A platform for research: civil engineering, architecture and urbanism
Endothelial Cells Mediated by STING Regulate Oligodendrogenesis and Myelination During Brain Development
AbstractOligodendrocyte precursor cells (OPCs) migrate extensively using blood vessels as physical scaffolds in the developing central nervous system. Although the association of OPCs with the vasculature is critical for migration, the regulatory mechanisms important for OPCs proliferative and oligodendrocyte development are unknown. Here, a correlation is demonstrated between the developing vasculature and OPCs response during brain development. Deletion of endothelial stimulator of interferon genes (STING) disrupts angiogenesis by inhibiting farnesyl‐diphosphate farnesyltransferase 1 (FDFT1) and thereby reducing cholesterol synthesis. Furthermore, the perturbation of metabolic homeostasis in endothelial cells increases interleukin 17D production which mediates the signal transduction from endothelial cells to OPCs, which inhibits oligodendrocyte development and myelination and causes behavioral abnormalities in adult mice. Overall, these findings indicate how the endothelial STING maintains metabolic homeostasis and contributes to oligodendrocyte precursor cells response in the developing neocortex.
Endothelial Cells Mediated by STING Regulate Oligodendrogenesis and Myelination During Brain Development
AbstractOligodendrocyte precursor cells (OPCs) migrate extensively using blood vessels as physical scaffolds in the developing central nervous system. Although the association of OPCs with the vasculature is critical for migration, the regulatory mechanisms important for OPCs proliferative and oligodendrocyte development are unknown. Here, a correlation is demonstrated between the developing vasculature and OPCs response during brain development. Deletion of endothelial stimulator of interferon genes (STING) disrupts angiogenesis by inhibiting farnesyl‐diphosphate farnesyltransferase 1 (FDFT1) and thereby reducing cholesterol synthesis. Furthermore, the perturbation of metabolic homeostasis in endothelial cells increases interleukin 17D production which mediates the signal transduction from endothelial cells to OPCs, which inhibits oligodendrocyte development and myelination and causes behavioral abnormalities in adult mice. Overall, these findings indicate how the endothelial STING maintains metabolic homeostasis and contributes to oligodendrocyte precursor cells response in the developing neocortex.
Endothelial Cells Mediated by STING Regulate Oligodendrogenesis and Myelination During Brain Development
Advanced Science
Wang, Wenwen (author) / Wang, Yanyan (author) / Su, Libo (author) / Zhang, Mengtian (author) / Zhang, Tianyu (author) / Zhao, Jinyue (author) / Ma, Hongyan (author) / Zhang, Dongming (author) / Ji, Fen (author) / Jiao, Ryan Dingli (author)
Advanced Science ; 11
2024-10-01
Article (Journal)
Electronic Resource
English
Wiley | 2024
|Endothelial PD‐1 Regulates Vascular Homeostasis and Oligodendrogenesis during Brain Development
Wiley | 2025
|Schwann cell development, differentiation and myelination
Online Contents | 1996
|Ganglioside Changes in Rat Medulla Oblongata during Myelination
British Library Online Contents | 1993
|