生物
细胞生物学
瞬态(计算机编程)
细胞
细胞培养
信号转导
衰老
遗传学
瞬态分析
突变
作者
L. Ashley Watson,Zoe Adelsheim,Mackenzie J. Carter,Grace T. Carter,Karen L. Jimenez-Reyes,Huijie Du,Ziqing Zhu,David B. Berry,Mia C. Paredez,Rania H. Palaniappan,John M. Augustine,Hiruy S. Meharena
出处
期刊:Cell
[Cell Press]
日期:2026-06-10
卷期号:189 (14): 4295-4309.e6
标识
DOI:10.1016/j.cell.2026.05.022
摘要
Establishment of the blood-brain barrier (BBB) and blood-cerebrospinal fluid (CSF) barrier requires precise coordination between diverse cell types to protect and nourish the brain. Here, we identify developmentally programmed p21 + senescent cells that exhibit divergent senescence-associated features across these two brain interfaces in mice. In the choroid plexus (ChP), epithelial cells adopt a lifelong, non-inflammatory senescent state associated with CSF production and blood-CSF barrier integrity. In contrast, vascular endothelial cells and brain-resident macrophages transiently exhibit pro-inflammatory senescence profiles during brain vascularization, with reciprocal signaling linked to angiogenic patterning and extracellular matrix assembly. The ablation of p21 + cells during mid-gestation disrupts brain vascular patterning and ChP integrity, which results in hemorrhage, impaired CSF production, and ventricular collapse. These findings indicate that embryonic senescent cells adopt divergent transient and long-lived states that support brain-barrier formation and homeostasis, thus reframing the prevailing view of persistent senescence beyond solely a pathological state.
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