Lin Lu , Feng Liu , Weiliang Wu , Yu Zhang , Bin Liu , Qingfang Han , Tonggan Lu , Huiling Zhang , Xi-yong Yu , Yangxin Li
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引用次数: 0
摘要
胸主动脉瘤/夹层(TAAD)是一种严重的血管疾病,会引发危及生命的并发症,其潜在的分子机制在很大程度上仍未得到探索。以往的研究表明,细胞膜 DNA 及其受体的异常激活在血管炎症和功能障碍中起着至关重要的作用。具体而言,细胞内 DNA 受体 Absent in Melanoma 2(AIM2)可触发炎性体通路,导致细胞外基质破坏。在这项研究中,我们深入研究了AIM2在TAAD发展过程中的激活机制,并探索了外泌体通过抑制AIM2表达来阻碍TAAD进展的潜力。我们的研究结果表明,AIM2的高度表达和活化通过促进血管炎症和破坏血管稳态促进了TAAD的发展。活化的AIM2通过招募去泛素化酶USP21诱导热变态反应,USP21通过减少AIM2的泛素化和降解来稳定AIM2。此外,我们还证明了外泌体衍生的 miR-485-5p 可通过抑制 AIM2 的活化对胸主动脉产生抗炎和保护作用。这项研究为治疗 TAAD 提供了新的视角。
Stem cell-derived exosomes prevent the development of thoracic aortic aneurysm/dissection by inhibiting AIM2 inflammasome and pyroptosis
Thoracic aortic aneurysm/dissection (TAAD) is a severe vascular condition associated with life-threatening complications, and its underlying molecular mechanisms remain largely unexplored. Previous research indicates that the aberrant activation of cytosolic DNA and its receptors plays a crucial role in vascular inflammation and dysfunction. Specifically, Absent in Melanoma 2 (AIM2), an intracellular DNA receptor, can trigger the inflammasome pathway, leading to extracellular matrix destruction. In this investigation, we delved into the mechanism underlying AIM2 activation in TAAD development and explored the potential of exosomes to impede TAAD progression by suppressing AIM2 expression. Our findings revealed that heightened AIM2 expression and activation contribute to TAAD development by fostering vascular inflammation and disrupting vascular homeostasis. Activated AIM2 induces pyroptosis through the recruitment of the deubiquitination enzyme USP21, which stabilizes AIM2 by reducing its ubiquitination and degradation. Moreover, we demonstrated that exosome-derived miR-485-5p exerts an anti-inflammatory and protective effect on the thoracic aorta by inhibiting AIM2 activation. This study introduces novel perspectives for the treatment of TAAD.