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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Involvement of LTB4 in zymosan-induced joint nociception in mice: participation of neutrophils and PGE2.
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Involvement of LTB4 in zymosan-induced joint nociception in mice: participation of neutrophils and PGE2.

机译:LTB4参与酵母聚糖诱导的小鼠关节伤害感受:嗜中性粒细胞和PGE2的参与。

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摘要

Leukotriene B4 (LTB4) mediates different inflammatory events such as neutrophil migration and pain. The present study addressed the mechanisms of LTB4-mediated joint inflammation-induced hypernociception. It was observed that zymosan-induced articular hypernociception and neutrophil migration were reduced dose-dependently by the pretreatment with MK886 (1-9 mg/kg; LT synthesis inhibitor) as well as in 5-lypoxygenase-deficient mice (5LO(-/-)) or by the selective antagonist of the LTB(4) receptor (CP105696; 3 mg/kg). Histological analysis showed reduced zymosan-induced articular inflammatory damage in 5LO(-/-) mice. The hypernociceptive role of LTB4 was confirmed further by the demonstration that joint injection of LTB4 induces a dose (8.3, 25, and 75 ng)-dependent articular hypernociception. Furthermore, zymosan induced an increase in joint LTB4 production. Investigating the mechanism underlying LTB4 mediation of zymosan-induced hypernociception, LTB4-induced hypernociception was reduced by indomethacin(5 mg/kg), MK886 (3 mg/kg), celecoxib (10 mg/kg), antineutrophil antibody (100 mug, two doses), and fucoidan (20 mg/kg) treatments as well as in 5LO(-/-) mice. The production of LTB4 induced by zymosan in the joint was reduced by the pretreatment with fucoidan or antineutrophil antibody as well as the production of PGE2 induced by LTB4. Therefore, besides reinforcing the role of endogenous LTB4 as an important mediator of inflamed joint hypernociception, these results also suggested that the mechanism of LTB4-induced articular hypernociception depends on prostanoid and neutrophil recruitment. Furthermore, the results also demonstrated clearly that LTB4-induced hypernociception depends on the additional release of endogenous LTs. Concluding, targeting LTB4 synthesis/action might constitute useful therapeutic approaches to inhibit articular inflammatory hypernociception.
机译:白三烯B4(LTB4)介导不同的炎症事件,例如中性粒细胞迁移和疼痛。本研究解决了LTB4介导的关节炎症引起的痛觉超敏的机制。观察到,通过用MK886(1-9 mg / kg; LT合成抑制剂)进行预处理以及在5-Lygoxygenasease缺陷的小鼠(5LO(-/-)中,酵母聚糖诱导的关节痛和中性粒细胞迁移减少了剂量依赖性。 )或LTB(4)受体的选择性拮抗剂(CP105696; 3 mg / kg)。组织学分析显示在5LO(-/-)小鼠中酵母聚糖诱导的关节炎性损伤减少。通过联合注射LTB4诱导剂量依赖性(8.3、25和75 ng)依赖的关节痛感受,进一步证实了LTB4的痛觉过敏作用。此外,酵母聚糖诱导了联合LTB4产生的增加。在研究LTB4介导酵母聚糖诱导的痛觉超敏的机理时,吲哚美辛(5 mg / kg),MK886(3 mg / kg),塞来昔布(10 mg / kg),抗中性粒细胞抗体(100杯,两个)降低了LTB4诱导的痛觉超敏。剂量)和岩藻依聚糖(20 mg / kg)治疗以及5LO(-/-)小鼠治疗。通过岩藻依聚糖或抗中性粒细胞抗体的预处理降低了酵母聚糖在关节中诱导的LTB4的产生以及LTB4诱导的PGE2的产生。因此,除了增强内源性LTB4作为发炎的关节痛觉的重要介体的作用外,这些结果还表明,LTB4引起的关节痛的机制取决于前列腺素和嗜中性白细胞的募集。此外,结果还清楚地表明,LTB4引起的痛觉过敏取决于内源性LT的额外释放。最后,靶向LTB4的合成/作用可能构成抑制关节炎性痛感的有用治疗方法。

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