bioRxiv · 10.1101/2025.03.12.642840
Interstitial fluid transport dynamics predict glioblastoma invasion and progression
Abstract
Glioblastoma is characterized by aggressive infiltration into surrounding brain tissue, hindering complete surgical resection and contributing to poor patient outcomes. Identifying tumor-specific invasion patterns is essential for advancing our understanding of glioblastoma progression and improving surgical and radiotherapeutic strategies. Here, we leverage in vivo dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) to noninvasively quantify interstitial fluid velocity, direction, and diffusion within and around glioblastomas. We introduce a novel vector-based pathline analysis to trace downstream accumulation of fluid flow originating from the tumor core, providing a spatially explicit perspective on local flow patterns. We find that localized fluid transport metrics predict glioblastoma invasion and progression, offering a new framework to non-invasively identify high-risk regions and guide targeted treatment approaches. One sentence summaryInvasion and progression of glioblastoma can be predicted with interstitial fluid flow patterns via magnetic resonance imaging.
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Carman-Esparza, C. M., Stine, C. A., Atay, N., Kingsmore, K. M., Wang, M., Woodall, R. T., Rockne, R. C., Cunningham, J. J., Munson, J. M.. 2025-03-14. Interstitial fluid transport dynamics predict glioblastoma invasion and progression. https://doi.org/10.1101/2025.03.12.642840
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