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Updated: Oct 4, 2025

Preparation, Purification, and Use of Fatty Acid-containing Liposomes
Published on: February 9, 2018
Dehydration Enhances Prebiotic Lipid Remodeling and Vesicle Formation in Acidic Environments
Luke H Steller1,2, Martin J Van Kranendonk1,2, Anna Wang3,2
1School of Biological, Earth and Environmental Sciences, UNSW Sydney, Bedegal Country, New South Wales 2052, Australia.
Abstract:
The encapsulation of genetic polymers inside lipid bilayer compartments (vesicles) is a vital step in the emergence of cell-based life. However, even though acidic conditions promote many reactions required for generating prebiotic building blocks, prebiotically relevant lipids tend to form denser aggregates at acidic pHs rather than prebiotically useful vesicles that exhibit sufficient solute encapsulation. Here, we describe how dehydration/rehydration (DR) events, a prebiotically relevant physicochemical process known to promote polymerization reactions, can remodel dense lipid aggregates into thin-walled vesicles capable of RNA encapsulation even at acidic pHs. Furthermore, DR events appear to favor the encapsulation of RNA within thin-walled vesicles over more lipid-rich vesicles, thus conferring such vesicles a selective advantage.
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