Functional Roles of CD26/DPP4 in Bleomycin-Induced Pulmonary Hypertension Associated with Interstitial Lung Disease.
Tadasu OkayaTakeshi KawasakiShun SatoYu KoyanagiKoichiro TatsumiRyo HatanoKei OhnumaChikao MorimotoYoshitoshi KasuyaYoshinori HasegawaOsamu OharaTakuji SuzukiPublished in: International journal of molecular sciences (2024)
Pulmonary hypertension (PH) with interstitial lung diseases (ILDs) often causes intractable conditions. CD26/Dipeptidyl peptidase-4 (DPP4) is expressed in lung constituent cells and may be related to the pathogenesis of various respiratory diseases. We aimed to clarify the functional roles of CD26/DPP4 in PH-ILD, paying particular attention to vascular smooth muscle cells (SMCs). Dpp4 knockout ( Dpp4 KO) and wild type (WT) mice were administered bleomycin (BLM) intraperitoneally to establish a PH-ILD model. The BLM-induced increase in the right ventricular systolic pressure and the right ventricular hypertrophy observed in WT mice were attenuated in Dpp4 KO mice. The BLM-induced vascular muscularization in small pulmonary vessels in Dpp4 KO mice was milder than that in WT mice. The viability of TGFβ-stimulated human pulmonary artery SMCs (hPASMCs) was lowered due to the DPP4 knockdown with small interfering RNA. According to the results of the transcriptome analysis, upregulated genes in hPASMCs with TGFβ treatment were related to pulmonary vascular SMC proliferation via the Notch, PI3K-Akt, and NFκB signaling pathways. Additionally, DPP4 knockdown in hPASMCs inhibited the pathways upregulated by TGFβ treatment. These results suggest that genetic deficiency of Dpp4 protects against BLM-induced PH-ILD by alleviating vascular remodeling, potentially through the exertion of an antiproliferative effect via inhibition of the TGFβ-related pathways in PASMCs.
Keyphrases
- pulmonary hypertension
- interstitial lung disease
- pulmonary artery
- wild type
- signaling pathway
- pi k akt
- systemic sclerosis
- high glucose
- high fat diet induced
- diabetic rats
- drug induced
- transforming growth factor
- cell cycle arrest
- vascular smooth muscle cells
- cell proliferation
- pulmonary arterial hypertension
- coronary artery
- rheumatoid arthritis
- induced apoptosis
- heart failure
- endothelial cells
- oxidative stress
- gene expression
- cell death
- adipose tissue
- angiotensin ii
- toll like receptor
- working memory
- genome wide
- skeletal muscle
- pulmonary fibrosis
- immune response
- transcription factor
- replacement therapy
- endoplasmic reticulum stress
- lps induced
- combination therapy