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The Multifarious Role of Microglia in Brain Metastasis
Manuel Sarmiento Soto1,2,3, Nicola R Sibson1
1Cancer Research UK and Medical Research Council Oxford Institute for Radiation Oncology, Department of Oncology, University of Oxford, Oxford, United Kingdom.
Abstract:
The immune landscape in brain metastasis is a very heterogeneous framework. Amongst a broad plethora of cells within the tumor microenvironment, the presence of activated microglia has been perfectly described. The innate role of microglial cells is to detect and eliminate any insults that may disturb the regular behavior of the brain. As part of its defensive role, it releases pro- and anti-inflammatory cytokines that aim to modulate the inflammatory scenario at the metastatic foci. However, the long term effects that these cells may exert on the metastatic progression is not clear. One of the biggest challenges in the field is to distinguish between brain resident microglial cells and infiltrated bone-marrow derived macrophages. Part of this issue is the fact that both cell types share similar phenotypes. Current studies are based on the modulation of the immune response against cancer cells (immunotherapy). However, most of current clinical trials and newly developed drugs focus on the adaptive immune response (e.g., immune blockade check-points). Additionally, the unique structure of the central nervous system with the presence of the blood-brain barrier have hindered a significant advance in novel therapies against brain metastasis. In this manuscript, we describe current advances in characterization of tumor-associated microglia and macrophages, the importance of microglia during the anti-cancerous response, and the future direction for the development of new strategies against this complex disease.
Insights
Brain metastasis involves complex immune cells like microglia. Understanding their role and differentiating them from macrophages is key for developing new immunotherapies against brain tumors.
Area of Science:
- Neuroscience
- Immunology
- Oncology
Background:
- Brain metastasis presents a heterogeneous immune microenvironment.
- Activated microglia, crucial for brain defense, play an unclear role in metastatic progression.
- Distinguishing between brain-resident microglia and bone-marrow-derived macrophages is challenging due to shared phenotypes.
Purpose of the Study:
- To review current understanding of tumor-associated microglia and macrophages in brain metastasis.
- To highlight the importance of microglia in anti-cancerous immune responses.
- To discuss future directions for novel therapeutic strategies.
Main Methods:
- Review of current literature on microglia and macrophages in brain metastasis.
- Analysis of challenges in distinguishing myeloid cell populations within the brain tumor microenvironment.
- Discussion of current immunotherapy approaches and their limitations.
Main Results:
- Microglia exhibit diverse roles in the brain metastatic microenvironment.
- Current immunotherapies primarily target the adaptive immune response, with limited success in brain metastasis.
- The blood-brain barrier poses a significant hurdle for therapeutic interventions.
Conclusions:
- Further research is needed to elucidate the long-term effects of microglia on metastatic progression.
- Developing strategies to overcome the blood-brain barrier is crucial for effective brain metastasis treatment.
- Targeting microglia and macrophages offers a promising avenue for future brain metastasis therapies.
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