周细胞
壁细胞
生物
中枢神经系统
神经科学
转基因小鼠
电池类型
脊髓
血脑屏障
转基因
病理
细胞
血管平滑肌
医学
内皮干细胞
遗传学
平滑肌
体外
内分泌学
基因
生物化学
作者
Guo X,Tida Ge,Siqing Xia,Wu H,Mark Colt,Xiaohu Xie,B Zhang,Jianxiong Zeng,J Chen,Daoben Zhu,Axel Montagne,Fang Gao,Zhen Zhao
标识
DOI:10.1101/2021.07.09.451694
摘要
Summary Perivascular mural cells including vascular smooth cells (VSMCs) and pericytes are integral components of the vascular system. In the central nervous system (CNS), pericytes are also known as the guardian of the blood-brain barrier, blood-spinal cord barrier and blood-retinal barrier, and play key roles in maintaining cerebrovascular and neuronal functions. However, the functional difference between CNS and peripheral pericytes has not been resolved at the genetic and molecular levels. Hence, the generation of reliable CNS pericyte-specific models and genetic tools remains very challenging. Here, we report a new CNS pericyte marker in mice. This cation-transporting ATPase 13A5 ( Atp13a5 ) marker is highly specific to the pericytes in brain, spinal cord and retina. We generated a transgenic model with a knock-in tdTomato reporter and Cre recombinase. The tdTomato reporter reliably labels the CNS pericytes, but not found in any other CNS cell types including closely related VSMCs, or in peripheral organs. More importantly, Atp13a5 is turned on at embryonic day E15, suggesting brain pericytes are shaped by the developing neural environment. We hope that the new tools will allow us to further explore the heterogeneity of pericytes and achieve a better understanding of CNS pericytes in health and diseases.
科研通智能强力驱动
Strongly Powered by AbleSci AI