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Research ArticleClinical Investigation

Imaging Neuroinflammation in Neurodegenerative Disorders

Joseph C. Masdeu, Belen Pascual and Masahiro Fujita
Journal of Nuclear Medicine June 2022, 63 (Supplement 1) 45S-52S; DOI: https://doi.org/10.2967/jnumed.121.263200
Joseph C. Masdeu
1Nantz National Alzheimer Center, Stanley H. Appel Department of Neurology, Houston Methodist Neurological Institute, Houston Methodist Research Institute, Weill Cornell Medicine, Houston, Texas; and
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Belen Pascual
1Nantz National Alzheimer Center, Stanley H. Appel Department of Neurology, Houston Methodist Neurological Institute, Houston Methodist Research Institute, Weill Cornell Medicine, Houston, Texas; and
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Masahiro Fujita
1Nantz National Alzheimer Center, Stanley H. Appel Department of Neurology, Houston Methodist Neurological Institute, Houston Methodist Research Institute, Weill Cornell Medicine, Houston, Texas; and
2PET Core, Houston Methodist Research Institute, Weill Cornell Medicine, Houston, Texas
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Abstract

Neuroinflammation plays a major role in the etiopathology of neurodegenerative diseases, including Alzheimer and Parkinson diseases, frontotemporal lobar degeneration, and amyotrophic lateral sclerosis. In vivo monitoring of neuroinflammation using PET is critical to understand this process, and data are accumulating in this regard, thus a review is useful. From PubMed, we retrieved publications using any of the available PET tracers to image neuroinflammation in humans as well as selected articles dealing with experimental animal models or the chemistry of currently used or potential radiotracers. We reviewed 280 articles. The most common PET neuroinflammation target, translocator protein (TSPO), has limitations, lacking cellular specificity and the ability to separate neuroprotective from neurotoxic inflammation. However, TSPO PET is useful to define the amount and location of inflammation in the brain of people with neurodegenerative disorders. We describe the characteristics of TSPO and other potential PET neuroinflammation targets and PET tracers available or in development. Despite target and tracer limitations, in recent years there has been a sharp increase in the number of reports of neuroinflammation PET in humans. The most studied has been Alzheimer disease, in which neuroinflammation seems initially neuroprotective and neurotoxic later in the progression of the disease. We describe the findings in all the major neurodegenerative disorders. Neuroinflammation PET is an indispensable tool to understand the process of neurodegeneration, particularly in humans, as well as to validate target engagement in therapeutic clinical trials.

  • molecular imaging
  • neurology
  • PET
  • Alzheimer’s disease
  • neurodegeneration
  • neuroinflammation
  • positron emission tomography
  • TSPO
  • © 2022 by the Society of Nuclear Medicine and Molecular Imaging.
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Journal of Nuclear Medicine: 63 (Supplement 1)
Journal of Nuclear Medicine
Vol. 63, Issue Supplement 1
June 1, 2022
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Imaging Neuroinflammation in Neurodegenerative Disorders
Joseph C. Masdeu, Belen Pascual, Masahiro Fujita
Journal of Nuclear Medicine Jun 2022, 63 (Supplement 1) 45S-52S; DOI: 10.2967/jnumed.121.263200

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Imaging Neuroinflammation in Neurodegenerative Disorders
Joseph C. Masdeu, Belen Pascual, Masahiro Fujita
Journal of Nuclear Medicine Jun 2022, 63 (Supplement 1) 45S-52S; DOI: 10.2967/jnumed.121.263200
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  • Article
    • Abstract
    • TSPO PET: CURRENT TARGET TO IMAGE NEUROINFLAMMATION
    • NEUROINFLAMMATION PET IN NEURODEGENERATIVE DISORDERS
    • LIMITATIONS OF TSPO PET
    • NEW INFLAMMATION IMAGING TARGETS TO OVERCOME THE LIMITATIONS OF TSPO PET
    • OTHER PET MARKERS TO STUDY NEUROINFLAMMATION
    • LINKAGE BETWEEN PERIPHERAL AND CENTRAL INFLAMMATION
    • DISCLOSURE
    • REFERENCES
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Keywords

  • Molecular Imaging
  • neurology
  • PET
  • Alzheimer’s disease
  • neurodegeneration
  • neuroinflammation
  • positron emission tomography
  • TSPO
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