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87 results on '"Megan R. McMullen"'

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1. Receptor-interacting protein 1 and 3 kinase activity are required for high-fat diet induced liver injury in mice

2. Altered anti-viral immune responses in monocytes in overweight heavy drinkers

3. Myeloid-cell-specific role of Gasdermin D in promoting lung cancer progression in mice

4. Differential role of MLKL in alcohol-associated and non–alcohol-associated fatty liver diseases in mice and humans

5. Multiomics-Identified Intervention to Restore Ethanol-Induced Dysregulated Proteostasis and Secondary Sarcopenia in Alcoholic Liver Disease

6. Functionally Diverse Inflammatory Responses in Peripheral and Liver Monocytes in Alcohol‐Associated Hepatitis

7. Nontranscriptional Activity of Interferon Regulatory Factor 3 Protects Mice From High‐Fat Diet‐Induced Liver Injury

8. Role of MIF in coordinated expression of hepatic chemokines in patients with alcohol-associated hepatitis

9. Differential role of MLKL in alcohol-associated and non–alcohol-associated fatty liver diseases in mice and humans

10. Anaphylatoxin Receptors C3aR and C5aR1 Are Important Factors That Influence the Impact of Ethanol on the Adipose Secretome

12. Hepatic kinome atlas: An in‐depth identification of kinase pathways in liver fibrosis of humans and rodents

13. Macrophage-derived MLKL in alcohol-associated liver disease: Regulation of phagocytosis

14. Activated Protein Phosphatase 2A Disrupts Nutrient Sensing Balance Between Mechanistic Target of Rapamycin Complex 1 and Adenosine Monophosphate–Activated Protein Kinase, Causing Sarcopenia in Alcohol‐Associated Liver Disease

15. Multiomics-Identified Intervention to Restore Ethanol-Induced Dysregulated Proteostasis and Secondary Sarcopenia in Alcoholic Liver Disease

16. Functionally Diverse Inflammatory Responses in Peripheral and Liver Monocytes in Alcohol‐Associated Hepatitis

17. Gut microbial trimethylamine is elevated in alcohol-associated hepatitis and contributes to ethanol-induced liver injury in mice

18. Author response: Gut microbial trimethylamine is elevated in alcohol-associated hepatitis and contributes to ethanol-induced liver injury in mice

20. Oxidative stress mediates ethanol-induced skeletal muscle mitochondrial dysfunction and dysregulated protein synthesis and autophagy

21. Nontranscriptional Activity of Interferon Regulatory Factor 3 Protects Mice From High‐Fat Diet‐Induced Liver Injury

22. Specifically Sized Hyaluronan (35 kDa) Prevents Ethanol‐Induced Disruption of Epithelial Tight Junctions Through a layilin‐Dependent Mechanism in Caco‐2 Cells

23. Differential role of MLKL in alcohol-associated and non–alcohol-associated fatty liver diseases in mice and humans

24. Inhibition of IRAK4 kinase activity improves ethanol-induced liver injury in mice

25. Role of MIF in coordinated expression of hepatic chemokines in patients with alcohol-associated hepatitis

26. MLKL-dependent signaling regulates autophagic flux in a murine model of non-alcohol-associated fatty liver and steatohepatitis

27. The Non-transcriptional Function of IRF3 Dynamically Regulates Immune Cell Populations in Acute on Chronic Ethanol in Mice

28. Hepatocyte-derived macrophage migration inhibitory factor mediates alcohol-induced liver injury in mice and patients

29. Hyaluronic acid 35 normalizes TLR4 signaling in Kupffer cells from ethanol-fed rats via regulation of microRNA291b and its target Tollip

30. Prophylactic tributyrin treatment mitigates chronic-binge ethanol-induced intestinal barrier and liver injury

31. MicroRNA 181b‐3p and its target importin α5 regulate toll‐like receptor 4 signaling in Kupffer cells and liver injury in mice in response to ethanol

32. Novel Role of Macrophage Migration Inhibitory Factor in Upstream Control of the Unfolded Protein Response after Ethanol Feeding in Mice

33. Erratum to: 'MLKL-dependent signaling regulates autophagic flux in a murine model of non-alcoholic-associated fatty liver and steatohepatitis (J Hepatol 2020; 73: 616–627)'

34. Myeloid Mixed Lineage Kinase 3 Contributes to Chronic Ethanol-Induced Inflammation and Hepatocyte Injury in Mice

35. Receptor interacting protein 3 protects mice from high-fat diet-induced liver injury

36. Anaphylatoxin Receptors C3aR and C5aR1 Are Important Factors That Influence the Impact of Ethanol on the Adipose Secretome

37. Complement Factor D protects mice from ethanol-induced inflammation and liver injury

38. Chronic Alcohol Exposure is Associated with Decreased Neurogenesis, Aberrant Integration of Newborn Neurons, and Cognitive Dysfunction in Female Mice

39. Myeloid-MyD88 Contributes to Ethanol-Induced Liver Injury in Mice Linking Hepatocellular Death to Inflammation

40. Mice Lacking C1q Are Protected from High Fat Diet-induced Hepatic Insulin Resistance and Impaired Glucose Homeostasis

41. Absence of receptor interacting protein kinase 3 prevents ethanol-induced liver injury

42. Differential contribution of complement receptor C5aR in myeloid and non-myeloid cells in chronic ethanol-induced liver injury in mice

43. IRAKM-Mincle axis links cell death to inflammation: Pathophysiological implications for chronic alcoholic liver disease

44. Molecular Mechanism for Adiponectin-dependent M2 Macrophage Polarization

45. The anti-inflammatory effects of adiponectin are mediated via a heme oxygenase-1-dependent pathway in rat Kupffer cells

46. Stimulation of macrophage TNFα production by orthopaedic wear particles requires activation of the ERK1/2/Egr-1 and NF-κB pathways but is independent of p38 and JNK

47. Suppression of Lipopolysaccharide-stimulated Tumor Necrosis Factor-α Production by Adiponectin Is Mediated by Transcriptional and Post-transcriptional Mechanisms

48. Short-term Treatment of RAW264.7 Macrophages with Adiponectin Increases Tumor Necrosis Factor-α (TNF-α) Expression via ERK1/2 Activation and Egr-1 Expression

49. Differential Contributions of C3, C5, and Decay-Accelerating Factor to Ethanol-Induced Fatty Liver in Mice

50. Chronic ethanol feeding increases activation of NADPH oxidase by lipopolysaccharide in rat Kupffer cells: role of increased reactive oxygen in LPS-stimulated ERK1/2 activation and TNF-α production

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