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Body:After oral administration, poor permeability often limits the rate at which drugs are absorbed through the intestinal epithelium. Enhancing drug permeability is crucial for effective therapy, and several strategies have been developed to overcome this challenge.One effective strategy involves the use of lipid-based formulations. These formulations enhance dissolution and solubility, targeting physiological mechanisms to increase drug absorption. This includes stimulating bile salt...
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Building Blocks to Design Liposomal Delivery Systems.

Katarzyna Juszkiewicz1, Aleksander F Sikorski2, Aleksander Czogalla1

  • 1Department of Cytobiochemistry, Faculty of Biotechnology, University of Wroclaw, 50-383 Wroclaw, Poland.

International Journal of Molecular Sciences
|December 18, 2020
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Summary

Liposomal carriers offer flexible drug delivery by using modular components, akin to Lego blocks, for tailored targeting and release. This design approach enables the creation of advanced nanoformulations for various therapeutics.

Keywords:
cationic lipidscholesteroldrug deliverydrug releaselipid compositionliposomal systemsliposomespolyethylene glycoltargeting

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Area of Science:

  • Nanotechnology
  • Materials Science
  • Pharmaceutical Sciences

Background:

  • Liposomal carriers are versatile nanoformulations for drug delivery.
  • Their design flexibility stems from a wide range of constituent components.
  • Each component plays a specific role, allowing for customization of therapeutic effects.

Purpose of the Study:

  • To review design strategies for liposome-based nanoformulations.
  • To highlight how component selection enables control over drug targeting and release.
  • To showcase promising liposomal systems for advanced drug delivery.

Main Methods:

  • Review of literature on liposomal carrier design strategies.
  • Analysis of component roles in achieving specific formulation features.
  • Case studies on liposomal carriers for antisense oligonucleotides and statins.

Main Results:

  • Liposomal component modularity allows for "block-based" design of nanoformulations.
  • Tailoring components provides precise control over drug targeting and release kinetics.
  • This approach facilitates the development of optimized drug delivery systems.

Conclusions:

  • The modular nature of liposomal components is key to designing advanced drug delivery systems.
  • Strategic selection of components enables fine-tuning of liposome properties for specific therapeutic needs.
  • This design paradigm holds significant promise for developing effective nanoformulations.