Acute neuroinflammation promotes a metabolic shift that alters extracellular vesicle cargo in the mouse brain cortex.
Natasha VassileffJereme G SpiersJuliani JulianiRohan G T LoweKeshava K DattaAndrew F HillPublished in: Journal of extracellular biology (2024)
Neuroinflammation is initiated through microglial activation and cytokine release which can be induced through lipopolysaccharide treatment (LPS) leading to a transcriptional cascade culminating in the differential expression of target proteins. These differentially expressed proteins can then be packaged into extracellular vesicles (EVs), a form of cellular communication, further propagating the neuroinflammatory response over long distances. Despite this, the EV proteome in the brain, following LPS treatment, has not been investigated. Brain tissue and brain derived EVs (BDEVs) isolated from the cortex of LPS-treated mice underwent thorough characterisation to meet the minimal information for studies of extracellular vesicles guidelines before undergoing mass spectrometry analysis to identify the differentially expressed proteins. Fourteen differentially expressed proteins were identified in the LPS brain tissue samples compared to the controls and 57 were identified in the BDEVs isolated from the LPS treated mice compared to the controls. This included proteins associated with the initiation of the inflammatory response, epigenetic regulation, and metabolism. These results allude to a potential link between small EV cargo and early inflammatory signalling.
Keyphrases
- inflammatory response
- lipopolysaccharide induced
- lps induced
- resting state
- functional connectivity
- toll like receptor
- cerebral ischemia
- white matter
- anti inflammatory
- mass spectrometry
- traumatic brain injury
- gene expression
- liver failure
- oxidative stress
- type diabetes
- spinal cord
- high resolution
- drug induced
- intensive care unit
- transcription factor
- endothelial cells
- risk assessment
- spinal cord injury
- metabolic syndrome
- cognitive impairment
- adipose tissue
- neuropathic pain
- brain injury
- clinical practice
- hepatitis b virus
- heat shock
- high performance liquid chromatography
- data analysis
- health information