The Discovery and Development of Liraglutide and Semaglutide
Открытие и разработка лираглутида и семаглутида
2019-04-12
SCID: 54.1/xwj4zbcm
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GLP-1 receptor agonists (GLP-1RAs)albumin binding via fatty acid linker for half-life extensionliraglutidesemaglutidetype 2 diabetes (T2D) and obesity treatment
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Abstract (AI)
The discovery of glucagon-like peptide-1 (GLP-1), an incretin hormone with important effects on glycemic control and body weight regulation, led to efforts to extend its half-life and make it therapeutically effective in people with type 2 diabetes (T2D). The development of short- and then long-acting GLP-1 receptor agonists (GLP-1RAs) followed. Our article charts the discovery and development of the long-acting GLP-1 analogs liraglutide and, subsequently, semaglutide. We examine the chemistry employed in designing liraglutide and semaglutide, the human and non-human studies used to investigate their cellular targets and pharmacological effects, and ongoing investigations into new applications and formulations of these drugs. Reversible binding to albumin was used for the systemic protraction of liraglutide and semaglutide, with optimal fatty acid and linker combinations identified to maximize albumin binding while maintaining GLP-1 receptor (GLP-1R) potency. GLP-1RAs mediate their effects via this receptor, which is expressed in the pancreas, gastrointestinal tract, heart, lungs, kidneys, and brain. GLP-1Rs in the pancreas and brain have been shown to account for the respective improvements in glycemic control and body weight that are evident with liraglutide and semaglutide. Both liraglutide and semaglutide also positively affect cardiovascular (CV) outcomes in individuals with T2D, although the precise mechanism is still being explored. Significant weight loss, through an effect to reduce energy intake, led to the approval of liraglutide (3.0 mg) for the treatment of obesity, an indication currently under investigation with semaglutide. Other ongoing investigations with semaglutide include the treatment of non-alcoholic fatty liver disease (NASH) and its use in an oral formulation for the treatment of T2D. In summary, rational design has led to the development of two long-acting GLP-1 analogs, liraglutide and semaglutide, that have made a vast contribution to the management of T2D in terms of improvements in glycemic control, body weight, blood pressure, lipids, beta-cell function, and CV outcomes. Furthermore, the development of an oral formulation for semaglutide may provide individuals with additional benefits in relation to treatment adherence. In addition to T2D, liraglutide is used in the treatment of obesity, while semaglutide is currently under investigation for use in obesity and NASH.
Key Findings
1
Both drugs positively affect cardiovascular outcomes in type 2 diabetes, although the precise mechanisms remain under investigation.
2
GLP-1 receptors in pancreas and brain mediate liraglutide and semaglutide effects on glycemic control and body weight via reduced energy intake.
3
Liraglutide (3.0 mg) is approved for obesity; semaglutide is under investigation for obesity, NASH, and as an oral formulation to improve adherence.
4
Liraglutide and semaglutide were rationally designed long-acting GLP-1 analogs using reversible albumin binding for systemic protraction.
5
Optimal fatty acid and linker combinations were identified to maximize albumin binding while preserving GLP-1 receptor potency.
Research Object
The long-acting GLP-1 analogs liraglutide and semaglutide
Research Subject
Their discovery, chemical design (albumin-binding via fatty-acid/linker modifications), pharmacological targets and effects (GLP-1 receptor–mediated glycemic control, body-weight regulation, cardiovascular outcomes), formulations (including oral semaglutide), and therapeutic applications in T2D, obesity, and NASH
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2019-04-12
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