Prostanoid EP4 agonist L-902,688 activates PPARγ and attenuates pulmonary arterial hypertension

Author:

Li Hsin-Hsien1,Hsu Hsao-Hsun2,Chang Gwo-Jyh3,Chen I-Chen3,Ho Wan-Jing4,Hsu Pei-Chen2,Chen Wei-Jan4,Pang Jong-Hwei S.3,Huang Chung-Chi15,Lai Ying-Ju146ORCID

Affiliation:

1. Department of Respiratory Therapy, Chang-Gung University College of Medicine, Tao-Yuan, Taiwan

2. Division of Thoracic Surgery, Department of Surgery, National Taiwan University Hospital and National Taiwan University College of Medicine, Taipei, Taiwan

3. Graduate Institute of Clinical Medical Sciences, Chang Gung University, Tao-Yuan, Taiwan

4. Cardiovascular Division, Chang Gung Memorial Hospital, Tao-Yuan, Taiwan

5. Division of Thoracic Medicine, Chang Gung Memorial Hospital, Tao-Yuan, Taiwan

6. Department of Respiratory Care, Chang-Gung University of Science and Technology, Chia-Yi, Taiwan

Abstract

Prostacyclin agonists that bind the prostacyclin receptor (IP) to stimulate cAMP synthesis are effective vasodilators for the treatment of idiopathic pulmonary arterial hypertension (IPAH), but this signaling may occur through nuclear peroxisome proliferator-activated receptor-γ (PPARγ). There is evidence of scant IP and PPARγ expression but stable prostanoid EP4 receptor (EP4) expression in IPAH patients. Both IP and EP4 functionally couple with stimulatory G protein (Gs), which activates signal transduction. We investigated the effect of an EP4-specific agonist on pulmonary arterial remodeling and its regulatory mechanisms in pulmonary arterial smooth muscle cells (PASMCs). Immunoblotting evealed IP, EP4, and PPARγ expression in human pulmonary arterial hypertension (PAH) and monocrotaline (MCT)-induced PAH rat lung tissue. Isolated PASMCs from MCT-induced PAH rats (MCT-PASMCs) were treated with L-902,688, a selective EP4 agonist, to investigate the anti-vascular remodeling effect. Scant expression of IP and PPARγ but stable expression of EP4 was observed in IPAH patient lung tissues and MCT-PASMCs. L-902,688 inhibited IP-insufficient MCT-PASMC proliferation and migration by activating PPARγ in a time- and dose-dependent manner, but these effects were reversed by AH-23848 (an EP4 antagonist) and H-89 [a protein kinase A (PKA) inhibitor], highlighting the crucial role of PPARγ in the activity of this EP4 agonist. L-902,688 attenuated pulmonary arterial remodeling in hypoxic PAH mice and MCT-induced PAH rats; therefore, we conclude that the selective EP4 agonist L-902,688 reverses vascular remodeling by activating PPARγ. This study identified a novel EP4-PKA-PPARγ pathway, and we propose EP4 as a potential therapeutic target for PAH.

Funder

National Science Council Taiwan (NSC)

Chang Gung Medical Foundation

Ministry of Science and Technology

Taiwan health foundation

Gary and Amy foundation

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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