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Updated: May 13, 2026

Establishment and Validation of a Rat Model of Pulmonary Arterial Hypertension Associated with Pulmonary Fibrosis
Published on: May 23, 2025
Rapamycin reverses pulmonary artery smooth muscle cell proliferation in pulmonary hypertension
Amal Houssaini1, Shariq Abid, Nathalie Mouraret
1INSERM U955 Team 8 and Département de Physiologie, Créteil, France.
Abstract:
Pulmonary artery (PA) smooth muscle cell (SMC) proliferation in pulmonary hypertension (PH) may be linked to dysregulated mammalian target of rapamycin (mTOR) signaling. The mTOR pathway involves two independent complexes, mTORC1 and mTORC2, which phosphorylate S6 kinase (S6K) and serine/threonine kinase (Akt), respectively, and differ in their sensitivity to rapamycin. Here, we evaluated rapamycin-sensitive mTOR substrates and PA-SMC proliferation in rats with monocrotaline (MCT)-induced PH (MCT-PH). Compared with cells from control rats, cultured PA-SMCs from MCT-PH rats exhibited increased growth responses to platelet-derived growth factor, serotonin (5-hydroxytryptophan), IL-1β, insulin-like growth factor-1, or fetal calf serum (FCS), with increases in phosphorylated (Ser-473)Akt, (Thr-308)Akt, glycogen synthase kinase (GSK)3, and S6K reflecting activated mTORC1 and mTORC2 signaling. Treatment with rapamycin (0.5 μM) or the Akt inhibitor, A-443654 (0.5 μM), reduced FCS-stimulated growth of PA-SMCs from MCT-PH rats to the level in control rats while inhibiting Akt, GSK3, and S6K activation. Neither the tyrosine kinase inhibitor, imatinib (0.1 μM), nor the 5-hydroxytryptophan transporter inhibitor, fluoxetine (5 μM), normalized the increased PA-SMC growth response to FCS. Rapamycin treatment (5 mg/kg/d) of MCT-PH rats from Day 21 to Day 28 markedly reduced phoshop (p)-Aky, p-GSK3, and p-S6K in PAs, and normalized growth of derived PA-SMCs. This effect was not observed after 1 week of imatinib (100 mg/kg/d) or fluoxetine (20 mg/kg/d). Rapamycin given preventively (Days 1-21) or curatively (Days 21-42) inhibited MCT-PH to a greater extent than did imatinib or fluoxetine. Experimental PH in rats is associated with a sustained proliferative PA-SMC phenotype linked to activation of both mTORC1 and mTORC2 signaling and is suppressed by rapamycin treatment.
Insights
Rapamycin effectively suppresses pulmonary artery smooth muscle cell proliferation in pulmonary hypertension by inhibiting mTORC1 and mTORC2 signaling pathways. This study highlights rapamycin
Area of Science:
- Molecular Biology
- Cardiovascular Research
- Pharmacology
Background:
- Pulmonary hypertension (PH) involves pulmonary artery (PA) smooth muscle cell (SMC) proliferation.
- Dysregulated mammalian target of rapamycin (mTOR) signaling is implicated in PH-related SMC proliferation.
- The mTOR pathway has two complexes, mTORC1 and mTORC2, with differential rapamycin sensitivity.
Purpose of the Study:
- To evaluate rapamycin-sensitive mTOR substrates in rats with monocrotaline (MCT)-induced PH.
- To assess the effect of rapamycin on PA-SMC proliferation in experimental PH.
- To compare rapamycin's efficacy with other inhibitors in a rat PH model.
Main Methods:
- Cultured PA-SMCs from control and MCT-PH rats were stimulated with growth factors.
- Inhibitors including rapamycin, A-443654 (Akt inhibitor), imatinib, and fluoxetine were used.
- In vivo studies involved administering rapamycin, imatinib, or fluoxetine to MCT-PH rats.
Main Results:
- PA-SMCs from MCT-PH rats showed increased proliferation and activated mTORC1/mTORC2 signaling.
- Rapamycin and an Akt inhibitor reduced FCS-stimulated PA-SMC growth and signaling activation.
- In vivo rapamycin treatment normalized PA-SMC growth and reduced signaling markers in MCT-PH rats.
Conclusions:
- Experimental PH is associated with a sustained proliferative PA-SMC phenotype.
- This phenotype is linked to the activation of both mTORC1 and mTORC2 signaling pathways.
- Rapamycin treatment effectively suppresses this proliferative phenotype in experimental PH.
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