-
DE
Insulin receptor analysis examines the number, structure, and function of insulin receptors on body cells. It helps diagnose insulin resistance and metabolic disorders such as type 2 diabetes.
Insulin receptor analysis examines the number, structure, and function of insulin receptors on body cells. It helps diagnose insulin resistance and metabolic disorders such as type 2 diabetes.
Insulin receptor analysis is a diagnostic procedure that evaluates the number, structure, and function of insulin receptors on the surface of body cells. Insulin receptors are specialized protein structures to which the hormone insulin binds in order to facilitate the entry of glucose (blood sugar) into the cell. If these receptors are reduced in number, structurally altered, or functionally impaired, insulin can no longer exert its full effect – a condition known as insulin resistance.
The analysis serves as a specialized diagnostic tool in diabetology, endocrinology, and metabolic medicine, providing important insights into the molecular causes of metabolic disorders.
The insulin receptor is a tyrosine kinase receptor composed of two alpha and two beta subunits anchored in the cell membrane. When insulin binds to the alpha subunits, the intracellular beta subunit is activated, triggering a signaling cascade that moves the glucose transporter GLUT4 to the cell surface, allowing glucose to enter the cell from the bloodstream.
Disruptions in this system – caused by genetic mutations, inflammatory processes, obesity, or other factors – lead to reduced insulin action and can contribute to the development of type 2 diabetes mellitus and the metabolic syndrome.
Insulin receptor analysis is typically performed on erythrocytes (red blood cells), monocytes (a type of white blood cell), or samples from adipose or muscle tissue. Blood samples are most commonly used due to their accessibility, and receptor density on blood cells can serve as a model for other body cells.
Several techniques are used in the laboratory:
The results of insulin receptor analysis can provide information about:
Reduced receptor density or diminished signaling activity can support the diagnosis of insulin resistance and help determine the appropriate treatment strategy.
In the most common form of insulin resistance – associated with obesity, physical inactivity, and chronic inflammation – receptor function is typically impaired by so-called post-receptor defects, meaning the receptor itself is present but the downstream signaling cascade is disrupted.
Rare mutations in the INSR gene lead to severe congenital forms of insulin resistance, including Donohue syndrome (Leprechaunism), Rabson-Mendenhall syndrome, and Type A insulin resistance syndrome. These conditions often manifest in childhood with extreme blood glucose dysregulation and characteristic physical features.
In Type B insulin resistance syndrome, the immune system produces antibodies against the insulin receptor. These antibodies block insulin binding and cause severe insulin resistance, which must be treated with immunosuppressive therapy.
Insulin receptor analysis is a highly specialized procedure that is not part of standard diagnostics. Results must always be interpreted in the context of the clinical picture, laboratory values (e.g., fasting insulin, C-peptide, HbA1c), and other diagnostic findings. The methods are technically demanding and are only available at specialized centers.
For Healthy Oral Flora & Dental Care
Formulated lozenges with Dentalac®, lactic acid bacteria, and Lactoferrin CLN®
For Healthy Oral Flora & Dental Care
Formulated lozenges with Dentalac®, lactic acid bacteria, and Lactoferrin CLN®
For your universal protection
As one of the most valuable proteins in the body, lactoferrin is a natural component of the immune system.
For your iron balance
Specially formulated for your iron balance with plant-based curry leaf iron, Lactoferrin CLN®, and natural Vitamin C from rose hips.