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Each organ of the human body requires locally-adapted blood vessels1–3. The gain of such organotypic vessel specializations is often deemed molecularly unrelated to the process of organ vascularization. Opposing this model, we reveal a molecular mechanism for brain-specific angiogenesis that operate...
ORGANISM(S): Homo sapiens (Human) 
2024-02-08 | PXD042613 | Pride
The meninges are a multilayered structure composed of fibroblasts, blood and lymphatic vessels, and immune cells. Meningeal fibroblasts secrete a variety of factors that control CNS development, yet strikingly little is known about their heterogeneity or development. Using single cell sequencing, we...
ORGANISM(S): Mus musculus 
2020-07-06 | GSE150219 | GEO
Single cell transcriptomic analyses of the developing meninges reveal meningeal fibroblast diversity and function
Oligo array analysis with bioinformatics tools identified genes with very high expression levels in the meninges, arachnoid and pial membranes, and associated vasculature (MAV) as potentially important and unique to these tissues in rat. It was also determined whether these genes were more sensitiv...
ORGANISM(S): Rattus norvegicus 
Pdgfragene inactivation mediates tissue remodeling in hypomyelinated cerebral cortex
Pseudomonas aeruginosa is an opportunistic pathogen that can adapt to changing environments and can secrete an exopolysaccharide known as alginate as a protection response resulting in a colony morphology and phenotype referred to as mucoid. However how P. aeruginosa senses its environment and acti...
ORGANISM(S): Pseudomonas aeruginosa 
The meninges are generally considered relatively inert tissues that house the CSF and provide protection for the brain and spinal cord. However, our previous studies using Kit mutant (Kit W/Wv) mast cell-deficient mice demonstrated that mast cells residing in the dura mater and pia mater exacerbate ...
ORGANISM(S): Mus musculus 
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