TIRZEPATIDE 60MG PEN
£ 135.00
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Product Overview
TIRZEPATIDE 60MG PEN
Tirzepatide 60mg Research Pen
Tirzepatide 60mg Research Pen – High-Purity Peptide for Laboratory Research
Tirzepatide is a synthetic peptide that has attracted substantial scientific interest because of its activity at both the glucose-dependent insulinotropic polypeptide (GIP) receptor and the glucagon-like peptide-1 (GLP-1) receptor. This dual-receptor mechanism has made tirzepatide an important compound in metabolic and biochemical research. The pharmaceutical active ingredient tirzepatide is also used in the licensed prescription medicine Mounjaro®, manufactured by Eli Lilly. In the UK, Mounjaro is authorised for specified uses including type 2 diabetes and weight management in eligible patients. � GOV.UK +1 N&A Peptides Tirzepatide 60mg Research Pen is not Mounjaro® and should not be represented as the licensed pharmaceutical product. What is Tirzepatide? Tirzepatide is a long-acting peptide engineered to interact with two important metabolic signalling pathways: GIP and GLP-1 receptors. These receptors have roles in glucose-dependent insulin secretion, appetite signalling, energy intake and wider metabolic processes. This dual agonist activity distinguishes tirzepatide from compounds that act solely on the GLP-1 receptor and has led to extensive scientific investigation of its pharmacology and metabolic effects. Licensed pharmaceutical tirzepatide has demonstrated effects on blood glucose and body weight in clinical trials involving appropriate patient populations. However, results from an authorised medicine should not be interpreted as establishing the safety, efficacy or suitability of an independently supplied research product. � GOV.UK +1 Research Interest Tirzepatide continues to be investigated across metabolic research, including areas relating to: GIP and GLP-1 receptor signalling Glucose metabolism Insulin signalling Appetite and satiety pathways Energy balance Metabolic function Peptide-receptor interactions Obesity and metabolic-disease mechanisms Its ability to activate two incretin-related receptor systems makes it particularly interesting when studying the biological pathways associated with metabolic regulation.
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