Leptomeningeal disease and tumor dissemination in a murine diffuse intrinsic pontine glioma model: implications for the study of the tumor-cerebrospinal fluid-ependymal microenvironment

Author:

Pan Shelei1,Ye Dezhuang2,Yue Yimei34,Yang Lihua5,Pacia Christopher P3,DeFreitas Dakota1,Esakky Prabagaran1,Dahiya Sonika6ORCID,Limbrick David D15,Rubin Joshua B57,Chen Hong234,Strahle Jennifer M158ORCID

Affiliation:

1. Department of Neurosurgery, Washington University School of Medicine , Saint Louis, Missouri , USA

2. Department of Mechanical Engineering and Materials Science, Washington University in St. Louis , Saint Louis, Missouri , USA

3. Department of Biomedical Engineering, Washington University in St. Louis , Saint Louis, Missouri , USA

4. Department of Radiation Oncology, Washington University School of Medicine , Saint Louis, Missouri , USA

5. Department of Pediatrics, Washington University in St. Louis , St Louis, Missouri , USA

6. Department of Pathology and Immunology, Washington University School of Medicine , St. Louis, Missouri , USA

7. Department of Neuroscience, Washington University in St. Louis , St Louis, Missouri , USA

8. Department of Orthopedic Surgery, Washington University School of Medicine , St Louis, Missouri , USA

Abstract

Abstract Background Leptomeningeal disease and hydrocephalus are present in up to 30% of patients with diffuse intrinsic pontine glioma (DIPG), however there are no animal models of cerebrospinal fluid (CSF) dissemination. As the tumor–CSF–ependymal microenvironment may play an important role in tumor pathogenesis, we identified characteristics of the Nestin-tumor virus A (Nestin-Tva) genetically engineered mouse model that make it ideal to study the interaction of tumor cells with the CSF and its associated pathways with implications for the development of treatment approaches to address CSF dissemination in DIPG. Methods A Nestin-Tva model of DIPG utilizing the 3 most common DIPG genetic alterations (H3.3K27M, PDGF-B, and p53) was used for this study. All mice underwent MR imaging and a subset underwent histopathologic analysis with H&E and immunostaining. Results Tumor dissemination within the CSF pathways (ventricles, leptomeninges) from the subependyma was present in 76% (25/33) of mice, with invasion of the choroid plexus, disruption of the ciliated ependyma and regional subependymal fluid accumulation. Ventricular enlargement consistent with hydrocephalus was present in 94% (31/33). Ventricle volume correlated with region-specific transependymal CSF flow (periventricular T2 signal), localized anterior to the lateral ventricles. Conclusions This is the first study to report CSF pathway tumor dissemination associated with subependymal tumor in an animal model of DIPG and is representative of CSF dissemination seen clinically. Understanding the CSF–tumor–ependymal microenvironment has significant implications for treatment of DIPG through targeting mechanisms of tumor spread within the CSF pathways.

Funder

National Institutes of Health

Prayers From Maria Foundation

Publisher

Oxford University Press (OUP)

Subject

Electrical and Electronic Engineering,Building and Construction

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