人类肺泡 I 型细胞中与衰老相关的分子变化

Xue Liu, Xuexi Zhang, Jiurong Liang, Paul W Noble, Dianhua Jiang
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摘要

人类肺泡 I 型(AT1)细胞是一种特化的上皮细胞,分布在肺泡中进行气体交换的地方。AT1细胞的主要功能不仅是促进肺内空气和血液之间有效的气体交换,还有助于肺泡结构的完整性,以维持肺功能和平衡。衰老对人类 AT1 细胞的结构、功能和再生能力有显著影响。然而,我们对驱动 AT1 细胞发生这些与年龄相关变化的分子机制的了解仍然有限。利用我们最近在健康人肺中生成的单细胞转录组学数据集,我们在老年肺的 AT1 细胞中发现了一系列显著的分子变化。值得注意的是,衰老的 AT1 细胞表现出细胞衰老和趋化因子基因表达增加,同时上皮特征减弱,如细胞连接、内吞和肺母质组基因表达减少。基因组分析还表明,衰老的 AT1 细胞对凋亡具有抵抗力,而凋亡是 AT1 细胞更替和更新的重要机制,从而确保肺泡的完整性和功能。要全面阐明这些变化对 AT1 细胞的影响,必须对其进行进一步研究,这对于开发有效疗法以保护肺功能和促进健康老龄化也是不可或缺的。
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Aging-Associated Molecular Changes in Human Alveolar Type I Cells.

Human alveolar type I (AT1) cells are specialized epithelial cells that line the alveoli in the lungs where gas exchange occurs. The primary function of AT1 cells is not only to facilitate efficient gas exchange between the air and the blood in the lungs, but also to contribute to the structural integrity of the alveoli to maintain lung function and homeostasis. Aging has notable effects on the structure, function, and regenerative capacity of human AT1 cells. However, our understanding of the molecular mechanisms driving these age-related changes in AT1 cells remains limited. Leveraging a recent single-cell transcriptomics dataset we generated on healthy human lungs, we identified a series of significant molecular alterations in AT1 cells from aged lungs. Notably, the aged AT1 cells exhibited increased cellular senescence and chemokine gene expression, alongside diminished epithelial features such as decreases in cell junctions, endocytosis, and pulmonary matrisome gene expression. Gene set analyses also indicated that aged AT1 cells were resistant to apoptosis, a crucial mechanism for turnover and renewal of AT1 cells, thereby ensuring alveolar integrity and function. Further research on these alterations is imperative to fully elucidate the impact on AT1 cells and is indispensable for developing effective therapies to preserve lung function and promote healthy aging.

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