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126 results on '"Fatty Liver pathology"'

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1. Perirenal fat thickness is an independent predictor for metabolic syndrome in steatotic liver disease.

2. GSDME promotes MASLD by regulating pyroptosis, Drp1 citrullination-dependent mitochondrial dynamic, and energy balance in intestine and liver.

3. Prevalence of steatotic liver disease (MASLD, MetALD, ALD) and clinically significant fibrosis in US adolescents : Authors' name.

4. Hepatocyte-specific GDF15 overexpression improves high-fat diet-induced obesity and hepatic steatosis in mice via hepatic FGF21 induction.

5. Deletion of platelet-derived growth factor receptor β suppresses tumorigenesis in metabolic dysfunction-associated steatohepatitis (MASH) mice with diabetes.

6. Characterizing alcohol-related and metabolic dysfunction-associated steatotic liver disease cirrhosis via fibrotic pattern analysis.

7. Structure-function analysis of time-resolved immunological phases in metabolic dysfunction-associated fatty liver disease (MASH) comparing the NIF mouse model to human MASH.

8. Comparative associations of MASLD and MAFLD with the presence and severity of coronary artery calcification.

9. Normal caloric intake with high-fat diet induces metabolic dysfunction-associated steatotic liver disease and dyslipidemia without obesity in rats.

10. Metabolic dysfunction-associated steatotic liver disease and gallbladder polyp development: an observational study.

11. Impairment of health-related quality of life among people with type 2 diabetes and advanced liver fibrosis.

12. Maid gene dysfunction promotes hyperobesity via the reduction of adipose tissue inflammation in Mc4r gene-deficient mice.

13. Ferroptosis is a targetable detrimental factor in metabolic dysfunction-associated steatotic liver disease.

14. Far-infrared radiation alleviates steatohepatitis and fibrosis in metabolic dysfunction-associated fatty liver disease.

15. Effects of dietary fish to rapeseed oil ratio on steatosis symptoms in Atlantic salmon (Salmo salar L) of different sizes.

16. MASLD does not affect fertility and senolytics fail to prevent MASLD progression in male mice.

17. Postpartum development of metabolic dysfunction-associated steatotic liver disease in a lean mouse model of gestational diabetes mellitus.

18. Simulating federated learning for steatosis detection using ultrasound images.

19. Deep-learning segmentation to select liver parenchyma for categorizing hepatic steatosis on multinational chest CT.

20. Association of hepatic steatosis and liver fibrosis with chronic obstructive pulmonary disease among adults.

21. Oxidative stress, inflammation, and steatosis elucidate the complex dynamics of HgCl 2 induced liver damage in Channa punctata.

22. Application of multi-echo Dixon and MRS in quantifying hepatic fat content and staging liver fibrosis.

23. Reduced expression of OXPHOS and DNA damage genes is linked to protection from microvascular complications in long-term type 1 diabetes: the PROLONG study.

24. Electrical impedance tomography for non-invasive identification of fatty liver infiltrate in overweight individuals.

25. Treatment with atrial natriuretic peptide induces adipose tissue browning and exerts thermogenic actions in vivo.

26. Comparison of liver biopsies before and after direct-acting antiviral therapy for hepatitis C and correlation with clinical outcome.

27. The relative deficit of GDF15 in adolescent girls with PCOS can be changed into an abundance that reduces liver fat.

28. Ahnak deficiency attenuates high-fat diet-induced fatty liver in mice through FGF21 induction.

29. Effect of silibinin capsules combined with lifestyle modification on hepatic steatosis in patients with chronic hepatitis B.

30. Microbiota analysis and transient elastography reveal new extra-hepatic components of liver steatosis and fibrosis in obese patients.

31. Alteration of serum amino acid profiles by dietary adenine supplementation inhibits fatty liver development in rats.

32. Exploring the genetic basis of fatty liver development in geese.

33. NOD1 deficiency promotes an imbalance of thyroid hormones and microbiota homeostasis in mice fed high fat diet.

34. Hepatic steatosis among people living with HIV in Southern Brazil: prevalence and risk factors.

35. Similar prevalence of hepatic steatosis among patients with chronic hepatitis C with and without HIV coinfection.

36. CCN1 promotes hepatic steatosis and inflammation in non-alcoholic steatohepatitis.

37. WDR76 mediates obesity and hepatic steatosis via HRas destabilization.

38. Metabolic syndrome agravates cardiovascular, oxidative and inflammatory dysfunction during the acute phase of Trypanosoma cruzi infection in mice.

39. Deacetylation of XBP1s by sirtuin 6 confers resistance to ER stress-induced hepatic steatosis.

40. Overexpression of cyclooxygenase-2 in adipocytes reduces fat accumulation in inguinal white adipose tissue and hepatic steatosis in high-fat fed mice.

41. Liver MR relaxometry at 3T - segmental normal T 1 and T 2 * values in patients without focal or diffuse liver disease and in patients with increased liver fat and elevated liver stiffness.

42. Octacosanol and policosanol prevent high-fat diet-induced obesity and metabolic disorders by activating brown adipose tissue and improving liver metabolism.

43. Quantification of hepatic steatosis in chronic liver disease using novel automated method of second harmonic generation and two-photon excited fluorescence.

44. Maternal High-Fat Diet Programs Offspring Liver Steatosis in a Sexually Dimorphic Manner in Association with Changes in Gut Microbial Ecology in Mice.

45. Hesperidin and capsaicin, but not the combination, prevent hepatic steatosis and other metabolic syndrome-related alterations in western diet-fed rats.

46. Adaptive effect of sericin on hepatic mitochondrial conformation through its regulation of apoptosis, autophagy and energy maintenance: a proteomics approach.

47. Maternal high-fat diet consumption induces sex-dependent alterations of the endocannabinoid system and redox homeostasis in liver of adult rat offspring.

48. Human hepatic 3D spheroids as a model for steatosis and insulin resistance.

49. Histone H3K9 demethylase JMJD2B induces hepatic steatosis through upregulation of PPARγ2.

50. Targeting a phospho-STAT3-miRNAs pathway improves vesicular hepatic steatosis in an in vitro and in vivo model.

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