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Intracarotid Cancer Cell Injection to Produce Mouse Models of Brain Metastasis
Published on: February 8, 2017
Melanoma-Secreted Amyloid Beta Suppresses Neuroinflammation and Promotes Brain Metastasis
Kevin Kleffman1, Grace Levinson1, Indigo V L Rose2
1Department of Pathology, NYU School of Medicine, New York, New York.
Abstract:
Brain metastasis is a significant cause of morbidity and mortality in multiple cancer types and represents an unmet clinical need. The mechanisms that mediate metastatic cancer growth in the brain parenchyma are largely unknown. Melanoma, which has the highest rate of brain metastasis among common cancer types, is an ideal model to study how cancer cells adapt to the brain parenchyma. Our unbiased proteomics analysis of melanoma short-term cultures revealed that proteins implicated in neurodegenerative pathologies are differentially expressed in melanoma cells explanted from brain metastases compared with those derived from extracranial metastases. We showed that melanoma cells require amyloid beta (Aβ) for growth and survival in the brain parenchyma. Melanoma-secreted Aβ activates surrounding astrocytes to a prometastatic, anti-inflammatory phenotype and prevents phagocytosis of melanoma by microglia. Finally, we demonstrate that pharmacologic inhibition of Aβ decreases brain metastatic burden.
Significance:
Our results reveal a novel mechanistic connection between brain metastasis and Alzheimer's disease, two previously unrelated pathologies; establish Aβ as a promising therapeutic target for brain metastasis; and demonstrate suppression of neuroinflammation as a critical feature of metastatic adaptation to the brain parenchyma. This article is highlighted in the In This Issue feature, p. 1171.
Insights
Melanoma brain metastases utilize amyloid beta (Aβ) for growth by altering brain cells. Inhibiting Aβ reduces brain tumor burden, offering a new therapeutic strategy for brain metastasis.
Area of Science:
- Neuroscience
- Oncology
- Pathology
Background:
- Brain metastasis is a major cause of cancer mortality.
- Mechanisms of cancer growth in the brain remain largely unknown.
- Melanoma frequently metastasizes to the brain, serving as a model for study.
Purpose of the Study:
- Investigate the mechanisms of melanoma brain metastasis.
- Identify molecular targets for treating brain metastasis.
Main Methods:
- Unbiased proteomics analysis of melanoma cells from brain and extracranial metastases.
- Assessed the role of amyloid beta (Aβ) in melanoma brain metastasis.
- Evaluated the effect of Aβ inhibition on brain metastatic burden.
Main Results:
- Proteins linked to neurodegenerative diseases were differentially expressed in brain metastatic melanoma.
- Melanoma cells require amyloid beta (Aβ) for growth and survival in the brain.
- Melanoma-secreted Aβ promotes a prometastatic astrocyte phenotype and inhibits microglial phagocytosis.
- Pharmacologic inhibition of Aβ reduced the brain metastatic burden.
Conclusions:
- A novel link exists between brain metastasis and Alzheimer's disease pathology.
- Amyloid beta (Aβ) is a potential therapeutic target for brain metastasis.
- Suppression of neuroinflammation is crucial for metastatic adaptation in the brain.

