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Stimulated prostaglandin E2 release from rat skin, in vitro.

机译:体外从大鼠皮肤中刺激前列腺素E2释放。

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摘要

The excitatory effect of bradykinin (BK) and of low pH on nociceptors appears to partly depend on secondary release of prostaglandins from the surrounding tissue. Rat skin, in vitro, is introduced as a novel model to measure basal and stimulated release of PGE2 and, in future, other substances relevant to nociception, such as neuropeptides. Flaps of hairy skin (n=57) from the rat saphenous region of the hindpaw were subcutaneously excised and fixed on acrylic rods, the corium side exposed. The preparations were equilibrated in carbogen gassed "synthetic interstitial fluid" (SIF) for 30 minutes. The skin flaps were then immersed for 5 minutes each in 9 consecutive glass tubes, which were mounted in a shaking bath at 32 degrees C. Each tube was filled with 5 ml of gassed SIF, the third tube contained inflammatory mediator(s) dissolved in SIF or solutions of low pH. After passage of the skin flap, the eluates were deep frozen (-70 degrees C) and the PGE2 content measured, off-line, using an enzyme immuno-assay. As stimulants, BK at 10(-5) M (n=9) and 10(-6) M (n=4) and BK in equimolar combination with histamine (HA) and serotonin (5-HT; 10(-5) M: n=8, 10(-6) M: n=6, 10(-7) M: n=6) dose-dependently increased PGE2 release. Considering the total amount of PGE2 secreted the combination of inflammatory mediators caused a significantly greater release of PGE2 at 10(-5) and 10(-6) M (p<0.01, Kruskal-Wallis test) than BK stimulation alone. Racemic flurbiprofen caused a profound depression of basal and stimulated release. Solutions of high proton concentration are known to stimulate and sensitize nociceptors. However, phosphate buffered SIF at pH 6.1 and 6.4 caused a substantial and significant decrease of the PGE2 release, probably due to low-pH block of phospholipases. Thus, algogenic potency of mediators does not necessarily match their pro-inflammatory action.
机译:缓激肽(BK)和低pH对伤害感受器的兴奋作用似乎部分取决于前列腺素从周围组织的二次释放。将大鼠皮肤作为一种新模型引入体外,以测量PGE2以及未来与伤害感受有关的其他物质(例如神经肽)的基础释放和受刺激释放。皮下切除大鼠后足隐隐区域的多毛皮肤皮瓣(n = 57),并固定在丙烯酸棒上,露出皮质侧。将这些制剂在经碳素充气的“合成间隙液”(SIF)中平衡30分钟。然后将皮瓣分别浸入9个连续的玻璃管中,分别浸入5分钟,该玻璃管安装在32°C的摇动浴中。每个玻璃管中均充满5 ml充气的SIF,第三根玻璃管中含有溶解于其中的炎性介质。 SIF或低pH值的溶液。皮瓣通过后,将洗脱液深度冷冻(-70摄氏度),并使用酶免疫法离线测量PGE2含量。作为兴奋剂,BK分别在10(-5)M(n = 9)和10(-6)M(n = 4)和BK与组胺(HA)和5-羟色胺(5-HT; 10(-5)等摩尔结合) M:n = 8,10(-6)M:n = 6,10(-7)M:n = 6)剂量依赖性增加PGE2释放。考虑到分泌的PGE2总量与单独的BK刺激相比,炎性介质的组合在10(-5)和10(-6)M时引起PGE2的释放明显更大(p <0.01,Kruskal-Wallis测试)。外消旋氟比洛芬引起基础的严重降低和刺激释放。已知高质子浓度的溶液可以刺激和敏化伤害感受器。但是,pH 6.1和6.4的磷酸盐缓冲SIF导致PGE2释放的显着降低,这可能是由于低pH的磷脂酶阻滞所致。因此,调节剂的促生力不一定与它们的促炎作用相匹配。

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