Niacin Attenuates Pulmonary Hypertension Through H-PGDS in Macrophages.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32912104.
- Also identified by DOI 10.1161/CIRCRESAHA.120.316784.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Pulmonary arterial hypertension (PAH) is characterized by progressive pulmonary vascular remodeling, accompanied by varying degrees of perivascular inflammation. Niacin, a commonly used lipid-lowering drug, possesses vasodilating and proresolution effects by promoting the release of prostaglandin D<sub>2</sub> (PGD<sub>2</sub>). However, whether or not niacin confers protection against PAH pathogenesis is still unknown. This study aimed to determine whether or not niacin attenuates the development of PAH and, if so, to elucidate the molecular mechanisms underlying its effects. Vascular endothelial growth factor receptor inhibitor SU5416 and hypoxic exposure were used to induce pulmonary hypertension (PH) in rodents. We found that niacin attenuated the development of this hypoxia/SU5416-induced PH in mice and suppressed progression of monocrotaline-induced and hypoxia/SU5416-induced PH in rats through the reduction of pulmonary artery remodeling. Niacin boosted PGD<sub>2</sub> generation in lung tissue, mainly through H-PGDS (hematopoietic PGD<sub>2</sub> synthases). Deletion of H-PGDS, but not lipocalin-type PGDS, exacerbated the hypoxia/SU5416-induced PH in mice and abolished the protective effects of niacin against PAH. Moreover, H-PGDS was expressed dominantly in infiltrated macrophages in lungs of PH mice and patients with idiopathic PAH. Macrophage-specific deletion of H-PGDS markedly decreased PGD<sub>2</sub> generation in lungs, aggravated hypoxia/SU5416-induced PH in mice, and attenuated the therapeutic effect of niacin on PAH. Niacin treatment ameliorates the progression of PAH through the suppression of vascular remodeling by stimulating H-PGDS-derived PGD<sub>2</sub> release from macrophages.
Medical subject headings
- Antihypertensive Agents
- Hypertension, Pulmonary
- Hypolipidemic Agents
- Macrophages
- Niacin