Translocator protein is a marker of activated microglia in rodent models but not human neurodegenerative diseases.
Erik NutmaNurun FancyMaria WeinertPhilippe MilletManuel C MarzinRobert C J MuirheadIrene FalkMarjolein BreurJoy de BruinDavid HollausRobin PietermanJasper AninkDavid StorySiddharthan ChandranJiabin TangMaria C TroleseTakashi SaitoTakaomi C SaidoKatharine H WiltshirePaula Beltran-LoboAlexandra PhillipsJack P AntelLuke Michael HealyMarie-France DorionDylan A GallowayRochelle Y BenoitQuentin AmosséKelly CeyzériatAurélien M BadinaEnikö KövariCaterina BendottiEleonora M A AronicaCarola I RadulescuJia Hui WongAnna M BarronAmy M SmithSamuel J BarnesDavid W HamptonPaul van der ValkSteven JacobsonOwain W HowellDavid BakerMarkus KippHannes KaddatzBenjamin B TournierPhilippe MilletPaul M MatthewsCraig S MooreSandra AmorDavid R OwenPublished in: Nature communications (2023)
Microglial activation plays central roles in neuroinflammatory and neurodegenerative diseases. Positron emission tomography (PET) targeting 18 kDa Translocator Protein (TSPO) is widely used for localising inflammation in vivo, but its quantitative interpretation remains uncertain. We show that TSPO expression increases in activated microglia in mouse brain disease models but does not change in a non-human primate disease model or in common neurodegenerative and neuroinflammatory human diseases. We describe genetic divergence in the TSPO gene promoter, consistent with the hypothesis that the increase in TSPO expression in activated myeloid cells depends on the transcription factor AP1 and is unique to a subset of rodent species within the Muroidea superfamily. Finally, we identify LCP2 and TFEC as potential markers of microglial activation in humans. These data emphasise that TSPO expression in human myeloid cells is related to different phenomena than in mice, and that TSPO-PET signals in humans reflect the density of inflammatory cells rather than activation state.
Keyphrases
- pet imaging
- positron emission tomography
- endothelial cells
- transcription factor
- induced apoptosis
- computed tomography
- poor prognosis
- inflammatory response
- induced pluripotent stem cells
- cell cycle arrest
- neuropathic pain
- pet ct
- binding protein
- acute myeloid leukemia
- genome wide
- machine learning
- dna methylation
- climate change
- spinal cord
- cell death
- drug delivery
- lipopolysaccharide induced
- mass spectrometry
- risk assessment
- signaling pathway
- skeletal muscle
- electronic health record
- cancer therapy
- endoplasmic reticulum stress
- big data
- lps induced
- amino acid
- long non coding rna
- protein protein
- genome wide identification
- genetic diversity