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Updated: Apr 12, 2026

Multidisciplinary Approach to Obesity Management: A Case Report
Published on: May 30, 2025
Latest approaches for the treatment of obesity
V Margaret Jackson1, Danna M Breen, Jean-Philippe Fortin
1Cardiovascular and Metabolic Diseases Research Unit, Pfizer PharmaTherapeutics , 610 Main Street, Cambridge, MA 02139 , USA.
Introduction:
Obesity is a body weight disorder characterized by excess adiposity that increases the risk for developing co-morbidities such as type 2 diabetes. A large medical need exists for new anti-obesity treatments capable of promoting 10% or greater weight loss, with minimal side effects.
Areas Covered:
The authors describe the application of monogenic forms of rare obesity and genome-wide association studies in selecting critical pathways for drug discovery. Furthermore, they review in detail several pathways and pharmacological targets in the central nervous system (e.g., the leptin-melanocortin axis, the opioid system, GLP-1/GLP-1 system, and FGF21/FGFR1c/β-Klotho axis) that play an important role in the regulation of feeding behavior and energy homeostasis. Special focus is given to new strategies that engage well-known targets via novel mechanisms in order to circumvent issues seen with previous drug candidates that failed in the clinic. Finally, the authors discuss the recent developments around fixed-dose combinations, targeted polypharmacology, and non-traditional combinations of drugs and devices.
Expert Opinion:
The future for new weight-loss approaches to treat obesity looks promising. Current therapies have shown modest effects on weight loss in the general obese population but will have greater impact in smaller homogeneous sub-populations of obese subjects using personalized medicine. Drug combinations that target multiple, complementary pathways have the potential to promote double-digit weight loss in a broader, heterogeneous patient population. Furthermore, the development of advanced subcutaneous delivery technologies has opened up opportunities to develop breakthrough peptide and biologic agents for the treatment of obesity.
Insights
New anti-obesity treatments show promise for significant weight loss. Personalized medicine and drug combinations targeting multiple pathways offer hope for effective obesity management.
Area of Science:
- Pharmacology of obesity
- Genetics of obesity
- Drug discovery for metabolic disorders
Background:
- Obesity, a disorder of excess adiposity, elevates the risk of comorbidities like type 2 diabetes.
- A significant unmet medical need exists for anti-obesity treatments achieving ≥10% weight loss with minimal side effects.
Purpose of the Study:
- To review critical pathways for anti-obesity drug discovery using insights from monogenic obesity and GWAS.
- To detail central nervous system targets regulating feeding behavior and energy homeostasis.
- To discuss novel therapeutic strategies and emerging combination approaches for obesity treatment.
Main Methods:
- Application of monogenic obesity and genome-wide association studies (GWAS) for pathway selection.
- Detailed review of key pharmacological targets in the central nervous system (e.g., leptin-melanocortin, opioid, GLP-1, FGF21 axes).
- Analysis of novel mechanisms, fixed-dose combinations, polypharmacology, and drug-device combinations.
Main Results:
- Monogenic obesity and GWAS identify crucial pathways for anti-obesity drug development.
- Several CNS pathways (leptin-melanocortin, opioid, GLP-1, FGF21) are vital for regulating appetite and energy balance.
- Novel strategies aim to overcome limitations of previous anti-obesity drug candidates.
Conclusions:
- Future obesity treatments are promising, with personalized medicine enhancing impact in specific patient subgroups.
- Combination therapies targeting multiple pathways may achieve significant weight loss in diverse populations.
- Advanced delivery technologies facilitate development of novel peptide and biologic obesity agents.
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