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Blogs on Insulin.
The effects of curcumin on IKB Alpha and the NFkB signaling pathway
The IKK complex, or inhibitor of NFkB kinase, is composed of IKK alpha and IKK beta. These kinases are at the core of the NFkB signaling cascade. The NFkB family is made up of transcription factors that are kept inactive in the cytoplasm through... Read full blog post.
AMPK Alpha 1 and lipid metabolism of adipocytes
AMP-activated protein kinase (AMPK) is best known as a sensor of oxidative stress. AMPK is activated by increased intracellular AMP levels, which are a result of alterations in cellular metabolism from causes such as hypoxia, changes in ATP, sene... Read full blog post.
ChREBP, a glucose sensitive transcription factor with role in glucose-lipids homeostasis and cancer
ChREBP (carbohydrate response element-binding protein) is a glucose responsive basic helix-loop-helix/leucine zipper (bHLH/LZ) transcription factor that binds MLX and then carbohydrate response element /ChoRE for the induction of genes involved in... Read full blog post.
Ghrelin: Targeting the Hunger Hormone to Combat Obesity and Type 2 Diabetes
As the hormone ghrelin is linked to appetite and weight gain, as well as impaired glucose-induced insulin secretion, there is considerable interest in this peptide as a potential drug target. Although the overall lack of success in this field has been... Read full blog post.
Novus Adiponectin Reagents Help to Progress Obesity & Diabetes Research
Adiponectin is most well-known for its role in glucose metabolism and fatty acid breakdown. Adiponectin is secreted solely by adipose tissue, and a person with a higher percentage of body fat will express lower levels of Adiponectin. When higher level... Read full blog post.
Signalling Advances in Adiponectin Antibody Research
Adiponectin is an adipocytokine protein that positively regulates metabolism of lipids and glucose by suppressing glucose production from the liver, stimulating insulin sensitivity, and increasing the rate of fatty acid oxidation and glucose uptake. I... Read full blog post.