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PET Evaluation of Microglial Activation in Non-neurodegenerative Brain Diseases
Christine Ghadery1, Laura A Best2, Nicola Pavese3,4
1The Edmond J. Safra Program in Parkinson's Disease & Movement Disorder Unit, Toronto Western Hospital & Krembil Research Institute, University Health Network; Research Imaging Centre, Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health, University of Toronto, Toronto, Ontario, Canada.
Purpose Of The Review:
Microglial cell activation is an important component of neuroinflammation, and it is generally well accepted that chronic microglial activation is indicative of accumulating tissue damage in neurodegenerative conditions, particularly in the earlier stages of disease. Until recently, there has been less focus on the role of neuroinflammation in other forms of neurological and neuropsychiatric conditions. Through this review, we hope to demonstrate the important role TSPO PET imaging has played in illuminating the pivotal role of neuroinflammation and microglial activation underpinning these conditions.
Recent Findings:
TSPO is an 18 kDa protein found on the outer membrane of mitochondria and can act as a marker of microglial activation using nuclear imaging. Through the development of radiopharmaceuticals targeting TSPO, researchers have been able to better characterise the spatial-temporal evolution of chronic neurological conditions, ranging from the focal autoimmune reactions seen in multiple sclerosis to the Wallerian degeneration at remote parts of the brain months following acute cerebral infarction. Development of novel techniques to investigate neuroinflammation within the central nervous system, for the purposes of diagnosis and therapeutics, has flourished over the past few decades. TSPO has proven itself a robust and sensitive biomarker of microglial activation and neuroimaging affords a minimally invasive technique to characterise neuroinflammatory processes in vivo.
Insights
Positron emission tomography (PET) imaging targeting the translocator protein (TSPO) visualizes microglial activation, a key indicator of neuroinflammation. This technique aids in understanding and diagnosing various neurological and neuropsychiatric conditions by revealing disease progression.
Area of Science:
- Neuroscience
- Medical Imaging
- Immunology
Background:
- Microglial activation is central to neuroinflammation and tissue damage in neurodegenerative diseases.
- Neuroinflammation's role in neurological and neuropsychiatric conditions is increasingly recognized.
- Novel imaging techniques are crucial for studying central nervous system neuroinflammation.
Purpose of the Study:
- To review the utility of TSPO PET imaging in assessing neuroinflammation.
- To highlight the role of microglial activation in various neurological conditions.
- To demonstrate how TSPO PET imaging illuminates neuroinflammatory processes.
Main Methods:
- Utilizing positron emission tomography (PET) with radiopharmaceuticals targeting TSPO.
- Employing TSPO as a biomarker for microglial activation.
- Reviewing studies that applied TSPO PET imaging to neurological conditions.
Main Results:
- TSPO PET imaging effectively visualizes microglial activation in vivo.
- The technique characterizes the spatial-temporal evolution of neuroinflammation in conditions like multiple sclerosis and post-infarction.
- TSPO PET provides a minimally invasive method for studying neuroinflammatory processes.
Conclusions:
- TSPO PET imaging is a powerful tool for investigating neuroinflammation.
- Microglial activation, visualized by TSPO PET, is pivotal in numerous neurological disorders.
- This imaging modality supports diagnosis and therapeutic development for CNS conditions.
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