VEGF-A-mediated venous endothelial cell proliferation results in neoangiogenesis during neuroinflammation.
Sanjid ShahriarSaptarshi BiswasKaitao ZhaoUğur AkcanMary Claire TuohyMichael D GlendinningAli KurtCharlotte R WayneGrace ProchiloMaxwell Z PriceHeidi StuhlmannRolf A BrekkenVilas MenonDritan AgalliuPublished in: Nature neuroscience (2024)
Newly formed leaky vessels and blood-brain barrier (BBB) damage are present in demyelinating acute and chronic lesions in multiple sclerosis (MS) and experimental autoimmune encephalomyelitis (EAE). However, the endothelial cell subtypes and signaling pathways contributing to these leaky neovessels are unclear. Here, using single-cell transcriptional profiling and in vivo validation studies, we show that venous endothelial cells express neoangiogenesis gene signatures and show increased proliferation resulting in enlarged veins and higher venous coverage in acute and chronic EAE lesions in female adult mice. These changes correlate with the upregulation of vascular endothelial growth factor A (VEGF-A) signaling. We also confirmed increased expression of neoangiogenic markers in acute and chronic human MS lesions. Treatment with a VEGF-A blocking antibody diminishes the neoangiogenic transcriptomic signatures and vascular proliferation in female adult mice with EAE, but it does not restore BBB function or ameliorate EAE pathology. Our data demonstrate that venous endothelial cells contribute to neoangiogenesis in demyelinating neuroinflammatory conditions.
Keyphrases
- endothelial cells
- vascular endothelial growth factor
- blood brain barrier
- multiple sclerosis
- liver failure
- single cell
- signaling pathway
- high glucose
- drug induced
- cell proliferation
- respiratory failure
- cerebral ischemia
- poor prognosis
- mass spectrometry
- rna seq
- genome wide
- ms ms
- aortic dissection
- oxidative stress
- high fat diet induced
- pi k akt
- transcription factor
- traumatic brain injury
- gene expression
- epithelial mesenchymal transition
- healthcare
- electronic health record
- white matter
- intensive care unit
- lps induced
- machine learning
- copy number
- adipose tissue
- endoplasmic reticulum stress
- pulmonary embolism
- deep learning
- heat shock