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Author Spotlight: Using Zebrafish to Explore Microglia Migration During Brain Development
Published on: May 17, 2024
Long-term characterization of activated microglia/macrophages facilitating the development of experimental brain
Sha Qiao1,2, Yuan Qian1,2, Guoqiang Xu1,2
1Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Room G304, Wuhan, 430074, Hubei, China.
Background:
Microglia/macrophages (M/Ms) with multiple functions derived from distinct activation states are key surveillants maintaining brain homeostasis. However, their activation status and role during the brain metastasis of malignant tumors have been poorly characterized.
Methods:
Heterozygous CX3CR1-GFP transgenic mice were used to visualize the dynamic changes of M/Ms during the development of experimental brain metastasis through long-term intravital imaging equipped with redesigned bilateral cranial windows. The occurrence of experimental brain metastasis was evaluated after M/Ms were depleted with PLX3397, a CSF-1R inhibitor. The possible mediators of M/Ms in facilitating the brain metastasis were determined using reverse transcription-PCR, immunofluorescence, correlational analysis, and MMP inhibition.
Results:
Here, we showed that M/Ms were persistently activated and facilitated the formation of melanoma brain metastasis in vivo. We observed that M/Ms gradually and massively accumulated in the metastasis, with a 2.89-fold increase. To precisely depict the dynamic changes in the activation state of M/Ms, we defined the branching parameter to quantify their morphological alterations. The quantitative data showed that the extent of activation of M/Ms in metastatic foci was enhanced, with a 2.27-fold increase from day 1 to day 21. Along with the activation, the M/Ms increased their moving velocity (4.15-fold) and established a rapid, confined, and discontinuous motility behavior. The occurrence of melanoma brain metastasis was significantly hindered under M/M elimination, indicating the key role of M/Ms in the experimental brain metastasis. Interestingly, we found that M/Ms highly expressed matrix metalloproteinase 3 (MMP3), which were strongly correlated with M/M activation and the decrease of tight junction protein zonula occludens-1 (ZO-1). An MMP inhibitor moderately decreased the occurrence of melanoma brain metastasis, suggesting that MMP3 secreted by M/Ms may facilitate melanoma cell growth.
Conclusions:
Our results indicated that the activated M/Ms were essential in the development of melanoma brain metastasis, suggesting that M/Ms are a potential therapeutic target for tumor brain metastasis.
Insights
Activated microglia/macrophages (M/Ms) promote melanoma brain metastasis by increasing motility and expressing MMP3. Eliminating M/Ms significantly hinders metastasis, highlighting them as a therapeutic target for brain tumors.
Area of Science:
- Neuroscience
- Immunology
- Oncology
Background:
- Microglia/macrophages (M/Ms) are crucial for brain homeostasis but their role in brain metastasis is unclear.
- Understanding M/M activation states is key to characterizing their function in malignant tumor spread.
Purpose of the Study:
- To investigate the dynamic changes and role of M/Ms during experimental melanoma brain metastasis.
- To identify M/M-derived mediators that facilitate brain metastasis.
Main Methods:
- Utilized CX3CR1-GFP mice for intravital imaging of M/M dynamics.
- Depleted M/Ms using PLX3397 (CSF-1R inhibitor) to assess their role in metastasis occurrence.
- Analyzed M/M mediators via RT-PCR, immunofluorescence, and MMP inhibition.
Main Results:
- M/Ms were persistently activated and accumulated in metastatic sites, showing increased motility and morphological changes.
- M/M depletion significantly reduced melanoma brain metastasis.
- M/Ms expressed matrix metalloproteinase 3 (MMP3), which correlated with M/M activation and decreased tight junction protein ZO-1, suggesting MMP3 facilitates metastasis.
Conclusions:
- Activated M/Ms are essential for melanoma brain metastasis development.
- Targeting M/Ms represents a potential therapeutic strategy for combating brain metastasis.
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