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The Mechanism of Leptin Resistance in Obesity and Therapeutic Perspective
Atilla Engin1,2
1Faculty of Medicine, Department of General Surgery, Gazi University, Besevler, Ankara, Turkey. dr.aengin@gmail.com.
Abstract:
Leptin resistance is induced via leptin signaling blockade by chronic overstimulation of the leptin receptor and intracellular signaling defect or increased hypothalamic inflammation and suppressor of cytokine signaling (SOCS)-3 expression. High-fat diet triggers leptin resistance induced by at least two independent causes: first, the limited ability of peripheral leptin to activate hypothalamic signaling transducers and activators of transcription (STAT) signaling and secondly a signaling defect in leptin-responsive hypothalamic neurons. Central leptin resistance is dependent on decreased leptin transport efficiency across the blood brain barrier (BBB) rather than hypothalamic leptin insensitivity. Since the hypothalamic phosphorylated STAT3 (pSTAT3) represents a sensitive and specific readout of leptin receptor-B signaling, the assessment of pSTAT3 levels is the gold standard. Hypertriglyceridemia is one of important factors to inhibit the transport of leptin across BBB in obesity. Mismatch between high leptin and the amount of leptin receptor expression in obesity triggers brain leptin resistance via increasing hypothalamic inflammation and SOCS-3 expression. Therapeutic strategies that regulate the passage of leptin to the brain include the development of modifications in the structure of leptin analogues as well as the synthesis of new leptin receptor agonists with increased BBB permeability. In the hyperleptinemic state, polyethylene glycol (PEG)-modified leptin is unable to pass through the BBB. Peripheral histone deacetylase (HDAC) 6 inhibitor, tubastatin, and metformin increase central leptin sensitization. While add-on therapy with anagliptin, metformin and miglitol reduce leptin concentrations, the use of long-acting leptin analogs, and exendin-4 lead to the recovery of leptin sensitivity. Contouring surgery with fat removal, and bariatric surgery independently of the type of surgery performed provide significant improvement in leptin concentrations. Although approaches to correcting leptin resistance have shown some success, no clinically effective application has been developed to date. Due to the impairment of central and peripheral leptin signaling, as well as the extensive integration of leptin-sensitive metabolic pathways with other neurons, the effectiveness of methods used to eliminate leptin resistance is extremely limited.
Insights
Leptin resistance, a key factor in obesity, stems from impaired leptin signaling and transport to the brain. Current therapies show limited success in overcoming this complex metabolic challenge.
Area of Science:
- Metabolic research
- Neuroendocrinology
- Obesity research
Background:
- Leptin resistance disrupts normal appetite regulation and energy balance.
- Chronic overstimulation and hypothalamic inflammation contribute to leptin resistance.
- Impaired leptin transport across the blood-brain barrier (BBB) is a critical factor.
Purpose of the Study:
- To elucidate the mechanisms underlying leptin resistance.
- To evaluate current and potential therapeutic strategies for leptin resistance.
- To highlight the challenges in developing effective clinical applications.
Main Methods:
- Assessment of hypothalamic phosphorylated STAT3 (pSTAT3) as a marker for leptin receptor signaling.
- Investigation of factors affecting leptin transport across the BBB, such as hypertriglyceridemia.
- Review of therapeutic interventions including drug therapies and surgical approaches.
Main Results:
- High-fat diets induce leptin resistance through impaired STAT signaling and BBB transport.
- Hypertriglyceridemia inhibits leptin's passage across the BBB.
- Certain drugs (metformin, anagliptin) and bariatric surgery can improve leptin concentrations and sensitivity, but clinical applications remain limited.
Conclusions:
- Leptin resistance is a multifaceted issue involving central and peripheral signaling defects.
- Effective clinical strategies to overcome leptin resistance are still under development.
- The complex integration of leptin signaling pathways limits the effectiveness of current interventions.
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