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223 results on '"Estall, Jennifer"'

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2. Identification of biomarkers for glycaemic deterioration in type 2 diabetes

6. Parvalbumin gates chronic pain through the modulation of firing patterns in inhibitory neurons.

8. IL-6 trans-signaling is increased in diabetes, impacted by glucolipotoxicity and associated with liver stiffness and fibrosis in fatty liver disease

10. LIM and cysteine-rich domains 1 (LMCD1) regulates skeletal muscle hypertrophy, calcium handling, and force

13. β-Aminoisobutyric Acid Induces Browning of White Fat and Hepatic β-Oxidation and Is Inversely Correlated with Cardiometabolic Risk Factors

17. 299-OR: Molecular and Physiological Consequences of the Diabetes-Related PGC1A Gly482Ser Polymorphism

22. Phenotypic Characterization of MIP-CreERT1Lphi Mice With Transgene-Driven Islet Expression of Human Growth Hormone

25. Loss of hepatic Flcn protects against fibrosis and inflammation by activating autophagy pathways

27. Prdm16 determines the thermogenic program of subcutaneous white adipose tissue in mice

28. Anti-diabetic drugs inhibit obesity-linked phosphorylation of PPARγ by Cdk5

30. Lower plasma PCSK9 in normocholesterolemic subjects is associated with upregulated adipose tissue surface‐expression of LDLR and CD36 and NLRP3 inflammasome

31. Dual regulation of cell proliferation and survival via activation of glucagon-like peptide-2 receptor signaling

34. The lncRNA H19-Derived MicroRNA-675 Promotes Liver Necroptosis by Targeting FADD

36. Loss of Furin in β-Cells Induces an mTORC1-ATF4 Anabolic Pathway That Leads to β-Cell Dysfunction

42. LIM and cysteine-rich domains 1 (LMCD1) regulates skeletal muscle hypertrophy, calcium handling, and force

44. Heterogeneity of Diabetes: β-Cells, Phenotypes, and Precision Medicine: Proceedings of an International Symposium of the Canadian Institutes of Health Research's Institute of Nutrition, Metabolism and Diabetes and the U.S. National Institutes of Health's National Institute of Diabetes and Digestive and Kidney Diseases.

45. MOESM3 of LIM and cysteine-rich domains 1 (LMCD1) regulates skeletal muscle hypertrophy, calcium handling, and force

50. Loss of in β-Cells Induces an mTORC1-ATF4 Anabolic Pathway That Leads to β-Cell Dysfunction.

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