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Single-cell transcriptional and epigenetic dynamics during aortic aging in mice

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NIAID Data Ecosystem2026-03-13 收录
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The impact of vascular aging (VA) has been extensively studied, yet little is known regarding the cellular and molecular mechanism underlying age-related VA in aortic cellular subpopulations. Herein, we analyzed transcriptomes and transposase-accessible chromatin profiles from aortas of 4-, 26-, and 86-week-old mice using single-cell RNA sequencing and ATAC sequencing. By integrating the heterogeneous transcriptome and chromatin accessibility data, we identified cell-specific transcription factor (TF) regulatory networks and open chromatin states. Moreover, we found that aortic aging affects cell interactions, inflammation, cell type composition and dysregulation of transcriptional control. Endothelial cell (EC) 1 has higher gene set activity related to senescence, aging, and adipogenesis than EC 2. Construction of senescence trajectories showed that the senescence of EC 1 and fibroblasts is associated with distinct TF open chromatin states and an mRNA expression model. Our data provide a system-wide model for transcriptional and epigenetic regulation during aortic aging at single-cell resolution. Transcriptomes and transposase-accessible chromatin profiles from aortas of two 4-week-old, two 26-week-old, and two 86-week-old mice

创建时间:
2022-02-16
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数据集介绍
Single-cell transcriptional and epigenetic dynamics during aortic aging in mice 数据集图片
背景与挑战
背景概述
该数据集通过单细胞RNA测序和ATAC测序,分析了4、26和86周龄小鼠主动脉的转录组和染色质可及性,揭示了血管衰老过程中细胞特异性的转录因子调控网络、细胞类型组成变化及衰老轨迹,为理解主动脉衰老的细胞和分子机制提供了系统级模型。
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