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Tesofensine, a novel antiobesity drug, silences GABAergic hypothalamic neurons
Claudia I Perez1, Jorge Luis-Islas2, Axel Lopez2
1Departamento de Neurobiología del Desarrollo y Neurofisiología, Instituto de Neurobiología, UNAM, Campus Juriquilla, Querétaro, Mexico.
Abstract:
Obesity is a major global health epidemic that has adverse effects on both the people affected as well as the cost to society. Several anti-obesity drugs that target GLP-1 receptors have recently come to the market. Here, we describe the effects of tesofensine, a novel anti-obesity drug that acts as a triple monoamine neurotransmitter reuptake inhibitor. Using various techniques, we investigated its effects on weight loss and underlying neuronal mechanisms in mice and rats. These include behavioral tasks, DeepLabCut videotaped analysis, electrophysiological ensemble recordings, optogenetic activation, and chemogenetic silencing of GABAergic neurons in the Lateral Hypothalamus (LH). We found that tesofensine induces a greater weight loss in obese rats than lean rats, while differentially modulating the neuronal ensembles and population activity in LH. In Vgat-ChR2 and Vgat-IRES-cre transgenic mice, we found for the first time that tesofensine inhibited a subset of LH GABAergic neurons, reducing their ability to promote feeding behavior, and chemogenetically silencing them enhanced tesofensine's food-suppressing effects. Unlike phentermine, a dopaminergic appetite suppressant, tesofensine causes few, if any, head-weaving stereotypy at therapeutic doses. Most importantly, we found that tesofensine prolonged the weight loss induced by 5-HTP, a serotonin precursor, and blocked the body weight rebound that often occurs after weight loss. Behavioral studies on rats with the tastant sucrose indicated that tesofensine's appetite suppressant effects are independent of taste aversion and do not directly affect the perception of sweetness or palatability of sucrose. In summary, our data provide new insights into the effects of tesofensine on weight loss and the underlying neuronal mechanisms, suggesting that tesofensine may be an effective treatment for obesity and that it may be a valuable adjunct to other appetite suppressants to prevent body weight rebound.
Insights
Tesofensine, a novel anti-obesity drug, promotes significant weight loss in obese rats by affecting neuronal pathways in the brain. It also helps prevent weight regain, offering a potential new treatment for obesity.
Area of Science:
- Neuroscience
- Pharmacology
- Obesity Research
Background:
- Obesity is a global health crisis with significant societal costs.
- Emerging anti-obesity drugs often target GLP-1 receptors.
- Tesofensine represents a novel therapeutic approach as a triple monoamine neurotransmitter reuptake inhibitor.
Purpose of the Study:
- To investigate the weight loss effects of tesofensine in rodent models.
- To elucidate the underlying neuronal mechanisms of tesofensine's action.
- To compare tesofensine's effects with existing anti-obesity medications.
Main Methods:
- Behavioral tasks and DeepLabCut analysis for weight and movement tracking.
- Electrophysiological recordings to assess neuronal activity in the Lateral Hypothalamus (LH).
- Optogenetic and chemogenetic manipulation of GABAergic neurons in the LH.
Main Results:
- Tesofensine induced greater weight loss in obese rats compared to lean rats.
- The drug differentially modulated neuronal ensembles and activity within the LH.
- Tesofensine inhibited LH GABAergic neurons, reducing feeding behavior and enhancing satiety.
- It prolonged weight loss induced by 5-HTP and prevented rebound weight gain.
- Appetite suppression was independent of taste aversion or palatability perception.
Conclusions:
- Tesofensine demonstrates efficacy in promoting weight loss and preventing rebound in rodent models.
- Its mechanism involves the modulation of specific neuronal pathways in the LH.
- Tesofensine shows potential as an effective obesity treatment and an adjunct therapy to prevent weight regain.
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