Neurology Clinic and National Center for Tumor Diseases, University Hospital Heidelberg, Heidelberg, Germany.
Department of Functional Neuroanatomy, Institute for Anatomy and Cell Biology, Heidelberg University, Heidelberg, Germany.
Nat Commun. 2024 Sep 10;15(1):7383. doi: 10.1038/s41467-024-51432-4.
Intravital 2P-microscopy enables the longitudinal study of brain tumor biology in superficial mouse cortex layers. Intravital microscopy of the white matter, an important route of glioblastoma invasion and recurrence, has not been feasible, due to low signal-to-noise ratios and insufficient spatiotemporal resolution. Here, we present an intravital microscopy and artificial intelligence-based analysis workflow (Deep3P) that enables longitudinal deep imaging of glioblastoma up to a depth of 1.2 mm. We find that perivascular invasion is the preferred invasion route into the corpus callosum and uncover two vascular mechanisms of glioblastoma migration in the white matter. Furthermore, we observe morphological changes after white matter infiltration, a potential basis of an imaging biomarker during early glioblastoma colonization. Taken together, Deep3P allows for a non-invasive intravital investigation of brain tumor biology and its tumor microenvironment at subcortical depths explored, opening up opportunities for studying the neuroscience of brain tumors and other model systems.
活体 2P 显微镜能够对浅层小鼠皮层中的脑肿瘤生物学进行纵向研究。由于信噪比低和时空分辨率不足,对重要的神经胶质瘤浸润和复发途径——脑白质进行活体显微镜检查尚未可行。在这里,我们提出了一种基于活体显微镜和人工智能的分析工作流程(Deep3P),该流程能够对脑肿瘤进行长达 1.2mm 的纵向深层成像。我们发现血管周围浸润是进入胼胝体的首选浸润途径,并揭示了脑白质中神经胶质瘤迁移的两种血管机制。此外,我们在白质浸润后观察到形态学变化,这可能是早期神经胶质瘤定植期间成像生物标志物的基础。总之,Deep3P 允许在亚皮层深度进行非侵入性的脑肿瘤生物学及其肿瘤微环境的活体研究,为研究脑肿瘤和其他模型系统的神经科学开辟了机会。