Appetite and Metabolic Support
*This category includes compounds commonly used to help regulate hunger, food intake, and metabolic efficiency. They work through hormonal, neurological, or cellular pathways to support appetite control, energy balance, and overall metabolic health*
Retatrutide
Retatrutide is a newer metabolic compound that influences hunger signals, feelings of fullness, and how the body uses energy. It works through multiple systems that help regulate appetite and food intake, while also supporting anti-inflammatory activity, gut health, and liver function. Because of this broader range of effects, it’s often associated with improved appetite control, more balanced energy use, and support for metabolic and digestive health.
Tirzepatide
Tirzepatide is a metabolic compound known for supporting appetite control, feelings of fullness, and blood sugar balance. It works by influencing hunger and digestion signals that help regulate how much and how often the body wants to eat. Because of this, it’s commonly associated with reduced appetite, improved control around food, and support for overall metabolic function.
Semaglutide
Semaglutide is a metabolic compound that works by mimicking a natural hormone involved in appetite and blood sugar regulation. It helps reduce hunger, increase feelings of fullness, and slow digestion, which can lead to eating less without feeling constantly deprived. It is primarily associated with appetite control, improved blood sugar balance, and overall metabolic support.
Cagrilintide
Cagrilintide is an amylin-based compound that works through a different pathway to support appetite control and fullness. It helps regulate hunger signals in the brain, slow digestion, and reduce food drive, which is why it’s often associated with breaking plateaus, improving satiety, and jumpstarting stalled metabolic progress.
Tesofensine
Tesofensine is an appetite-focused metabolic compound that works through the central nervous system to help reduce hunger and food drive. It supports portion control, appetite regulation, and metabolic efficiency by influencing neurotransmitters involved in satiety and energy balance.

