Women's Guild Lung Institute, Department of Medicine.
The Board of Governors Regenerative Medicine Institute, Department of Biomedical Sciences, and.
Am J Respir Crit Care Med. 2021 Mar 15;203(6):707-717. doi: 10.1164/rccm.202004-1274OC.
Idiopathic pulmonary fibrosis (IPF) is an insidious and fatal interstitial lung disease associated with declining pulmonary function. Accelerated aging, loss of epithelial progenitor cell function and/or numbers, and cellular senescence are implicated in the pathogenies of IPF. We sought to investigate the role of alveolar type 2 (AT2) cellular senescence in initiation and/or progression of pulmonary fibrosis and therapeutic potential of targeting senescence-related pathways and senescent cells. Epithelial cells of 9 control donor proximal and distal lung tissues and 11 IPF fibrotic lung tissues were profiled by single-cell RNA sequencing to assesses the contribution of epithelial cells to the senescent cell fraction for IPF. A novel mouse model of conditional AT2 cell senescence was generated to study the role of cellular senescence in pulmonary fibrosis. We show that AT2 cells isolated from IPF lung tissue exhibit characteristic transcriptomic features of cellular senescence. We used conditional loss of in adult mouse AT2 cells to initiate a program of p53-dependent cellular senescence, AT2 cell depletion, and spontaneous, progressive pulmonary fibrosis. We establish that senescence rather than loss of AT2 cells promotes progressive fibrosis and show that either genetic or pharmacologic interventions targeting p53 activation or senescence block fibrogenesis. Senescence of AT2 cells is sufficient to drive progressive pulmonary fibrosis. Early attenuation of senescence-related pathways and elimination of senescent cells are promising therapeutic approaches to prevent pulmonary fibrosis.
特发性肺纤维化(IPF)是一种隐匿性和致命的间质性肺疾病,与肺功能下降有关。加速老化、上皮祖细胞功能和/或数量丧失以及细胞衰老与 IPF 的发病机制有关。我们试图研究肺泡 2 型(AT2)细胞衰老在肺纤维化的起始和/或进展中的作用,以及针对衰老相关途径和衰老细胞的治疗潜力。通过单细胞 RNA 测序对 9 个对照供体近端和远端肺组织和 11 个 IPF 纤维化肺组织的上皮细胞进行分析,以评估上皮细胞对 IPF 中衰老细胞分数的贡献。我们生成了一种新型的条件性 AT2 细胞衰老小鼠模型,以研究细胞衰老在肺纤维化中的作用。我们表明,从 IPF 肺组织中分离的 AT2 细胞表现出细胞衰老的特征转录组特征。我们使用成年小鼠 AT2 细胞中条件性缺失来启动 p53 依赖性细胞衰老、AT2 细胞耗竭和自发性、进行性肺纤维化的程序。我们确定衰老而不是 AT2 细胞的丢失促进进行性纤维化,并表明针对 p53 激活或衰老的遗传或药物干预都可以阻止纤维化形成。AT2 细胞的衰老足以驱动进行性肺纤维化。早期衰减衰老相关途径和消除衰老细胞是预防肺纤维化的有前途的治疗方法。