4.5 Article

Endothelial cell-related autophagic pathways in Sugen/hypoxia-exposed pulmonary arterial hypertensive rats

Publisher

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajplung.00527.2016

Keywords

endothelial cells; SU5416; autophagy; pulmonary arterial hypertension

Funding

  1. Respiratory Failure Research Group of the Ministry of Health, Labor and Welfare of Japan
  2. Ministry of Education, Culture, Sports, Science and Technology of Japan Research Grant [25461148]
  3. Pulmonary Hypertension Research Group of the Japan Agency for Medical Research and Development (AMED) [27280401]
  4. Japanese Ministry of Education and Science [15K09210]
  5. Grants-in-Aid for Scientific Research [25461148, 16K19445, 15K09210, 17H04181] Funding Source: KAKEN

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Pulmonary arterial hypertension (PAH) is characterized by progressive obstructive remodeling of pulmonary arteries. However, no reports have described the causative role of the autophagic pathway in pulmonary vascular endothelial cell (EC) alterations associated with PAH. This study investigated the time-dependent role of the autophagic pathway in pulmonary vascular ECs and pulmonary vascular EC kinesis in a severe PAH rat model (Sugen/hypoxia rat) and evaluated whether timely induction of the autophagic pathway by rapamycin improves PAH. Hemodynamic and histological examinations as well as flow cytometry of pulmonary vascular EC-related autophagic pathways and pulmonary vascular EC kinetics in lung cell suspensions were performed. The time-dependent and therapeutic effects of rapamycin on the autophagic pathway were also assessed. Sugen/hypoxia rats treated with the vascular endothelial growth factor receptor blocker SU5416 showed increased right ventricular systolic pressure (RVSP) and numbers of obstructive vessels due to increased pulmonary vascular remodeling. The expression of the autophagic marker LC3 in ECs also changed in a time-dependent manner, in parallel with proliferation and apoptotic markers as assessed by flow cytometry. These results suggest the presence of cross talk between pulmonary vascular remodeling and the autophagic pathway, especially in small vascular lesions. Moreover, treatment of Sugen/hypoxia rats with rapamycin after SU5416 injection activated the autophagic pathway and improved the balance between cell proliferation and apoptosis in pulmonary vascular ECs to reduce RVSP and pulmonary vascular remodeling. These results suggested that the autophagic pathway can suppress PAH progression and that rapamycin- dependent activation of the autophagic pathway could ameliorate PAH.

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