Exacerbation of thromboinflammation by JAK2V617F mutation worsens the prognosis of cerebral venous sinus thrombosis.
Marie-Charlotte BourrienneVéronique Le Cam DuchezDorothée FailleCarine FarkhMialitiana Solo NomenjanaharyJuliette GayStéphane LoyauClément JournéSébastien DupontVéronique OllivierJean-Luc J-L VillevalIsabelle PloValérie EdmondMartine Jandrot PerrusSylvie Labrouche-ColomerBruno CassinatEmmanuelle VergerJean-Philippe DésillesBenoît Ho Ho Tin NoéAude Triquenot BaganMichael MazighiNadine AjzenbergPublished in: Blood advances (2024)
Cerebral venous sinus thrombosis (CVST) is an uncommon venous thromboembolic event accounting for <1% of strokes resulting in brain parenchymal injuries. JAK2V617F mutation, the most frequent driving mutation of myeloproliferative neoplasms, has been reported to be associated with worse clinical outcomes in patients with CVST. We investigated whether hematopoietic JAK2V617F expression predisposes to specific pathophysiological processes and/or worse prognosis after CVST. Using an in vivo mouse model of CVST, we analyzed clinical, biological, and imaging outcomes in mice with hematopoietic-restricted Jak2V617F expression, compared with wild-type Jak2 mice. In parallel, we studied a human cohort of JAK2V617F-positive or -negative CVST. Early after CVST, mice with hematopoietic Jak2V617F expression had increased adhesion of platelets and neutrophils in cerebral veins located in the vicinity of CVST. On day 1, Jak2V617F mice had a worse outcome characterized by significantly more frequent and severe intracranial hemorrhages (ICHs) and higher mortality rates. Peripheral neutrophil activation was enhanced, as indicated by higher circulating platelet-neutrophil aggregates, upregulated CD11b expression, and higher myeloperoxydase plasma level. Concurrently, immunohistological and brain homogenate analysis showed higher neutrophil infiltration and increased blood-brain barrier disruption. Similarly, patients with JAK2V617F-positive CVST tended to present higher thrombotic burden and had significantly higher systemic immune-inflammation index, a systemic thromboinflammatory marker, than patients who were JAK2V617F-negative. In mice with CVST, our study corroborates that Jak2V617F mutation leads to a specific pattern including increased thrombotic burden, ICH, and mortality. The exacerbated thromboinflammatory response, observed both in mice and patients positive for JAK2V617F, could contribute to hemorrhagic complications.
Keyphrases
- wild type
- high fat diet induced
- poor prognosis
- blood brain barrier
- bone marrow
- risk factors
- cardiovascular events
- endothelial cells
- white matter
- pulmonary embolism
- oxidative stress
- type diabetes
- escherichia coli
- long non coding rna
- high resolution
- cystic fibrosis
- mass spectrometry
- adipose tissue
- ejection fraction
- cardiovascular disease
- single molecule
- chronic kidney disease
- atomic force microscopy
- weight loss
- induced pluripotent stem cells
- cell migration
- cell adhesion