A Longitudinal PET/MRI Study of Colony-Stimulating Factor 1 Receptor-Mediated Microglia Depletion in Experimental

Cristina Barca1, Amanda J Kiliaan2, Claudia Foray3

  • 1European Institute for Molecular Imaging, University of Münster, Münster, Germany; ahjacobs@uni-muenster.de cristina.barca@uni-muenster.de.

Insights

Chronic inhibition of colony-stimulating factor 1 receptor (CSF-1R) reduced neuroinflammation markers after stroke. Longitudinal PET/MRI revealed treatment effects on reperfusion and motor function, highlighting the need to define optimal therapeutic timing.

Area of Science:

  • Neuroscience
  • Immunology
  • Radiology

Background:

  • Microglia-driven neuroinflammation post-stroke exacerbates damage but also aids recovery.
  • Assessing microglia-targeted therapies requires longitudinal imaging to evaluate efficacy and mechanism.
  • Translocator protein (TSPO) is a key marker for neuroinflammation.

Purpose of the Study:

  • To investigate the impact of chronic colony-stimulating factor 1 receptor (CSF-1R) inhibitor-mediated microglia depletion on TSPO-dependent neuroinflammation.
  • To assess cerebrovascular parameters and therapeutic effects using PET/MRI.
  • To evaluate the relationship between microglia modulation, neuroinflammation, and functional outcomes.

Main Methods:

  • Forty mice underwent middle cerebral artery occlusion (MCAO) and were randomized to control or CSF-1R inhibitor (PLX5622) treatment.
  • Longitudinal TSPO PET imaging (18F-DPA-714) and MRI (T2, perfusion, diffusion-weighted imaging) were performed at various time points post-ischemia.
  • Ex vivo analysis included immunoreactivity and gene expression to characterize the inflammatory milieu.

Main Results:

  • Long-term CSF-1R inhibition transiently decreased the TSPO PET signal, with residual signal attributed to resistant microglia populations.
  • A global dampening of the neuroinflammatory response was suggested by reduced pro- and anti-inflammatory markers.
  • MRI revealed treatment-induced effects on reperfusion and tissue homeostasis, correlating with impaired motor function at later stages.

Conclusions:

  • Longitudinal TSPO PET/MRI is effective for assessing target engagement and optimizing drug efficiency in neuroinflammation studies.
  • PLX5622 demonstrates promising immunomodulatory effects in the context of stroke.
  • Defining the optimal therapeutic time window for CSF-1R inhibitor application is crucial for maximizing benefits and minimizing potential side effects.

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