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.

Plos One
|January 28, 2016
PubMed
Abstract

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.

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