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Author Spotlight: Innovative Microneedle-Based Strategies for Enhanced Exosome Delivery and Stability
Published on: July 12, 2024
Transdermal microneedle patches as a promising drug delivery system for anti-obesogenic molecules
Calef Sánchez-Trasviña1,2, David Coronel-Meneses1,2, Aleyda Margarita Escobar-Fernández1,2
1Tecnologico de Monterrey, Institute for Obesity Research, Monterrey, NL, Mexico.
Abstract:
Obesity, characterized by excessive storage of lipids, has become a global pandemic with high incidence levels, and its forecast is not encouraging. Currently, there are different strategies to treat obesity; however, these conventional methods have various limitations. Lifestyle changes may result in poor outcomes due to the complexity of obesity causes, pharmaceutic treatments produce severe side effects, and bariatric surgery is highly invasive. In the search for alternative treatments to fight obesity, transdermal drug delivery systems of anti-obesogenic molecules have gained particular attention. However, the diffusion of molecules through the skin is the main drawback due to the characteristics of different layers of the skin, principally the stratum corneum and its barrier-like behavior. In this sense, microneedles patches (MP) have emerged to overcome this limitation by piercing the skin and allowing drug delivery inside the body. Although MP have been studied for some years, it was not until about 2017 that their potential as anti-obesogenic treatment was reported. This article aims to summarize and analyze the strategies employed to produce MP and to embed the active molecules against obesity. Special attention is focused on the microneedle's material, geometry, array, and additional delivery strategies, like nanoencapsulation. MP are a promising tool to develop an easy-access treatment, avoiding the digestive tract and with the capacity to enhance the anti-obesogenic activity by delivering one or more active molecules.
Insights
Microneedle patches offer a novel transdermal delivery system for anti-obesity drugs, overcoming skin barrier challenges. This approach enhances treatment efficacy by bypassing the digestive tract for better obesity management.
Area of Science:
- Biomedical Engineering
- Drug Delivery Systems
- Obesity Research
Background:
- Obesity is a global pandemic with limited effective treatments.
- Conventional obesity treatments (lifestyle, drugs, surgery) have significant drawbacks.
- Transdermal drug delivery offers an alternative, but skin barrier penetration is a challenge.
Purpose of the Study:
- To review and analyze microneedle patch (MP) strategies for anti-obesity drug delivery.
- To focus on MP materials, geometry, array design, and nanoencapsulation techniques.
- To highlight MPs as a promising approach for enhanced anti-obesogenic treatments.
Main Methods:
- Literature review and analysis of microneedle patch fabrication techniques.
- Investigation of anti-obesogenic molecules and their incorporation into MPs.
- Evaluation of MP design parameters (material, geometry, array) and delivery enhancement strategies (nanoencapsulation).
Main Results:
- Microneedle patches effectively overcome the stratum corneum barrier for transdermal drug delivery.
- MP technology allows for targeted delivery of anti-obesogenic agents, potentially improving efficacy.
- Various materials, geometries, and nanoencapsulation methods are employed in MP development for obesity treatment.
Conclusions:
- Microneedle patches represent a promising, minimally invasive strategy for obesity treatment.
- This technology facilitates enhanced delivery of anti-obesogenic molecules, avoiding gastrointestinal side effects.
- Further research into MP design and formulation can optimize anti-obesity therapies.
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