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1. Rare Sequence Variation Underlying Suspected Familial Cerebral Small‐Vessel Disease

2. Blood DNA methylation profiling identifies cathepsin Z dysregulation in pulmonary arterial hypertension

3. Mendelian Randomization Study With Clinical Follow‐Up Links Metabolites to Risk and Severity of Pulmonary Arterial Hypertension

4. Complement lectin pathway activation is associated with COVID-19 disease severity, independent of MBL2 genotype subgroups

5. Biallelic variants in the calpain regulatory subunit CAPNS1 cause pulmonary arterial hypertension

6. Reduced circulating BMP9 and pBMP10 in hospitalized COVID‐19 patients

7. Biological heterogeneity in idiopathic pulmonary arterial hypertension identified through unsupervised transcriptomic profiling of whole blood

8. Distinction of early complement classical and lectin pathway activation via quantification of C1s/C1-INH and MASP-1/C1-INH complexes using novel ELISAs

9. Levels of soluble complement regulators predict severity of COVID-19 symptoms

10. A pilot study to examine association of BMI with functional class and 6 min walk distance in idiopathic and heritable PAH: Possible association with estrogen metabolism

11. Rare variant analysis of 4241 pulmonary arterial hypertension cases from an international consortium implicates FBLN2, PDGFD, and rare de novo variants in PAH

12. Author Correction: Biological heterogeneity in idiopathic pulmonary arterial hypertension identified through unsupervised transcriptomic profiling of whole blood

13. Identification of rare sequence variation underlying heritable pulmonary arterial hypertension

14. Correction to: Rare variant analysis of 4241 pulmonary arterial hypertension cases from an international consortium implicates FBLN2, PDGFD, and rare de novo variants in PAH

15. Molecular Function and Contribution of TBX4 in Development and Disease

16. 100,000 Genomes Pilot on Rare-Disease Diagnosis in Health Care — Preliminary Report

17. Federated learning for predicting clinical outcomes in patients with COVID-19

18. Biallelic variants of ATP13A3 cause dose-dependent childhood-onset pulmonary arterial hypertension characterised by extreme morbidity and mortality

19. Molecular Function and Contribution of

20. Defining the Clinical Validity of Genes Reported to Cause Pulmonary Arterial Hypertension

23. Mining the Plasma Proteome for Insights into the Molecular Pathology of Pulmonary Arterial Hypertension

24. Autoimmunity Is a Significant Feature of Idiopathic Pulmonary Arterial Hypertension

25. Mendelian randomisation and experimental medicine approaches to interleukin-6 as a drug target in pulmonary arterial hypertension

26. Eukaryotic life without tQCUG: the role of Elongator-dependent tRNA modifications in Dictyostelium discoideum

27. SARS-CoV-2 spike N-terminal domain modulates TMPRSS2-dependent viral entry and fusogenicity

29. Cerebral autosomal recessive arteriopathy with subcortical infarcts and leukoencephalopathy (CARASIL)

30. Severe pulmonary arterial hypertension is characterized by increased neutrophil elastase and relative elafin deficiency

31. Repair of heat load damaged plasma–facing material using the wire-based laser metal deposition process

32. Direct influence of BMPR2 mutations on cytokine patterns and biomarker effectiveness in pulmonary arterial hypertension

33. Biallelic variants of

34. NOTCH3 variants are more common than expected in the general population and associated with stroke and vascular dementia: an analysis of 200 000 participants

35. S91 Patterns of cytokines and growth factors in pulmonary arterial hypertension patients with BMPR2 mutations and PAH patients without driving mutations and their influence on survival

36. Comparative morphology of the musculature of the sting apparatus in Ampulex compressa (Hymenoptera, Ampulicidae) and Sceliphron destillatorium (Hymenoptera, Sphecidae)

37. Federated Learning used for predicting outcomes in SARS-COV-2 patients

38. NOTCH3 variants are common in the general population and associated with stroke and vascular dementia: an analysis of 200,000 participants

39. Bayesian Inference Associates Rare KDR Variants with Specific Phenotypes in Pulmonary Arterial Hypertension

40. ‘There and Back Again’—Forward Genetics and Reverse Phenotyping in Pulmonary Arterial Hypertension

41. The role of genomics and genetics in pulmonary arterial hypertension

42. Expression quantitative trait locus mapping in pulmonary arterial hypertension

43. Author response: Effective control of SARS-CoV-2 transmission between healthcare workers during a period of diminished community prevalence of COVID-19

44. Rare variant analysis of 4,241 pulmonary arterial hypertension cases from an international consortium implicateFBLN2,PDGFDand rarede novovariants in PAH

45. Author response: Screening of healthcare workers for SARS-CoV-2 highlights the role of asymptomatic carriage in COVID-19 transmission

46. SOX17 Deficiency Impairs Tube Network Formation Through the Reduction of Arterial Identity in Pulmonary Arterial Hypertension

47. Familial pulmonary arterial hypertension by KDR heterozygous loss of function

48. Characterization of GDF2 Mutations and Levels of BMP9 and BMP10 in Pulmonary Arterial Hypertension

49. Molecular genetic framework underlying pulmonary arterial hypertension

50. Characterization of the Clinical and Immunologic Phenotype and Management of 157 Individuals with 56 Distinct Heterozygous NFKB1 Mutations

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