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The Effect of Kinin B1 Receptor on Chronic Itching Sensitization

机译:激肽B1受体对慢性瘙痒敏化的影响

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Altered kallikrein-related peptidase activity and bradykinin are associated with skin disorders in humans and mice under chronic inflammation conditions. The bradykinin B1 receptor (B1R), also known as one of the G-protein-coupled receptor family and usually absent in intact tissues and upregulated during tissue injury, is responsible for vasodilation, capillary permeability, nociceptor sensitization, and pain; it is indispensable for physiopathological progress in chronic inflammation conditions, but its roles and effectors in the itching sensation of the allergic contact dermatitis model are poorly defined. We focused on incurable itching in a diphenylcyclopropenone (DCP) chronic inflammation experimental model. Preventive treatment with the B1R antagonist R892 significantly suppressed spontaneous scratching, while the B2R selective antagonist did not. B1R expression in the skin tissues of this model was detected using a quantitative, real-time polymerase chain reaction, Western blotting, and immunohistochemistry; B1R mRNA and protein levels were increased compared with a sham-treated control group. A higher B1R IHC staining signal was observed in the keratinocytes in DCP-treated mice compared with a vehicle-treated group, so we studied the B1R function when superimposed on a protease-activated receptor 2 (PAR2) background, establishing B1R as a pivotal mediator of PAR2 function in HaCaT cell lines. Our data provide evidence that B1R facilitates the chronic itching sensation related to keratinocytes in a DCP-treated chronic inflammation experimental model.
机译:激肽释放酶相关的肽酶活性和缓激肽的改变与人类和小鼠在慢性炎症条件下的皮肤疾病有关。缓激肽B1受体(B1R),也称为G蛋白偶联受体家族之一,通常在完整组织中不存在,在组织损伤过程中被上调,引起血管舒张,毛细血管通透性,伤害感受器敏化和疼痛。它对于慢性炎症条件下的生理病理学进展是必不可少的,但是其在过敏性接触性皮炎模型的瘙痒感中的作用和效应器的定义还不明确。我们专注于二苯基环丙烯酮(DCP)慢性炎症实验模型中的无法治愈的瘙痒。 B1R拮抗剂R892的预防性治疗显着抑制了自发性抓挠,而B2R选择性拮抗剂则没有。使用定量实时聚合酶链反应,Western印迹和免疫组化检测该模型皮肤组织中的B1R表达。与假治疗的对照组相比,B1R mRNA和蛋白水平升高。与媒介物处理组相比,在DCP处理的小鼠的角质形成细胞中观察到更高的B1R IHC染色信号,因此我们研究了在蛋白酶激活受体2(PAR2)背景上叠加B1R的功能,从而确立了B1R作为关键介质在HaCaT细胞系中的PAR2功能我们的数据提供了证据,表明在DCP治疗的慢性炎症实验模型中,B1R促进了与角质形成细胞有关的慢性瘙痒感觉。

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