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Updated: Mar 26, 2026

Establishment and Validation of a Rat Model of Pulmonary Arterial Hypertension Associated with Pulmonary Fibrosis
Published on: May 23, 2025
Reversal of MicroRNA Dysregulation in an Animal Model of Pulmonary Hypertension
Igor B Gubrij1,2, Amanda K Pangle1,2, Li Pang3
1Central Arkansas Veterans Healthcare System, Little Rock, Arkansas, United States of America.
Background:
Animals models have played an important role in enhancing our understanding of the pathogenesis of pulmonary arterial hypertension (PAH). Dysregulation of the profile of microRNAs (miRNAs) has been demonstrated in human tissues from PAH patients and in animal models. In this study, we measured miRNA levels in the monocrotaline (MCT) rat model of PAH and examined whether blocking a specific dysregulated miRNA not previously reported in this model, attenuated PAH. We also evaluated changes in miRNA expression in lung specimens from MCT PAH rats overexpressing human prostacyclin synthase, which has been shown to attenuate MCT PAH.
Methods:
Expression levels of a panel of miRNAs were measured in MCT-PAH rats as compared to naïve (saline) control rats. Subsequently, MCT PAH rats were injected with a specific inhibitor (antagomiR) for miR-223 (A223) or a nonspecific control oligonucleotide (A-control) 4 days after MCT administration, then weekly. Three weeks later, RV systolic pressure and RV mass were measured. Total RNA, isolated from the lungs, microdissected pulmonary arteries, and right ventricle, was reverse transcribed and real-time quantitative PCR was performed. MiRNA levels were also measured in RNA isolated from paraffin sections of MCT-PAH rats overexpressing prostacyclin synthase.
Results:
MiRs 17, 21, and 223 were consistently upregulated, whereas miRs 126, 145, 150, 204, 424, and 503 were downregulated in MCT PAH as compared to vehicle control. A223 significantly reduced levels of miR-223 in PA and lungs of MCT PAH rats as compared to levels measured in A-control or control MCT PAH rats, but A223 did not attenuate MCT PAH. Right ventricular mass and right ventricular systolic pressure in rats treated with A223 were not different from values in A-control or MCT PAH rats. In contrast, analysis of total RNA from lung specimens of MCT PAH rats overexpressing human prostacyclin synthase (hPGIS) demonstrated reversal of MCT-induced upregulation of miRs 17, 21, and 223 and an increase in levels of miR-424 and miR-503. Reduction in bone morphogenetic receptor 2 (BMPR2) messenger (m)RNA expression was not altered by A223, whereas human prostacyclin synthase overexpression restored BMPR2 mRNA to levels in MCT PAH to levels measured in naive controls.
Conclusions:
Inhibition of miR-223 did not attenuate MCT PAH, whereas human prostacyclin synthase overexpression restored miRNA levels in MCT PAH to levels detected in naïve rats. These data may establish a paradigm linking attenuation of PAH to restoration of BMPR2 signaling.
Insights
Inhibition of miR-223 did not attenuate pulmonary arterial hypertension (PAH) in a rat model. However, human prostacyclin synthase overexpression restored miRNA levels and may link PAH attenuation to BMPR2 signaling.
Area of Science:
- Cardiovascular Research
- Pulmonary Hypertension Pathogenesis
- MicroRNA Biology
Background:
- Pulmonary arterial hypertension (PAH) pathogenesis is studied using animal models.
- MicroRNA (miRNA) dysregulation is observed in human PAH and animal models.
- This study investigates miRNA profiles in the monocrotaline (MCT)-induced rat PAH model.
Purpose of the Study:
- To measure miRNA levels in the MCT rat model of PAH.
- To determine if inhibiting a specific upregulated miRNA (miR-223) attenuates PAH.
- To evaluate miRNA expression changes in MCT PAH rats overexpressing human prostacyclin synthase (hPGIS).
Main Methods:
- Measured miRNA expression in MCT-PAH rats versus control rats.
- Administered miR-223 inhibitor (A223) or control oligonucleotide to MCT PAH rats.
- Assessed right ventricular systolic pressure and mass; quantified miRNA levels in lung and pulmonary arteries via qPCR.
- Analyzed miRNA levels in lung tissue from MCT PAH rats overexpressing hPGIS.
Main Results:
- miR-223 was upregulated in MCT PAH rats; A223 inhibited miR-223 but did not attenuate PAH.
- Right ventricular systolic pressure and mass were not affected by A223 treatment.
- hPGIS overexpression reversed upregulation of miR-223, miR-17, miR-21 and increased miR-424, miR-503; restored BMPR2 mRNA levels.
Conclusions:
- Inhibiting miR-223 did not attenuate MCT-induced PAH.
- hPGIS overexpression normalized miRNA profiles and restored BMPR2 mRNA levels in MCT PAH rats.
- These findings suggest a link between PAH attenuation, miRNA restoration, and BMPR2 signaling.

