Cerebral cavernous malformations (CCMs) are common neurovascular lesions caused by loss-of-function mutations in 1 of 3 genes, including KRIT1 (CCM1), CCM2, and PDCD10 (CCM3), and generally regarded as an endothelial cell-autonomous disease. Here we reported that proliferative astrocytes played a critical role in CCM pathogenesis by serving as a major source of VEGF during CCM lesion formation. An increase in astrocyte VEGF synthesis is driven by endothelial nitric oxide (NO) generated as a consequence of KLF2- and KLF4-dependent elevation of eNOS in CCM endothelium. The increased brain endothelial production of NO stabilized HIF-1α in astrocytes, resulting in increased VEGF production and expression of a “hypoxic” program under normoxic conditions. We showed that the upregulation of cyclooxygenase-2 (COX-2), a direct HIF-1α target gene and a known component of the hypoxic program, contributed to the development of CCM lesions because the administration of a COX-2 inhibitor significantly prevented the progression of CCM lesions. Thus, non–cell-autonomous crosstalk between CCM endothelium and astrocytes propels vascular lesion development, and components of the hypoxic program represent potential therapeutic targets for CCMs.
Miguel Alejandro Lopez-Ramirez, Catherine Chinhchu Lai, Shady Ibrahim Soliman, Preston Hale, Angela Pham, Esau J. Estrada, Sara McCurdy, Romuald Girard, Riya Verma, Thomas Moore, Rhonda Lightle, Nicholas Hobson, Robert Shenkar, Orit Poulsen, Gabriel G. Haddad, Richard Daneman, Brendan Gongol, Hao Sun, Frederic Lagarrigue, Issam A. Awad, Mark H. Ginsberg
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Endothelial Differentiation of CCM1 Knockout iPSCs Triggers the Establishment of a Specific Gene Expression Signature
Pilz RA, Skowronek D, Mellinger L, Bekeschus S, Felbor U, Rath M |
International journal of molecular sciences | 2023 |
Plasma metabolites with mechanistic and clinical links to the neurovascular disease cavernous angioma.
Srinath A, Xie B, Li Y, Sone JY, Romanos S, Chen C, Sharma A, Polster S, Dorrestein PC, Weldon KC, DeBiasse D, Moore T, Lightle R, Koskimäki J, Zhang D, Stadnik A, Piedad K, Hagan M, Shkoukani A, Carrión-Penagos J, Bi D, Shen L, Shenkar R, Ji Y, Sidebottom A, Pamer E, Gilbert JA, Kahn ML, D'Souza M, Sulakhe D, Awad IA, Girard R |
2023 | |
Enhanced external counterpulsation improves dysfunction of forearm muscle caused by radial artery occlusion
Wang Z, Yao C, Huang L, Liang J, Zhang X, Shi J, Wei W, Zhou J, Zhang Y, Wu G |
Frontiers in Cardiovascular Medicine | 2023 |
Participation of Krüppel-like Factors in Atherogenesis
Kotlyarov S, Kotlyarova A |
Metabolites | 2023 |
Functions of Astrocytes under Normal Conditions and after a Brain Disease
Valles SL, Singh SK, Campos-Campos J, Colmena C, Campo-Palacio I, Alvarez-Gamez K, Caballero O, Jorda A |
International journal of molecular sciences | 2023 |
CmPn/CmP Signaling Networks in the Maintenance of the Blood Vessel Barrier
Gnanasekaran R, Aickareth J, Hawwar M, Sanchez N, Croft J, Zhang J |
Journal of Personalized Medicine | 2023 |
MRI of mouse cerebral cavernomas reveal differential lesion progression and variable permeability to gadolinium
Fisher DG, Sharifi KA, Ulutas EZ, Kumar JS, Kalani MY, Miller GW, Price RJ, Tvrdik P |
Arteriosclerosis, thrombosis, and vascular biology | 2023 |
Inflammatory Mechanisms in a Neurovascular Disease: Cerebral Cavernous Malformation
Li Y, Srinath A, Alcazar-Felix RJ, Hage S, Bindal A, Lightle R, Shenkar R, Shi C, Girard R, Awad IA |
Brain Sciences | 2023 |
Injury-specific factors in the cerebrospinal fluid regulate astrocyte plasticity in the human brain.
Sirko S, Schichor C, Della Vecchia P, Metzger F, Sonsalla G, Simon T, Bürkle M, Kalpazidou S, Ninkovic J, Masserdotti G, Sauniere JF, Iacobelli V, Iacobelli S, Delbridge C, Hauck SM, Tonn JC, Götz M |
Nature Medicine | 2023 |