活体显微镜检查
胰岛
硬脑膜
小岛
解剖
医学
病理
血流
生物医学工程
移植
中枢神经系统
胰腺
化学
生物
神经科学
临床前影像学
磁共振成像
体内
动力学(音乐)
髓鞘
分泌物
生物相容性材料
共焦显微镜
作者
Philip Tröster,Montse Visa,Ismael Valladolid Acebes,Martin Kohler,Per-Olof Berggren
标识
DOI:10.1038/s41467-025-66057-4
摘要
Abstract By transplanting pancreatic islets onto the dura mater of the mouse brain, we establish a microscopy platform that enables longitudinal intravital imaging of otherwise optically inaccessible tissue. The system combines a cranial window with an air-cushioned floating arena and stable head fixation, providing high mechanical stability for repeated single-cell Ca 2+ imaging sessions of up to 90 min in awake mice. We show that dura mater-engrafted islets integrate with host vascular and neural networks, and that human islet grafts secrete C-peptide in response to glucose stimulation, indicating metabolic integration. With this platform, we monitor anesthesia-induced changes in capillary blood flow and islet Ca 2+ dynamics. In awake mice, following subcutaneous glucose injection, we characterize intracellular Ca 2+ oscillations in insulin-secreting β-cells, revealing changes in amplitude, period, and plateau fraction while network coordination remains stable. The dura mater thus offers long-term optical access to functional endocrine tissue, facilitating stable intravital imaging under anesthesia-free, physiological conditions.
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