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Rapamycin Partially Reverts Cavernoma Endothelial Cell Phenotype and, When Combined With Lapatinib, Ameliorates
Mar García-Colomer1, José E Martínez1, Luis Díaz-Gómez2
1Department of Physiology, Centro Singular De Medicina Molecular E Enfermedades Crónicas (CiMUS) and Instituto Sanitario De Santiago De Compostela (IDIS), Universidade De Santiago De Compostela (USC), Santiago de Compostela, A Coruña, Spain.
Abstract:
This study investigates the impact of rapamycin and propranolol on cerebral cavernous malformations (CCMs). Employing an unbiased transcriptomic analysis, we aimed to comprehensively elucidate the molecular mechanisms underlying these drug effects. Mouse Brain Microvascular Endothelial Cells (mBMEC) deficient in Ccm3 were treated with propranolol or rapamycin and were analysed by RNA-seq and immunofluorescence. While propranolol shows limited efficacy in modulating the CCM transcriptomic phenotype in mBMEC, rapamycin demonstrates a significant impact. Rapamycin partially reverses gene expression changes induced by Ccm3 deficiency, restoring KLF2/4-dependent genes like Nos3, Adamts1, and Thbs1. Notably, we observed a reduction in KLF2 protein levels in Ccm3 KO cells treated with rapamycin. We also sought to determine whether rapamycin, especially in combination with the tyrosine kinase inhibitor lapatinib, which induces proapoptotic gene expression in Ccm3-deficient endothelium, can reduce lesion volume even after lesion growth has occurred. Ccm3iEC mice in which cavernoma development had been induced were treated with rapamycin alone or combined with lapatinib, assessing lesion volume using micro-CT imaging. Notably, a combination of rapamycin and lapatinib effectively reduces lesion volume in a chronic CCM model. In summary, our work reveals a mechanism by which rapamycin modulates Ccm3 KO endothelial cells and identifies rapamycin plus lapatinib as a possible combination therapy for cavernomas.
Insights
Rapamycin, but not propranolol, impacts cerebral cavernous malformations (CCMs) at the molecular level. A combination of rapamycin and lapatinib effectively reduces CCM lesion volume in mice.
Area of Science:
- Biomedical Research
- Molecular Biology
- Vascular Biology
Background:
- Cerebral cavernous malformations (CCMs) are vascular abnormalities with limited treatment options.
- Understanding the molecular mechanisms of CCMs is crucial for developing effective therapies.
Purpose of the Study:
- To investigate the effects of rapamycin and propranolol on CCMs.
- To elucidate the molecular pathways affected by these drugs.
- To evaluate a combination therapy for CCMs.
Main Methods:
- Transcriptomic analysis (RNA-seq) of mouse brain microvascular endothelial cells (mBMEC) deficient in Ccm3.
- Treatment of cells and mice with rapamycin, propranolol, and lapatinib.
- Immunofluorescence and micro-CT imaging to assess molecular changes and lesion volume.
Main Results:
- Rapamycin partially reversed gene expression changes in Ccm3-deficient mBMEC, restoring KLF2/4-dependent genes.
- Rapamycin reduced KLF2 protein levels in Ccm3 knockout cells.
- A combination of rapamycin and lapatinib significantly reduced lesion volume in a chronic CCM mouse model.
Conclusions:
- Rapamycin modulates Ccm3-deficient endothelial cells through KLF2/4-dependent pathways.
- Rapamycin combined with lapatinib shows promise as a therapeutic strategy for cavernomas.

