Lung and Regenerative Medicine Institutes, Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, California.
Genentech Inc., San Francisco, California.
Am J Respir Crit Care Med. 2020 Dec 1;202(11):1540-1550. doi: 10.1164/rccm.201904-0792OC.
Declining lung function in patients with interstitial lung disease is accompanied by epithelial remodeling and progressive scarring of the gas-exchange region. There is a need to better understand the contribution of basal cell hyperplasia and associated mucosecretory dysfunction to the development of idiopathic pulmonary fibrosis (IPF). We sought to decipher the transcriptome of freshly isolated epithelial cells from normal and IPF lungs to discern disease-dependent changes within basal stem cells. Single-cell RNA sequencing was used to map epithelial cell types of the normal and IPF human airways. Organoid and air-liquid interface cultures were used to investigate functional properties of basal cell subtypes. We found that basal cells included multipotent and secretory primed subsets in control adult lung tissue. Secretory primed basal cells include an overlapping molecular signature with basal cells obtained from the distal lung tissue of IPF lungs. We confirmed that NOTCH2 maintains undifferentiated basal cells and restricts basal-to-ciliated differentiation, and we present evidence that NOTCH3 functions to restrain secretory differentiation. Basal cells are dynamically regulated in disease and are specifically biased toward the expansion of the secretory primed basal cell subset in IPF. Modulation of basal cell plasticity may represent a relevant target for therapeutic intervention in IPF.
间质性肺疾病患者的肺功能下降伴随着上皮细胞重塑和气体交换区域的进行性瘢痕形成。需要更好地了解基底细胞增生及其相关粘液分泌功能障碍对特发性肺纤维化 (IPF) 发展的贡献。我们试图破译从正常和 IPF 肺中分离的上皮细胞的转录组,以辨别基底干细胞中的疾病相关变化。单细胞 RNA 测序用于绘制正常和 IPF 人气道的上皮细胞类型。类器官和气液界面培养用于研究基底细胞亚型的功能特性。我们发现,在对照成人肺组织中,基底细胞包括多能和分泌前体细胞亚群。分泌前体细胞亚群包含与从 IPF 肺远端肺组织获得的基底细胞重叠的分子特征。我们证实 NOTCH2 维持未分化的基底细胞并限制基底细胞向纤毛细胞的分化,并且我们提供了证据表明 NOTCH3 可抑制分泌分化。在疾病中,基底细胞是动态调节的,并且在 IPF 中特别偏向于扩张分泌前体细胞亚群。基底细胞可塑性的调节可能是 IPF 治疗干预的一个相关靶点。