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短暂暴露于蛋白质合成抑制剂可增强血管对去精氨酸9-缓激肽的反应:白细胞介素-1的可能作用。

Pulse exposure to protein synthesis inhibitors enhances vascular responses to des-Arg9-bradykinin: possible role of interleukin-1.

作者信息

deBlois D, Bouthillier J, Marceau F

机构信息

Centre de recherche de l'Université Laval, Hôtel-Dieu de Québec, Canada.

出版信息

Br J Pharmacol. 1991 May;103(1):1057-66. doi: 10.1111/j.1476-5381.1991.tb12300.x.

Abstract
  1. The modulation of the spontaneous increase in contractile responses to des-Arg9-bradykinin (des-Arg9-BK) of rabbit aortic strips incubated in vitro was studied. Rapid hypotensive responses to exogenous kinins were also measured in rabbits anaesthetized 5 h following pretreatment. 2. Continuous exposure to the protein synthesis inhibitors cycloheximide (71 microM) or anisomycin (3.8 microM) profoundly inhibited the sensitization to des-Arg9-BK in incubated aortic strips. However, temporary (3 h) inhibition of protein synthesis in vitro followed by further incubation (3 h) of tissues without inhibitor, paradoxically enhanced both the maximal contractile responses to des-Arg9-BK (1.7 microM) and the apparent affinity of the kinin without affecting contractions to noradrenaline (NA, 100 nM) at 6.5 h. 3. The stimulatory activity of the short treatment (pulse) with cycloheximide was abolished in the presence of dexamethasone sodium phosphate (100 microM throughout the incubation). The function of receptors for kinins did not appear to be altered directly by the steroid treatment. 4. Interleukin-1 beta (IL-1 beta), applied at low concentrations (100-250 pg ml-1) on aortic strips between 3 h and 6.5 h of incubation time, mimicked the selective stimulatory effect of the cycloheximide pulse on responses to des-Arg9-BK. Higher concentrations of IL-1 beta (0.5-5 ng ml-1) did not further amplify the responses to des-Arg9-BK but decreased the contractile responses to NA. 5. The modulation by IL-1 beta of vascular sensitivity to des-Arg9-BK and to NA was prevented by blockade of protein synthesis. 6. The induction in vivo by IL-1 beta (5 micrograms kg-1) or by cycloheximide (10 mg kg-1) of cardiovascular responsiveness to des-Arg9-BK was demonstrated with a blood pressure assay of exogenous kinins or with tissues isolated ex vivo 5 h after pretreatment of animals. Evidence of active disposition of cycloheximide in vivo was also obtained. 7. We propose the production of endogenous IL-1 as a possible mechanism for the enhancement of responsiveness to des-Arg9-BK observed in tissues pulsed with a protein synthesis inhibitor and for the inducing effect of cycloheximide or E. coli lipopolysaccharide in vivo. These results suggest that effects mediated by the BK1 receptor for kinins are potentially present in pathological conditions associated with IL-1 production.
摘要
  1. 研究了体外培养的兔主动脉条对去精氨酸9-缓激肽(des-Arg9-BK)收缩反应自发增加的调节作用。还在预处理5小时后麻醉的兔子中测量了对外源性激肽的快速降压反应。2. 持续暴露于蛋白质合成抑制剂环己酰亚胺(71 microM)或茴香霉素(3.8 microM)可显著抑制培养的主动脉条对des-Arg9-BK的敏感性。然而,体外暂时(3小时)抑制蛋白质合成,随后在无抑制剂的情况下进一步培养组织(3小时),矛盾的是,在6.5小时时增强了对des-Arg9-BK(1.7 microM)的最大收缩反应以及激肽的表观亲和力,而不影响对去甲肾上腺素(NA,100 nM)的收缩反应。3. 在整个培养过程中存在地塞米松磷酸钠(100 microM)的情况下,环己酰亚胺短时间处理(脉冲)的刺激活性被消除。类固醇处理似乎未直接改变激肽受体的功能。4. 在培养3小时至6.5小时之间,以低浓度(100 - 250 pg/ml)将白细胞介素-1β(IL-1β)应用于主动脉条,模拟了环己酰亚胺脉冲对des-Arg9-BK反应的选择性刺激作用。较高浓度的IL-1β(0.5 - 5 ng/ml)并未进一步放大对des-Arg9-BK的反应,但降低了对NA的收缩反应。5. 通过阻断蛋白质合成可防止IL-1β对血管对des-Arg9-BK和NA敏感性的调节。6. 通过对外源性激肽的血压测定或在动物预处理5小时后离体分离的组织,证明了IL-1β(5微克/千克)或环己酰亚胺(10毫克/千克)在体内诱导对des-Arg9-BK的心血管反应性。还获得了环己酰亚胺在体内活性分布的证据。7. 我们提出内源性IL-1的产生是在用蛋白质合成抑制剂脉冲处理的组织中观察到的对des-Arg9-BK反应性增强以及环己酰亚胺或大肠杆菌脂多糖在体内诱导作用的一种可能机制。这些结果表明,在与IL-1产生相关的病理条件下,激肽的BK1受体介导的效应可能存在。

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