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首页> 外文期刊>Journal of Cell Communication and Signaling >Blockade of Bradykinin receptors worsens the dystrophic phenotype of Emphasis Type="Italic"mdx/Emphasis mice: differential effects for B1 and B2 receptors
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Blockade of Bradykinin receptors worsens the dystrophic phenotype of Emphasis Type="Italic"mdx/Emphasis mice: differential effects for B1 and B2 receptors

机译:缓激肽受体的阻滞使 mdx 小鼠的营养不良表型恶化:B1和B2受体的差异作用

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The Kallikrein Kinin System (KKS) is a vasoactive peptide system with known functions in the maintenance of tissue homeostasis, renal function and blood pressure. The main effector peptide of KKS is Bradykinin (BK). This ligand has two receptors: a constitutive B2 receptor (B2R), which has been suggested to have anti-fibrotic effects in renal and cardiac models of fibrosis; and the inducible B1 receptor (B1R), whose expression is induced by damage and inflammation. Inflammation and fibrosis are hallmarks of Duchenne muscular dystrophy (DMD), therefore we hypothesized that the KKS may play a role in this disease. To evaluate this hypothesis we used the mdx mouse a model for DMD. We blocked the endogenous activity of the KKS by treating mdx mice with B2R antagonist (HOE-140) or B1R antagonist (DesArgLeu8BK (DALBK)) for four weeks. Both antagonists increased damage, fibrosis, TGF-?2 and Smad-dependent signaling, CTGF/CCN-2 levels as well as the number of CD68 positive inflammatory cells. B2R blockade also reduced isolated muscle contraction force. These results indicate that the endogenous KKS has a protective role in the dystrophic muscle. The KKS may be a new target for future therapies to reduce inflammation and fibrosis in dystrophic muscle.
机译:激肽释放酶激肽系统(KKS)是一种血管活性肽系统,在维持组织稳态,肾功能和血压方面具有已知功能。 KKS的主要效应肽是缓激肽(BK)。该配体具有两个受体:一个组成型B2受体(B2R),已被建议在肾和心脏纤维化模型中具有抗纤维化作用。以及可诱导的B1受体(B1R),其表达受损伤和炎症诱导。炎症和纤维化是杜氏肌营养不良症(DMD)的标志,因此我们假设KKS可能在这种疾病中起作用。为了评估该假设,我们使用了mdx鼠标作为DMD模型。我们通过用B2R拮抗剂(HOE-140)或B1R拮抗剂(DesArgLeu8BK(DALBK))处理mdx小鼠四周来阻断KKS的内源活性。两种拮抗剂均增加损伤,纤维化,TGF-β2和Smad依赖性信号传导,CTGF / CCN-2水平以及CD68阳性炎症细胞的数量。 B2R阻滞也降低了孤立的肌肉收缩力。这些结果表明内源性KKS在营养不良性肌肉中具有保护作用。 KKS可能是未来减少营养不良性肌肉炎症和纤维化的新靶标。

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