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Updated: Jan 30, 2026

Culture of Macrophage Colony-stimulating Factor Differentiated Human Monocyte-derived Macrophages
Published on: June 30, 2016
PET imaging of microglia by targeting macrophage colony-stimulating factor 1 receptor (CSF1R)
Andrew G Horti1, Ravi Naik2, Catherine A Foss2
1Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, MD 21287; ahorti1@jhmi.edu mpomper@jhmi.edu.
Abstract:
While neuroinflammation is an evolving concept and the cells involved and their functions are being defined, microglia are understood to be a key cellular mediator of brain injury and repair. The ability to measure microglial activity specifically and noninvasively would be a boon to the study of neuroinflammation, which is involved in a wide variety of neuropsychiatric disorders including traumatic brain injury, demyelinating disease, Alzheimer's disease (AD), and Parkinson's disease, among others. We have developed [11C]CPPC [5-cyano-N-(4-(4-[11C]methylpiperazin-1-yl)-2-(piperidin-1-yl)phenyl)furan-2-carboxamide], a positron-emitting, high-affinity ligand that is specific for the macrophage colony-stimulating factor 1 receptor (CSF1R), the expression of which is essentially restricted to microglia within brain. [11C]CPPC demonstrates high and specific brain uptake in a murine and nonhuman primate lipopolysaccharide model of neuroinflammation. It also shows specific and elevated uptake in a murine model of AD, experimental allergic encephalomyelitis murine model of demyelination and in postmortem brain tissue of patients with AD. Radiation dosimetry in mice indicated [11C]CPPC to be safe for future human studies. [11C]CPPC can be synthesized in sufficient radiochemical yield, purity, and specific radioactivity and possesses binding specificity in relevant models that indicate potential for human PET imaging of CSF1R and the microglial component of neuroinflammation.
Insights
Researchers developed [11C]CPPC, a novel PET tracer, to noninvasively measure microglial activity. This tracer shows high brain uptake in neuroinflammation models, offering a new tool for studying brain disorders.
Area of Science:
- Neuroscience
- Radiochemistry
- Molecular Imaging
Background:
- Neuroinflammation is implicated in various neuropsychiatric disorders.
- Microglia are key mediators of brain injury and repair.
- Noninvasive measurement of microglial activity is crucial for studying neuroinflammation.
Purpose of the Study:
- To develop a novel positron-emitting tracer for specific and noninvasive imaging of microglial activity.
- To evaluate the tracer's efficacy in preclinical models of neuroinflammation and neurodegenerative diseases.
Main Methods:
- Synthesis and characterization of [11C]CPPC, a high-affinity ligand for CSF1R.
- PET imaging in murine and nonhuman primate models of neuroinflammation.
- Evaluation in murine models of Alzheimer's disease and demyelination.
- Analysis of postmortem human brain tissue.
Main Results:
- [11C]CPPC demonstrated high and specific brain uptake in neuroinflammation models.
- Elevated uptake was observed in Alzheimer's disease and demyelination models.
- Radiation dosimetry indicated safety for human studies.
- Successful synthesis with high radiochemical yield, purity, and specific radioactivity.
Conclusions:
- [11C]CPPC is a promising PET tracer for imaging CSF1R and microglial activity.
- This tracer has potential for diagnosing and monitoring neuroinflammatory and neurodegenerative diseases.
- Further human studies are warranted to validate its clinical utility.
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