Adult organotypic brain slice cultures recapitulate extracellular matrix remodelling in haemorrhagic stroke
Hewitt, B. J.; Roberts, L.; Roberts, J. A.; Fulton, D.; Hill, L.; Kitchen, P.; Bill, R. M.; Botfield, H.
Show abstract
1.Haemorrhagic stroke is a devastating condition characterised by vessel rupture and free blood within the brain parenchyma or cerebrospinal fluid (CSF) filled spaces. Across the major subtypes of haemorrhagic stroke (subarachnoid, intracerebral, and intraventricular haemorrhages), the presence of blood in the CSF generates significant tissue damage in the first 72 hours after the event, known as early brain injury (EBI). EBI includes neuroinflammation, blood-brain barrier breakdown and dysregulation of extracellular matrix (ECM) dynamics. ECM dysfunction has been shown to trigger fibrosis of the cortical blood vessels, limiting normal CSF circulation and resulting in the buildup of metabolic waste or the development of post-haemorrhagic hydrocephalus. Limiting or preventing this fibrosis may therefore reduce the rate of morbidity experienced by survivors, providing a potential avenue for non-surgical treatment to reduce secondary brain injury post-stroke. Despite this, current in vivo approaches fail to differentiate between the effect of blood products and secondary consequences including intracranial pressure (ICP) elevation and mass effect. Here, we describe an adult rat organotypic brain slice culture (OBSC) model of haemorrhagic stroke which enables the identification of the effect of blood products on ECM dysregulation. We demonstrate the distribution of key cell types across a time course of 0, 3 and 7 days in culture, indicating that such cultures are viable for a minimum of 7 days. Using immunofluorescence staining, Western blotting and RNA sequencing, we show that exposure of OBSCs to lysed blood markedly increases ECM deposition around cortical blood vessels. This is accompanied by dysregulation of ECM regulatory genes and upregulation of inflammation and oxidative stress-related genes, successfully recapitulating the changes seen in human stroke survivors. This versatile ex vivo model provides a translational platform to further understanding of haemorrhagic stroke pathophysiology and develop or trial novel therapeutics prior to progression to in vivo stroke studies.
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A unique cerebellar pattern of microglia activation in a mousemodel of encephalopathy of prematurity 95%
- Chronic Changes In Oligodendrocyte Sub-Populations After Middle Cerebral Artery Occlusion in Neonatal Mice. 94%
- Spatial Transcriptomic Analysis Reveals HDAC Inhibition Modulates Microglial Dynamics to Protect Against Ischemic Stroke in Mice 94%
Similar papers in this journal
- AIM2 Inflammasome Mediates Hallmark Neuropathological Alterations and Cognitive Impairment in a Mouse Model of Vascular Dementia 95%
- SARS-CoV-2 promotes microglial synapse elimination in human brain organoids 94%
- Induced pluripotent stem cell-derived astrocytes from patients with schizophrenia exhibit an inflammatory phenotype that affects vascularization 94%
Similar papers in this journal
- Optimized Enrichment of Murine Blood-Brain Barrier Vessels with a Critical Focus on Network Hierarchy in Post-Collection Analysis 94%
- Novel Adult Cortical Neuron Processing and Screening method illustrates Sex- and Age-dependent effects of pharmaceutical compounds 94%
- SGLT2 inhibitors attenuate endothelial to mesenchymal transition and cardiac fibroblast activation 94%
Similar papers in this journal
- C-section and systemic inflammation synergize to disrupt the neonatal gut microbiota and brain development in a model of prematurity 94%
- A Novel Tmem119-tdTomato Reporter Mouse Model for Studying Microglia in the Central Nervous System 94%
- The effects of P2Y12 loss on microglial gene expression, dynamics, and injury response in the cerebellum and cerebral cortex. 93%
Similar papers in this journal
- Developmental Stage-Dependent Transcriptomic Responses to Neonatal Intraventricular Hemorrhage 94%
- A molecular brain atlas reveals cellular shifts during the repair phase of stroke 94%
- Neuronal nuclear calcium signaling suppression of microglial reactivity is mediated by osteoprotegerin after traumatic brain injury 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.