Par2-mediated responses in inflammation and regeneration: choosing between repair and damage.

Gal Reches, Ron Piran
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引用次数: 0

Abstract

The protease activated receptor 2 (Par2) plays a pivotal role in various damage models, influencing injury, proliferation, inflammation, and regeneration. Despite extensive studies, its binary roles- EITHER aggravating injury or promoting recovery-make a conclusive translational decision on its modulation strategy elusive. Analyzing two liver regeneration models, autoimmune hepatitis and direct hepatic damage, we discovered Par2's outcome depends on the injury's nature. In immune-mediated injury, Par2 exacerbates damage, while in direct tissue injury, it promotes regeneration. Subsequently, we evaluated the clinical significance of this finding by investigating Par2's expression in the context of autoimmune diabetes. We found that the absence of Par2 in all lymphocytes provided full protection against the autoimmune destruction of insulin-producing β-cells in mice, whereas the introduction of a β-cell-specific Par2 null mutation accelerated the onset of autoimmune diabetes. This pattern led us to hypothesize whether these observations are universal. A comprehensive review of recent Par2 publications across tissues and systems confirms the claim drafted above: Par2's initial activation in the immune system aggravates inflammation, hindering recovery, whereas its primary activation in the damaged tissue fosters regeneration. As a membrane-anchored receptor, Par2 emerges as an attractive drug target. Our findings highlight a crucial translational modulation strategy in regenerative medicine based on injury type.

Par2 在炎症和再生中介导的反应:在修复和损伤之间做出选择。
蛋白酶激活受体 2(Par2)在各种损伤模型中发挥着关键作用,影响着损伤、增殖、炎症和再生。尽管对其进行了广泛研究,但它的二元角色--加重损伤或促进恢复--使其调控策略难以有结论性的转化决定。通过分析自身免疫性肝炎和直接肝损伤这两种肝脏再生模型,我们发现 Par2 的作用结果取决于损伤的性质。在免疫介导的损伤中,Par2 加剧损伤,而在直接组织损伤中,它促进再生。随后,我们通过研究 Par2 在自身免疫性糖尿病中的表达,评估了这一发现的临床意义。我们发现,在所有淋巴细胞中缺乏 Par2 的情况下,小鼠体内产生胰岛素的 β 细胞受到自身免疫性破坏时,Par2 可提供完全保护,而引入 β 细胞特异性 Par2 空缺突变则会加速自身免疫性糖尿病的发生。这种模式促使我们假设这些观察结果是否具有普遍性。对最近发表在不同组织和系统中的 Par2 论文进行的全面回顾证实了上述观点:Par2 在免疫系统中的初始激活会加重炎症,阻碍恢复,而在受损组织中的主要激活则会促进再生。作为一种膜锚定受体,Par2 是一个极具吸引力的药物靶点。我们的发现凸显了再生医学中基于损伤类型的重要转化调节策略。
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CiteScore
11.00
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