Injury-specific factors in the cerebrospinal fluid regulate astrocyte plasticity in the human brain.
Swetlana SirkoChristian SchichorPatrizia Della VecchiaFabian MetzgerGiovanna SonsallaTatiana SimonMartina BürkleSofia KalpazidouJovica NinkovicGiacomo MasserdottiJean-Frederic SauniereValentina IacobelliStefano IacobelliClaire DelbridgeStefanie M HauckJoerg-Christian TonnMagdalena GötzPublished in: Nature medicine (2023)
The glial environment influences neurological disease progression, yet much of our knowledge still relies on preclinical animal studies, especially regarding astrocyte heterogeneity. In murine models of traumatic brain injury, beneficial functions of proliferating reactive astrocytes on disease outcome have been unraveled, but little is known regarding if and when they are present in human brain pathology. Here we examined a broad spectrum of pathologies with and without intracerebral hemorrhage and found a striking correlation between lesions involving blood-brain barrier rupture and astrocyte proliferation that was further corroborated in an assay probing for neural stem cell potential. Most importantly, proteomic analysis unraveled a crucial signaling pathway regulating this astrocyte plasticity with GALECTIN3 as a novel marker for proliferating astrocytes and the GALECTIN3-binding protein LGALS3BP as a functional hub mediating astrocyte proliferation and neurosphere formation. Taken together, this work identifies a therapeutically relevant astrocyte response and their molecular regulators in different pathologies affecting the human cerebral cortex.
Keyphrases
- blood brain barrier
- signaling pathway
- traumatic brain injury
- stem cells
- cerebrospinal fluid
- binding protein
- cerebral ischemia
- healthcare
- endothelial cells
- gene expression
- single cell
- pi k akt
- induced apoptosis
- single molecule
- high throughput
- oxidative stress
- dna methylation
- functional connectivity
- subarachnoid hemorrhage
- spinal cord
- bone marrow
- mesenchymal stem cells
- human health
- cerebral blood flow