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A novel cyclodextrin-lipid complex method for formulating asymmetric liposomes and the complexation and asymmetry
Yaqeen Nadheer Al Badri1, Cheng Shu Chaw1, Amal Ali Elkordy1
1School of Pharmacy and Pharmaceutical Sciences, Faculty of Health Sciences and Wellbeing, University of Sunderland, Sunderland, UK.
Journal of Liposome Research
|June 2, 2026
Summary
This study introduces a novel cyclodextrin-lipid exchange method for creating stable asymmetric liposomes, a promising advancement for drug delivery systems.
Area of Science:
- Biochemistry
- Materials Science
- Nanotechnology
Background:
- Liposomes are widely used as drug delivery systems.
- Recent research focuses on creating asymmetric liposomes for enhanced functionality.
- Maintaining liposome asymmetry is crucial for targeted drug delivery.
Purpose of the Study:
- To develop and optimize a novel cyclodextrin (CD)-lipid exchange method for formulating asymmetric liposomes.
- To confirm the complexation of lipids and cyclodextrins using various analytical techniques.
- To validate the asymmetry of the prepared liposomes and assess their stability.
Main Methods:
- Lipid-cyclodextrin complex formation in HEPES buffer.
- Preparation of large unilamellar vesicles (acceptor vesicles) via the thin film method.
- Lipid exchange facilitated by mixing CD-lipid complex and acceptor vesicles in a shaking water bath.
- Isolation of asymmetric liposomes through centrifugation.
- Confirmation of liposome asymmetry using zeta potential and fluorescence quenching.
Main Results:
- Successful formation of lipid-cyclodextrin complexes confirmed by FTIR, TGA, DSC, and NMR.
- Characterization of asymmetric liposomes using zeta potential and fluorescence quenching methods.
- Demonstrated enhanced stability of asymmetric liposomes compared to conventionally prepared ones.
Conclusions:
- The novel cyclodextrin-lipid exchange method provides a viable route for producing stable asymmetric liposomes.
- These asymmetric liposomes show improved stability, making them suitable for future drug delivery applications.
- Further studies will evaluate the encapsulation efficiency of these liposomes for various drug molecules.

