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Published on: June 14, 2018
Exploring [11C]CPPC as a CSF1R-targeted PET imaging marker for early Parkinson's disease severity
Kelly A Mills1, Yong Du2, Jennifer M Coughlin2,3
1Department of Neurology.
Abstract:
BACKGROUNDMicroglia-mediated brain immune changes play a role in the pathogenesis of Parkinson's disease (PD), but imaging microglia in living people with PD has relied on positron emission tomography (PET) ligands that lack specificity in labeling immune cells in the nervous system. We aimed to develop imaging of colony stimulating factor 1 receptor (CSF1R) as a microglial-sensitive marker of innate immunity.METHODSIHC using a CSF1R antibody evaluated colocalization with Iba-1 in PD (n = 4) and control (n = 4) human brain samples. Autoradiography using a CSF1R tritiated ligand in human brain samples from individuals with PD (n = 5) and in a control group (n = 4) was performed to obtain Bmax. PET imaging using a CSF1R radioligand was performed in 10 controls and 12 people with PD, and VT was compared between groups and correlated with disease severity.RESULTSIHC of CSF1R in human brain samples shows colocalization with Iba-1 and is significantly increased in brain samples from individuals with PD compared with individuals in a control group. Autoradiography revealed significantly increased CSF1R ligand binding in the inferior parietal cortex of patients with PD. [11C]CPPC PET showed higher binding in people with moderate PD compared with people in a control group and ligand binding correlated with more severe motor disability and poorer verbal fluency.CONCLUSIONThis study underscores the significance of CSF1R imaging as a promising biomarker for brain immune function in Parkinson's disease, which may be associated with cognitive and motor disease severity.FUNDINGPET imaging: the Michael J. Fox Foundation and the RMS Family Foundation. Radiotracer development: NIH (R01AG066464 and P41 EB024495). Postmortem brain tissues: NIH P30 AG066507 and BIOCARD study NIH U19 AG033655.
Insights
Imaging colony stimulating factor 1 receptor (CSF1R) shows increased brain immune activity in Parkinson's disease (PD). This CSF1R imaging may serve as a biomarker for PD severity, reflecting both motor and cognitive decline.
Area of Science:
- Neuroscience
- Immunology
- Radiochemistry
Background:
- Microglia-mediated immune changes are implicated in Parkinson's disease (PD) pathogenesis.
- Current positron emission tomography (PET) ligands for imaging microglia lack specificity in the nervous system.
- Colony stimulating factor 1 receptor (CSF1R) is explored as a potential microglial-sensitive marker for innate immunity.
Purpose of the Study:
- To develop and validate imaging of CSF1R as a marker of brain immune activity in Parkinson's disease.
- To assess the correlation between CSF1R imaging, disease severity, and cognitive function in PD patients.
Main Methods:
- Immunohistochemistry of human brain samples (PD vs. controls) to assess CSF1R colocalization with Iba-1.
- Autoradiography using a CSF1R ligand on postmortem brain tissue to quantify binding potential (Bmax).
- Positron emission tomography (PET) imaging with a CSF1R radioligand in PD patients and controls, correlating binding with clinical measures.
Main Results:
- CSF1R expression was significantly increased in the brains of PD patients compared to controls, co-localizing with Iba-1.
- Autoradiography showed elevated CSF1R ligand binding in the inferior parietal cortex of PD patients.
- [11C]CPPC PET revealed higher CSF1R binding in moderate PD, correlating with motor disability and reduced verbal fluency.
Conclusions:
- CSF1R imaging shows promise as a biomarker for assessing brain immune function in Parkinson's disease.
- Increased CSF1R binding is associated with both cognitive and motor aspects of PD severity.
- This imaging approach may offer new insights into PD neuroinflammation and disease progression.
Related Concept Videos
Parkinson's Disease: Overview
Parkinson Disease l: Introduction
Parkinson Disease ll: Pathophysiology

