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Your search keyword '"Zhou, Enchen"' showing total 42 results

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1. Discrimination of cell-intrinsic and environment-dependent effects of natural genetic variation on Kupffer cell epigenomes and transcriptomes

2. Inhibition of DHCR24 activates LXRα to ameliorate hepatic steatosis and inflammation.

3. Role of thermogenic adipose tissue in lipid metabolism and atherosclerotic cardiovascular disease: lessons from studies in mice and humans.

4. Dietary butyrate ameliorates metabolic health associated with selective proliferation of gut Lachnospiraceae bacterium 28-4.

5. FGF21 protects against hepatic lipotoxicity and macrophage activation to attenuate fibrogenesis in nonalcoholic steatohepatitis.

7. Pharmacological treatment with FGF21 strongly improves plasma cholesterol metabolism to reduce atherosclerosis.

10. FGF21 protects against hepatic lipotoxicity and macrophage activation to attenuate fibrogenesis in nonalcoholic steatohepatitis

11. Author response: FGF21 protects against hepatic lipotoxicity and macrophage activation to attenuate fibrogenesis in nonalcoholic steatohepatitis

12. A Systems Analysis of Phenotype Heterogeneity in APOE*3Leiden.CETP Mice Induced by Long-Term High-Fat High-Cholesterol Diet Feeding

13. Systematic analysis of transcriptional and epigenetic effects of genetic variation in Kupffer cells enables discrimination of cell intrinsic and environment-dependent mechanisms

14. FGF21 protects against hepatic lipotoxicity and macrophage activation to attenuate fibrogenesis in nonalcoholic steatohepatitis

16. A Systems Analysis of Phenotype Heterogeneity in APOE*3Leiden.CETP Mice Induced by Long-Term High-Fat High-Cholesterol Diet Feeding

18. Hepatic Scavenger Receptor Class B Type 1 Knockdown Reduces Atherosclerosis and Enhances the Antiatherosclerotic Effect of Brown Fat Activation in APOE*3-Leiden.CETP Mice

19. Pharmacological treatment with FGF21 strongly improves plasma cholesterol metabolism to reduce atherosclerosis

20. Deletion of haematopoietic Dectin-2 or CARD9 does not protect from atherosclerosis development under hyperglycaemic conditions

22. Deletion of haematopoietic Dectin-2 or CARD9 does not protect from atherosclerosis development under hyperglycaemic conditions

23. Deletion of hematopoietic Dectin-2 or CARD9 does not protect against atherosclerotic plaque formation in hyperlipidemic mice

24. Colesevelam enhances the beneficial effects of brown fat activation on hyperlipidaemia and atherosclerosis development

25. Colesevelam enhances the beneficial effects of brown fat activation on hyperlipidaemia and atherosclerosis development.

27. Butyrate reduces appetite and activates brown adipose tissue via the gut-brain neural circuit

28. Oxidized low-density lipoprotein-induced microparticles promote endothelial monocyte adhesion via intercellular adhesion molecule 1

32. Butyrate reduces appetite and activates brown adipose tissue via the gut-brain neural circuit.

35. Butyrate reduces appetite and activates brown adipose tissue via the gut-brain neural circuit

36. Resonance Parameters of 58Ni + n and 60Ni + n from Very High Resolution Transmission Measurements

37. Nuclear Data Sheets for A=51

38. Nuclear data sheets for A = 55

40. The Evaluation of Neutron Resonance Parameters

41. Deletion of haematopoietic Dectin-2 or CARD9 does not protect from atherosclerosis development under hyperglycaemic conditions.

42. Oxidized low-density lipoprotein-induced microparticles promote endothelial monocyte adhesion via intercellular adhesion molecule 1.

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