过剩1
葡萄糖转运蛋白
星形胶质细胞
葡萄糖转运蛋白1型
葡萄糖摄取
碳水化合物代谢
神经保护
过剩3
生物
内分泌学
内科学
星形胶质增生
运输机
神经科学
医学
中枢神经系统
生物化学
基因
胰岛素
作者
Laetitia Thieren,Henri S. Zanker,Jeanne Droux,Urvashi Dalvi,Matthias T. Wyss,Rebecca Waag,Pierre‐Luc Germain,Lukas von Ziegler,Zoe J. Looser,Ladina Hösli,Luca Ravotto,E. Dale Abel,Johannes Bohacek,Susanne Wegener,L. Felipe Barros,Mohamad El Amki,Bruno Weber,Aiman S. Saab
标识
DOI:10.1038/s41467-025-59400-2
摘要
Brain activity relies on a steady supply of blood glucose. Astrocytes express glucose transporter 1 (GLUT1), considered their primary route for glucose uptake to sustain metabolic and antioxidant support for neurons. While GLUT1 deficiency causes severe developmental impairments, its role in adult astrocytes remains unclear. Here, we show that astrocytes and neurons tolerate the inducible, astrocyte-specific deletion of GLUT1 in adulthood. Sensorimotor and memory functions remain intact in male GLUT1 cKO mice, indicating that GLUT1 loss does not impair behavior. Despite GLUT1 loss, two-photon glucose sensor imaging reveals that astrocytes maintain normal resting glucose levels but exhibit a more than two-fold increase in glucose consumption, indicating enhanced metabolic activity. Notably, male GLUT1 cKO mice display reduced infarct volumes following stroke, suggesting a neuroprotective effect of increased astrocytic glucose metabolism. Our findings reveal metabolic adaptability in astrocytes, ensuring glucose uptake and neuronal support despite the absence of their primary transporter.
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