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1. Association of circulating PLA2G7 levels with cancer cachexia and assessment of darapladib as a therapy

2. Imaging modalities for diagnosis and monitoring of cancer cachexia

3. Trip13 Depletion in Liver Cancer Induces a Lipogenic Response Contributing to Plin2‐Dependent Mitotic Cell Death

4. Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism

5. α−Calcitonin gene-related peptide inhibits autophagy and calpain systems and maintains the stability of neuromuscular junction in denervated muscles

6. ‘Corrigendum to 'Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia' [Molecular Metabolism 5 (2) (2015) 67–78]’

7. A Hepatic GAbp-AMPK Axis Links Inflammatory Signaling to Systemic Vascular Damage

8. The necroptosis-inducing kinase RIPK3 dampens adipose tissue inflammation and glucose intolerance

9. Fasting‐induced liver GADD45β restrains hepatic fatty acid uptake and improves metabolic health

10. Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia

11. Transcriptional co‐factor Transducin beta‐like (TBL) 1 acts as a checkpoint in pancreatic cancer malignancy

12. TSC22D4 is a molecular output of hepatic wasting metabolism

13. PPP2R5C Couples Hepatic Glucose and Lipid Homeostasis.

14. Positional cloning of zinc finger domain transcription factor Zfp69, a candidate gene for obesity-associated diabetes contributed by mouse locus Nidd/SJL.

15. Erratum To: Corrigendum

16. Virtual reality empowered deep learning analysis of brain activity

17. Supplementary Data from Therapy-Related Transcriptional Subtypes in Matched Primary and Recurrent Head and Neck Cancer

18. Supplementary Table from Therapy-Related Transcriptional Subtypes in Matched Primary and Recurrent Head and Neck Cancer

19. Data from Therapy-Related Transcriptional Subtypes in Matched Primary and Recurrent Head and Neck Cancer

20. Supplementary Figure from Therapy-Related Transcriptional Subtypes in Matched Primary and Recurrent Head and Neck Cancer

21. Association of circulating PLA2G7 levels with cancer cachexia and assessment of darapladib as a therapy

22. High levels of modified ceramides are a defining feature of murine and human cancer cachexia

23. Abstract LB022: A novel first-in-class USP19 inhibitor for the treatment of cancer-induced muscle atrophy

24. Therapy-related transcriptional subtypes in matched primary and recurrent head and neck cancer

25. Liver-fibrosis-activated transcriptional networks govern hepatocyte reprogramming and intra-hepatic communication

26. Combination therapies induce cancer cell death through the integrated stress response and disturbed pyrimidine metabolism

27. Aging Aggravates Cachexia in Tumor-Bearing Mice

28. Control of diabetic hyperglycaemia and insulin resistance through TSC22D4

29. In vivoassessment of cold stimulation effects on the fat fraction of brown adipose tissue using DIXON MRI

30. Fasting‐induced liver <scp>GADD</scp> 45β restrains hepatic fatty acid uptake and improves metabolic health

31. ‘Corrigendum to 'Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia' [Molecular Metabolism 5 (2) (2015) 67–78]’

32. α−Calcitonin gene-related peptide inhibits autophagy and calpain systems and maintains the stability of neuromuscular junction in denervated muscles

33. Hepatic Rab24 controls blood glucose homeostasis via improving mitochondrial plasticity

34. Cancer Cachexia: More Than Skeletal Muscle Wasting

35. Thermogenic adipocytes: From cells to physiology and medicine

36. Acetyl-CoA carboxylase 1-dependent protein acetylation controls breast cancer metastasis and recurrence

37. In vivo assessment of cold stimulation effects on the fat fraction of brown adipose tissue using DIXON MRI

38. A hepatic GAbp-AMPK axis links inflammatory signaling to systemic vascular damage

39. TSC22D4 is a molecular output of hepatic wasting metabolism

40. Biological Mechanisms for the Effect of Obesity on Cancer Risk: Experimental Evidence

41. The necroptosis-inducing kinase RIPK3 dampens adipose tissue inflammation and glucose intolerance

42. Mouse redox histology using genetically encoded probes

43. An AMP-activated protein kinase-stabilizing peptide ameliorates adipose tissue wasting in cancer cachexia in mice

44. Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia

45. Molecular Control of Systemic Bile Acid Homeostasis by the Liver Glucocorticoid Receptor

46. Hepatic Deficiency in Transcriptional Cofactor TBL1 Promotes Liver Steatosis and Hypertriglyceridemia

47. In vivo phosphoenolpyruvate carboxykinase promoter mapping identifies disrupted hormonal synergism as a target of inflammation during sepsis in mice

48. Liver-Specific Loss of Lipolysis-Stimulated Lipoprotein Receptor Triggers Systemic Hyperlipidemia in Mice

49. The Glucocorticoid Receptor Controls Hepatic Dyslipidemia through Hes1

50. Nuclear receptor cofactor receptor interacting protein 140 controls hepatic triglyceride metabolism during wasting in mice

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