Related Experiment Video
Updated: Jul 16, 2025

Modeling Brain Metastasis by Internal Carotid Artery Injection of Cancer Cells
Published on: August 2, 2022
Structural and functional vascular dysfunction within brain metastases is linked to pembrolizumab inefficacy
Abstract:
Structurally and functionally aberrant vasculature is a hallmark of tumor angiogenesis and treatment resistance. Given the synergistic link between aberrant tumor vasculature and immunosuppression, we analyzed perfusion MRI for 44 patients with brain metastases (BM) undergoing treatment with pembrolizumab. To date, vascular-immune communication, or the relationship between immune checkpoint inhibitor (ICI) efficacy and vascular architecture, has not been well-characterized in human imaging studies. We found that ICI-responsive BM possessed a structurally balanced vascular makeup, which was linked to improved vascular efficiency and an immune-stimulatory microenvironment. In contrast, ICI-resistant BM were characterized by a lack of immune cell infiltration and a highly aberrant vasculature dominated by large-caliber vessels. Peri-tumor region analysis revealed early functional changes predictive of ICI resistance before radiographic evidence on conventional MRI. This study was one of the largest functional imaging studies for BM and establishes a foundation for functional studies that illuminate the mechanisms linking patterns of vascular architecture with immunosuppression, as targeting these aspects of cancer biology may serve as the basis for future combination treatments.
Insights
Immune checkpoint inhibitors (ICIs) show better efficacy in brain metastases (BM) with balanced vasculature, unlike resistant tumors with aberrant vessels. Perfusion MRI revealed early functional changes predicting treatment response.
Area of Science:
- Oncology
- Radiology
- Immunology
Background:
- Aberrant tumor vasculature is linked to tumor angiogenesis, treatment resistance, and immunosuppression.
- Understanding vascular-immune communication is crucial for optimizing immune checkpoint inhibitor (ICI) efficacy.
- The relationship between vascular architecture and ICI response in human brain metastases (BM) requires further characterization.
Conclusions:
- Structurally balanced vasculature is associated with ICI responsiveness in brain metastases.
- Aberrant tumor vasculature and lack of immune infiltration characterize ICI resistance.
- Functional imaging, like perfusion MRI, can identify early predictors of treatment response and guide future combination therapies targeting vascular and immune aspects of cancer.

