In vivo evidence for microglial activation in neurodegenerative dementia
A Cagnin1, M Kassiou, S R Meikle
1Department of Neurosciences, University of Padova Medical School, Italy. annachiara.cagnin@unipd.it
Abstract:
Evidence from numerous neuropathological observations and in vivo clinical imaging studies suggests a prominent role of activated microglia, the main effector cell of the brain's innate immune system, in Alzheimer's disease and other neurodegenerative diseases. Though the comprehensive molecular definition of the microglial activation process is still incomplete, the de novo expression of 'peripheral benzodiazepine-binding sites (PBBS)' by activated but not resting microglia has been established as a useful descriptor of functional state changes in microglia. As microglial transformation to an activated state is closely linked to progressive changes in brain disease, the detection of activated microglia can provide information about disease distribution and rate of disease progression. Positron emission tomography (PET) and [(11)C](R)-PK11195, a specific ligand of the PBBS, have been used to study systematically microglial activation in vivo. Significant microglial activation is present in the brains of patients with neurodegenerative dementia even at early and possibly preclinical stages of the disease with a spatial distribution reflecting different clinical phenotypes. We review some of the posited functions of activated microglia in the pathophysiology of dementia and speculate on the relationship between increased regional [(11)C](R)-PK11195 signals and the ensuing changes in brain volume. Finally, we provide a brief outlook on the development of new radioligands for the PBBS.
Insights
Activated microglia, key immune cells in the brain, are implicated in neurodegenerative diseases. Detecting their activation via PET scans using [(11)C](R)-PK11195 can reveal disease progression and distribution.
Area of Science:
- Neuroscience
- Immunology
- Radiochemistry
Background:
- Activated microglia play a significant role in neurodegenerative diseases like Alzheimer's.
- Microglial activation is characterized by the expression of peripheral benzodiazepine-binding sites (PBBS).
- Detecting microglial activation offers insights into disease progression and distribution.
Purpose of the Study:
- To review the role of activated microglia in dementia.
- To explore the use of Positron Emission Tomography (PET) with [(11)C](R)-PK11195 for in vivo microglial activation detection.
- To discuss the relationship between microglial activation signals and brain volume changes.
Main Methods:
- Review of neuropathological and in vivo clinical imaging studies.
- Systematic in vivo study of microglial activation using PET and [(11)C](R)-PK11195.
- Analysis of spatial distribution of microglial activation in dementia patients.
Main Results:
- Significant microglial activation is detectable in neurodegenerative dementia, even at early stages.
- The spatial distribution of activated microglia correlates with different clinical phenotypes.
- Increased [(11)C](R)-PK11195 signals may relate to changes in brain volume.
Conclusions:
- Activated microglia are crucial in dementia pathophysiology.
- PET imaging with [(11)C](R)-PK11195 is a valuable tool for assessing microglial activation in vivo.
- Further development of PBBS radioligands is promising for neurodegenerative disease research.
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