Maximiliano Arce
Forskare vid Institutionen för immunologi, genetik och patologi; Forskningsprogram: Vaskulärbiologi; Forskargrupp Peetra Magnusson
- E-post:
- max.arce@igp.uu.se
- Besöksadress:
- Dag Hammarskjölds väg 20
751 85 Uppsala - Postadress:
- Rudbecklaboratoriet
751 85 UPPSALA

Publikationer
Senaste publikationer
Ingår i STAR Protocols, 2025
- DOI för Protocol for generation of endothelial cells from human-derived iPSCs and integration into mouse brain explants
- Ladda ner fulltext (pdf) av Protocol for generation of endothelial cells from human-derived iPSCs and integration into mouse brain explants
Ingår i Cell Reports, 2025
- DOI för KRIT1 heterozygous mutations are sufficient to induce a pathological phenotype in patient-derived iPSC models of cerebral cavernous malformation
- Ladda ner fulltext (pdf) av KRIT1 heterozygous mutations are sufficient to induce a pathological phenotype in patient-derived iPSC models of cerebral cavernous malformation
Ingår i Nature Cardiovascular Research, s. 1549-1567, 2024
- DOI för Pharmacological blocking of neutrophil extracellular traps attenuates immunothrombosis and neuroinflammation in cerebral cavernous malformation
- Ladda ner fulltext (pdf) av Pharmacological blocking of neutrophil extracellular traps attenuates immunothrombosis and neuroinflammation in cerebral cavernous malformation
BMI1 Inhibition Improves Lesion Burden in Cerebral Cavernous Malformations
Ingår i Circulation, s. 738-741, 2024
Ingår i Arteriosclerosis, Thrombosis and Vascular Biology, s. 1330-1345, 2024
Alla publikationer
Artiklar i tidskrift
Ingår i STAR Protocols, 2025
- DOI för Protocol for generation of endothelial cells from human-derived iPSCs and integration into mouse brain explants
- Ladda ner fulltext (pdf) av Protocol for generation of endothelial cells from human-derived iPSCs and integration into mouse brain explants
Ingår i Cell Reports, 2025
- DOI för KRIT1 heterozygous mutations are sufficient to induce a pathological phenotype in patient-derived iPSC models of cerebral cavernous malformation
- Ladda ner fulltext (pdf) av KRIT1 heterozygous mutations are sufficient to induce a pathological phenotype in patient-derived iPSC models of cerebral cavernous malformation
Ingår i Nature Cardiovascular Research, s. 1549-1567, 2024
- DOI för Pharmacological blocking of neutrophil extracellular traps attenuates immunothrombosis and neuroinflammation in cerebral cavernous malformation
- Ladda ner fulltext (pdf) av Pharmacological blocking of neutrophil extracellular traps attenuates immunothrombosis and neuroinflammation in cerebral cavernous malformation
BMI1 Inhibition Improves Lesion Burden in Cerebral Cavernous Malformations
Ingår i Circulation, s. 738-741, 2024
Ingår i Arteriosclerosis, Thrombosis and Vascular Biology, s. 1330-1345, 2024
Immunothrombosis and vascular heterogeneity in cerebral cavernous malformation
Ingår i Blood, s. 2154-2169, 2022
- DOI för Immunothrombosis and vascular heterogeneity in cerebral cavernous malformation
- Ladda ner fulltext (pdf) av Immunothrombosis and vascular heterogeneity in cerebral cavernous malformation
Ingår i World Neurosurgery, 2022
Ingår i Stroke, s. 1418-1427, 2021
Artiklar, forskningsöversikt
Dysregulated Hemostasis and Immunothrombosis in Cerebral Cavernous Malformations
Ingår i International Journal of Molecular Sciences, 2022
- DOI för Dysregulated Hemostasis and Immunothrombosis in Cerebral Cavernous Malformations
- Ladda ner fulltext (pdf) av Dysregulated Hemostasis and Immunothrombosis in Cerebral Cavernous Malformations