microM) or by the presence of calcium blocking agents, cadmium (200 microM) and nifedipine (10 microM). 3. Inhibition of cyclo-oxygenase with indomethacin (1-5 microM), aspirin (1-10 microM) and paracetamol (10-50 microM) consistently attenuated responses to bradykinin. 4. The effect of bradykinin was mimicked by the phorbol ester PDBu, an activator of protein kinase C. The response to bradykinin was attenuated following desensitization to PDBu but desensitization to bradykinin did not induce a cross-desensitization to PDBu. The protein kinase C inhibitor staurosporine (10-500 nM) consistently attenuated the effects of PDBu and bradykinin. 5. Bradykinin responses were reversibly enhanced by dibutyryl cyclic AMP (100 microM). However dibutyryl cyclic GMP (0.5 mM) and nitroprusside (10 microM) produced prolonged block of responsiveness to bradykinin. Prolonged superfusion with pertussis toxin did not affect responses to bradykinin. 6. The B1-receptor agonist des Arg9-bradykinin (10-100 microM) was ineffective alone or after prolonged exposure of the tail to lipopolysaccharide (100 ng ml-1) or epidermal growth factor (100 ng ml-1) to induce B1 receptors.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:1.在体外维持功能连接的尾部的新生大鼠脊髓制剂中,表征了缓激肽对伤害感受器的作用。将缓激肽给予尾部活化的辣椒素敏感外周纤维,并引起从脊髓腹侧根部(L3-L5)记录的浓度依赖性(EC50 = 130 nM)去极化。 2.对缓激肽的反应不受肽酶抑制剂,Bestatin(0.4 mM),thiorphan(1 microM),磷酰胺(1 microM)和MERGETPA(10 microM)或钙阻断剂,镉(200 microM)的影响和硝苯地平(10 microM)。 3.用消炎痛(1-5 microM),阿司匹林(1-10 microM)和对乙酰氨基酚(10-50 microM)抑制环加氧酶,持续减弱了对缓激肽的反应。 4.缓激肽的作用被佛波酯PDBu(一种蛋白激酶C的激活剂)模仿。对缓激肽的反应在对PDBu脱敏后减弱,但对缓激肽的脱敏并没有引起对PDBu的交叉脱敏。蛋白激酶C抑制剂星形孢菌素(10-500 nM)持续减弱PDBu和缓激肽的作用。 5.通过二丁酰基环AMP(100 microM)可逆地增强缓激肽的反应。但是,二丁酰基环状GMP(0.5 mM)和硝普钠(10 microM)产生了对缓激肽反应的延长阻滞。百日咳毒素的长时间灌注不影响对缓激肽的反应。 6.单独的B1受体激动剂des Arg9-缓激肽(10-100 microM)无效,或者将尾巴长时间暴露于脂多糖(100 ng ml-1)或表皮生长因子(100 ng ml-1)诱导B1无效。受体(摘要截断为250个字)

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