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Published on: November 23, 2014
Monocyte-Derived Macrophages Contribute to Spontaneous Long-Term Functional Recovery after Stroke in Mice
Somsak Wattananit1, Daniel Tornero1, Nadine Graubardt2
1Laboratory of Stem Cells and Restorative Neurology and.
Abstract:
Stroke is a leading cause of disability and currently lacks effective therapy enabling long-term functional recovery. Ischemic brain injury causes local inflammation, which involves both activated resident microglia and infiltrating immune cells, including monocytes. Monocyte-derived macrophages (MDMs) exhibit a high degree of functional plasticity. Here, we determined the role of MDMs in long-term spontaneous functional recovery after middle cerebral artery occlusion in mice. Analyses by flow cytometry and immunocytochemistry revealed that monocytes home to the stroke-injured hemisphere., and that infiltration peaks 3 d after stroke. At day 7, half of the infiltrating MDMs exhibited a bias toward a proinflammatory phenotype and the other half toward an anti-inflammatory phenotype, but during the subsequent 2 weeks, MDMs with an anti-inflammatory phenotype dominated. Blocking monocyte recruitment using the anti-CCR2 antibody MC-21 during the first week after stroke abolished long-term behavioral recovery, as determined in corridor and staircase tests, and drastically decreased tissue expression of anti-inflammatory genes, including TGFβ, CD163, and Ym1. Our results show that spontaneously recruited monocytes to the injured brain early after the insult contribute to long-term functional recovery after stroke.
Significance Statement:
For decades, any involvement of circulating immune cells in CNS repair was completely denied. Only over the past few years has involvement of monocyte-derived macrophages (MDMs) in CNS repair received appreciation. We show here, for the first time, that MDMs recruited to the injured brain early after ischemic stroke contribute to long-term spontaneous functional recovery through inflammation-resolving activity. Our data raise the possibility that inadequate recruitment of MDMs to the brain after stroke underlies the incomplete functional recovery seen in patients and that boosting homing of MDMs with an anti-inflammatory bias to the injured brain tissue may be a new therapeutic approach to promote long-term improvement after stroke.
Insights
Monocyte-derived macrophages (MDMs) are crucial for long-term stroke recovery. Blocking their early brain recruitment impairs functional recovery, suggesting MDMs promote healing through anti-inflammatory activity.
Area of Science:
- Neuroscience
- Immunology
- Regenerative Medicine
Background:
- Stroke is a major cause of disability with limited recovery therapies.
- Inflammation post-ischemic brain injury involves microglia and infiltrating immune cells like monocytes.
- Monocyte-derived macrophages (MDMs) are key immune cells with plastic functions.
Purpose of the Study:
- To investigate the role of MDMs in long-term functional recovery after ischemic stroke.
- To understand the phenotype and timing of MDM infiltration and polarization in the stroke-injured brain.
Main Methods:
- Middle cerebral artery occlusion (MCAO) model in mice.
- Flow cytometry and immunocytochemistry to analyze immune cell infiltration and phenotype.
- Behavioral tests (corridor and staircase) to assess functional recovery.
- Blocking monocyte recruitment using anti-CCR2 antibody MC-21.
Main Results:
- Monocytes infiltrate the stroke-injured hemisphere, peaking at 3 days post-stroke.
- MDMs shift from pro-inflammatory to anti-inflammatory phenotypes within 2 weeks.
- Blocking early monocyte recruitment abolished long-term behavioral recovery and reduced anti-inflammatory gene expression.
Conclusions:
- Recruited monocytes, differentiating into MDMs, are essential for spontaneous long-term functional recovery after stroke.
- MDM anti-inflammatory activity is critical for this recovery process.
- Therapeutic strategies enhancing MDM recruitment and anti-inflammatory function may improve stroke outcomes.

