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.

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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