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Peroxisome proliferator-activated receptor gamma (PPAR-gamma) is a nuclear receptor that regulates fat metabolism, insulin sensitivity, and inflammatory processes in the body.
Peroxisome proliferator-activated receptor gamma (PPAR-gamma) is a nuclear receptor that regulates fat metabolism, insulin sensitivity, and inflammatory processes in the body.
Peroxisome proliferator-activated receptor gamma (abbreviated PPAR-gamma) is a nuclear transcription factor – a protein located within the cell nucleus that directly controls the activity of specific genes. It belongs to the PPAR family of receptors, which also includes PPAR-alpha and PPAR-beta/delta. PPAR-gamma is predominantly expressed in fat cells (adipocytes), but is also found in immune cells, intestinal cells, and various other tissues.
As a transcription factor, PPAR-gamma binds to specific segments of DNA and regulates the expression of genes involved in fat storage, glucose utilization, and inflammatory responses. It is widely regarded as a master regulator of lipid and glucose metabolism.
PPAR-gamma performs a wide range of important functions in the body:
PPAR-gamma is activated by a variety of endogenous and exogenous molecules:
In type 2 diabetes, insulin resistance is a hallmark feature – meaning cells no longer respond adequately to insulin. PPAR-gamma agonists such as pioglitazone improve insulin sensitivity by altering gene expression in fat and muscle cells so that glucose is absorbed more efficiently, thereby lowering blood sugar levels.
Because PPAR-gamma regulates fat cell formation and distribution, it is directly linked to obesity and the metabolic syndrome – a cluster of conditions including excess body weight, elevated blood lipids, high blood pressure, and impaired glucose metabolism. Certain genetic variants (polymorphisms) of the PPAR-gamma gene are associated with an increased risk of obesity and type 2 diabetes.
In vascular wall cells and macrophages, PPAR-gamma can influence the development of arteriosclerosis. It modulates the uptake of oxidized LDL cholesterol particles and the formation of foam cells, which play a central role in plaque development.
Due to its anti-inflammatory properties, PPAR-gamma is also an area of active research in inflammatory diseases such as rheumatoid arthritis, inflammatory bowel diseases (Crohn's disease, ulcerative colitis), and multiple sclerosis.
Altered PPAR-gamma activity has been observed in various tumor types. Both tumor-suppressive and tumor-promoting effects have been discussed depending on the tissue type. Research into PPAR-gamma as a potential target in oncology is ongoing.
The pharmacological activation of PPAR-gamma through thiazolidinediones may be associated with unwanted effects:
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