Aversive stimuli and loss in the mesocorticolimbic dopamine system
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Appetite suppression through dopamine modulation Central appetite control: Tesofensine acts on hypothalamus Affects arcuate nucleus (appetite center) Different pathway from GLP-1 receptors Direct neurotransmitter modulation Rapid onset (hours not days) Dopamine's role in eating: Mediates food reward (hedonic eating) High-dopamine = reduced food seeking Decreases obsessive food thoughts Reduces binge eating tendencies Similar to ADHD medication effects Subjective appetite changes reported: Reduced hunger (moderate, not as strong as semaglutide ) Less food preoccupation Earlier satiety (smaller portions satisfying) Reduced cravings especially for high-calorie foods More mental focus on non-food activities Appetite suppression comparison: Why dopamine approach different: Addresses psychological/behavioral eating Reduces food as reward behavior Helps with emotional eating Less GI side effects than GLP-1s But creates stimulant-like dependency risk Clinical trial results and efficacy Evidence from human studies

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This context-dependent behavior is one of its strengths, but it also means responses may not be entirely predictable