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1. Large-scale gene-centric analysis identifies novel variants for coronary artery disease

2. Association between alcohol and cardiovascular disease: Mendelian randomisation analysis based on individual participant data

3. Loci influencing blood pressure identified using a cardiovascular gene-centric array (vol 22, pg 1663, 2013)

4. Erratum: Meta-analysis of dense genecentric association studies reveals common and uncommon variants associated with height ((The American Journal of Human Genetics (2010) 88 (6-18))

5. Erratum: Large-scale gene-centric meta-analysis across 39 studies identifies type 2 diabetes loci (American Journal of Human Genetics (2012) 90 (410-425))

6. Homocysteine and coronary heart disease: Meta-analysis of MTHFR case-control studies, avoiding publication bias

7. Myeloid I kappa B alpha Deficiency Promotes Atherogenesis by Enhancing Leukocyte Recruitment to the Plaques

8. The Copper Metabolism MURR1 Domain Protein 1 (COMMD1) Modulates the Aggregation of Misfolded Protein Species in a Client-Specific Manner

9. Dissection of the complex role of apolipoprotein E in lipoprotein metabolism and atherosclerosis using mouse models

10. Genetic association analysis of LARS2 with type 2 diabetes

11. Genetic ablation of macrohistone H2A1 leads to increased leanness, glucose tolerance and energy expenditure in mice fed a high-fat diet

13. Hematopoietic Npc1 mutation shifts gut microbiota composition in Ldlr -/- mice on a high-fat, high-cholesterol diet.

14. Gut Microbial Associations to Plasma Metabolites Linked to Cardiovascular Phenotypes and Risk.

15. A Proinflammatory Gut Microbiota Increases Systemic Inflammation and Accelerates Atherosclerosis.

16. Gut microbiota composition and functional changes in inflammatory bowel disease and irritable bowel syndrome.

17. Author Correction: Individual variations in cardiovascular-disease-related protein levels are driven by genetics and gut microbiome.

18. Individual variations in cardiovascular-disease-related protein levels are driven by genetics and gut microbiome.

19. Adipose tissue macrophages induce hepatic neutrophil recruitment and macrophage accumulation in mice.

20. The COMMD Family Regulates Plasma LDL Levels and Attenuates Atherosclerosis Through Stabilizing the CCC Complex in Endosomal LDLR Trafficking.

21. Blood-derived macrophages prone to accumulate lysosomal lipids trigger oxLDL-dependent murine hepatic inflammation.

22. NF-κB p65 serine 467 phosphorylation sensitizes mice to weight gain and TNFα-or diet-induced inflammation.

23. A liver-specific long noncoding RNA with a role in cell viability is elevated in human nonalcoholic steatohepatitis.

24. Cathepsin D regulates lipid metabolism in murine steatohepatitis.

25. Oxidized LDL at the crossroads of immunity in non-alcoholic steatohepatitis.

26. Plasma cathepsin D correlates with histological classifications of fatty liver disease in adults and responds to intervention.

27. The effect of host genetics on the gut microbiome.

28. Nuclear COMMD1 Is Associated with Cisplatin Sensitivity in Ovarian Cancer.

29. Low levels of IgM antibodies recognizing oxidation-specific epitopes are associated with human non-alcoholic fatty liver disease.

30. Novel Biomarkers to Improve the Prediction of Cardiovascular Event Risk in Type 2 Diabetes Mellitus.

31. Population-based metagenomics analysis reveals markers for gut microbiome composition and diversity.

32. CCC- and WASH-mediated endosomal sorting of LDLR is required for normal clearance of circulating LDL.

33. Effects of Anthocyanin and Flavanol Compounds on Lipid Metabolism and Adipose Tissue Associated Systemic Inflammation in Diet-Induced Obesity.

34. Plasma cholesteryl ester transfer protein is predominantly derived from Kupffer cells.

35. GWAS as a Driver of Gene Discovery in Cardiometabolic Diseases.

36. The Gut Microbiome Contributes to a Substantial Proportion of the Variation in Blood Lipids.

37. Bone marrow-specific caspase-1/11 deficiency inhibits atherosclerosis development in Ldlr(-/-) mice.

38. High-fat diet induced obesity primes inflammation in adipose tissue prior to liver in C57BL/6j mice.

39. The immunity-diet-microbiota axis in the development of metabolic syndrome.

40. Plasma cathepsin D levels: a novel tool to predict pediatric hepatic inflammation.

41. Mendelian randomization of blood lipids for coronary heart disease.

42. Determining the association between adipokine expression in multiple tissues and phenotypic features of non-alcoholic fatty liver disease in obesity.

43. Hematopoietic overexpression of Cyp27a1 reduces hepatic inflammation independently of 27-hydroxycholesterol levels in Ldlr(-/-) mice.

44. Genetic ablation of macrohistone H2A1 leads to increased leanness, glucose tolerance and energy expenditure in mice fed a high-fat diet.

45. Systematic annotation of celiac disease loci refines pathological pathways and suggests a genetic explanation for increased interferon-gamma levels.

46. Cholesterol-induced hepatic inflammation does not underlie the predisposition to insulin resistance in dyslipidemic female LDL receptor knockout mice.

47. Plasma IL-1 receptor antagonist levels correlate with the development of non-alcoholic steatohepatitis.

48. A cell-type-specific role for murine Commd1 in liver inflammation.

49. Nonalcoholic fatty liver disease: A main driver of insulin resistance or a dangerous liaison?

50. A systematic review and meta-analysis of 130,000 individuals shows smoking does not modify the association of APOE genotype on risk of coronary heart disease.

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