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1. Characterization of long-term interleukin-33 administration as an animal model of pulmonary arterial hypertension.

2. Long-term swimming exercise attenuates right ventricular hypertrophy via modulating meta-inflammation in monocrotaline-induced pulmonary hypertensive rats.

3. High relative humidity environment alleviates hypoxia-induced pulmonary arterial hypertension in mice.

4. Vitamin D receptor and its antiproliferative effect in human pulmonary arterial hypertension.

5. Ferroptosis-Mediated Inflammation Promotes Pulmonary Hypertension.

6. Nuclear factor of activated T-cells 5 is indispensable for a balanced adaptive transcriptional response of lung endothelial cells to hypoxia.

7. Endonuclear Circ-calm4 regulates ferroptosis via a circR-Loop of the COMP gene in pulmonary artery smooth muscle cells.

8. CXCL12/CXCR4 pathway as a novel therapeutic target for RNF213-associated pulmonary arterial hypertension.

9. Mitochondria as a primary determinant of angiogenic modality in pulmonary arterial hypertension.

10. Stress Granule Assembly in Pulmonary Arterial Hypertension.

11. Characteristic disease defects in circulating endothelial cells isolated from patients with pulmonary arterial hypertension.

12. Dapagliflozin alleviates right heart failure by promoting collagen degradation by reducing ROS levels.

13. Extra domain A-containing fibronectin in pulmonary hypertension and treatment effects of a function-blocking antibody.

14. The Role of Mast Cells in the Remodeling Effects of Molecular Hydrogen on the Lung Local Tissue Microenvironment under Simulated Pulmonary Hypertension.

15. MFN2-dependent mitochondrial dysfunction contributes to Relm-β-induced pulmonary arterial hypertension via USP18/Twist1/miR-214 pathway.

16. CircLMBR1 inhibits phenotypic transformation of hypoxia-induced pulmonary artery smooth muscle via the splicing factor PUF60.

17. Alveolar capillary dysplasia with misalignment of the pulmonary veins: A surgical lung biopsy and autopsy in a full-term newborn.

18. CircSSR1 regulates pyroptosis of pulmonary artery smooth muscle cells through parental protein SSR1 mediating endoplasmic reticulum stress.

19. Methyltransferase-Like 3-Mediated N6-Methyladenosine RNA Methylation Regulates Hypoxia-Induced Pulmonary Arterial Smooth Muscle Cell Pyroptosis by Targeting PTEN.

20. MSC-derived exosomes attenuates pulmonary hypertension via inhibiting pulmonary vascular remodeling.

21. SOX9 promotes hypoxic pulmonary hypertension through stabilization of DPP4 in pulmonary artery smooth muscle cells.

22. Circulating free heme induces cytokine storm and pulmonary hypertension through the MKK3/p38 axis.

23. Endothelial PHD2 deficiency induces apoptosis resistance and inflammation via AKT activation and AIP1 loss independent of HIF2α.

24. 5-Aminoimidazole-4-carboxamide ribonucleotide formyltransferase/inosine monophosphate cyclohydrolase promotes pulmonary arterial smooth muscle cell proliferation via the Ras signaling pathway.

25. TNF-α and RPLP0 drive the apoptosis of endothelial cells and increase susceptibility to high-altitude pulmonary edema.

26. Novel Hemodynamic, Vascular Lesion, and Cytokine/Chemokine Differences Regarding Sex in a Pulmonary Arterial Hypertension Model.

27. LncRNA MIR210HG promotes phenotype switching of pulmonary arterial smooth muscle cells through autophagy-dependent ferroptosis pathway.

28. LOXL2 inhibition ameliorates pulmonary artery remodeling in pulmonary hypertension.

29. Dissecting the lung transcriptome of pulmonary fibrosis-associated pulmonary hypertension.

30. Melatonin effects on oxidative stress and on TLR4/NF-kβ inflammatory pathway in the right ventricle of rats with pulmonary arterial hypertension.

31. Enhanced glycolysis causes extracellular acidification and activates acid-sensing ion channel 1a in hypoxic pulmonary hypertension.

32. Chronic diesel exhaust exposure induced pulmonary vascular remodeling a potential trajectory for traffic related pulmonary hypertension.

33. GCN2 kinase activation mediates pulmonary vascular remodeling and pulmonary arterial hypertension.

34. Skeletal Muscle SIRT3 Deficiency Contributes to Pulmonary Vascular Remodeling in Pulmonary Hypertension Due to Heart Failure With Preserved Ejection Fraction.

35. DYZY01 alleviates pulmonary hypertension via inhibiting endothelial cell pyroptosis and rescuing endothelial dysfunction.

36. Pulmo-protection of long-term swimming exercise via improving insulin sensitivity in monocrotaline-induced pulmonary hypertensive rats.

37. STING Contributes to Pulmonary Hypertension by Targeting IFN and BMPR2 Signaling through Regulating of F2RL3.

38. Sodium Houttuyfonate Alleviates Monocrotaline-induced Pulmonary Hypertension by Regulating Orai1 and Orai2.

39. PAI-1 deficiency drives pulmonary vascular smooth muscle remodeling and pulmonary hypertension.

40. Collagen 18A1/Endostatin Expression in the Progression of Right Ventricular Remodeling and Dysfunction in Pulmonary Arterial Hypertension.

41. TG2 participates in pulmonary vascular remodelling by regulating the senescence of pulmonary artery smooth muscle cells.

42. The role and mechanism of FTO in pulmonary vessels.

43. Classical dendritic cells contribute to hypoxia-induced pulmonary hypertension.

44. Levosimendan mediates the BMP/Smad axis through upregulation of circUSP34-targeted miR-1298 to alleviate pulmonary hypertension.

45. Animal models of pulmonary arterial hypertension associated with atrial septal defect.

46. Endothelial Heterogeneity in the Response to Autophagy Drives Small Vessel Muscularization in Pulmonary Hypertension.

47. Lactate dehydrogenase A (LDHA)-mediated lactate generation promotes pulmonary vascular remodeling in pulmonary hypertension.

48. Emerging connectivity of programmed cell death pathways and pulmonary vascular remodelling during pulmonary hypertension.

49. A novel PDGFR inhibitor WQ-C-401 prevents pulmonary vascular remodeling in rats with monocrotaline-induced pulmonary arterial hypertension.

50. A comprehensive map of proteoglycan expression and deposition in the pulmonary arterial wall in health and pulmonary hypertension.

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