Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sequential gentle hydration increases encapsulation in model protocells

View through CrossRef
Abstract Small, spherical vesicles are a widely used chassis for the formation of model protocells and investigating the beginning of compartmentalized evolution. Various methods exist for their preparation, with one of the most common approaches being gentle hydration, where thin layers of lipids are hydrated with aqueous solutions and gently agitated to form vesicles. An important benefit to gentle hydration is that the method produces vesicles without introducing any organic contaminants, such as mineral oil, into the lipid bilayer. However, compared to other methods of liposome formation, gentle hydration is much less efficient at encapsulating aqueous cargo. Improving the encapsulation efficiency of gentle hydration would be of broad use for medicine, biotechnology, and protocell research. Here, we describe a method of sequentially hydrating lipid thin films to increase encapsulation efficiency. We demonstrate that sequential gentle hydration significantly improves encapsulation of water-soluble cargo compared to the traditional method, and that this improved efficiency is dependent on buffer composition. Similarly, we also demonstrate how this method can be used to increase concentrations of oleic acid, a fatty acid commonly used in origins of life research, to improve the formation of vesicles in aqueous buffer.
Title: Sequential gentle hydration increases encapsulation in model protocells
Description:
Abstract Small, spherical vesicles are a widely used chassis for the formation of model protocells and investigating the beginning of compartmentalized evolution.
Various methods exist for their preparation, with one of the most common approaches being gentle hydration, where thin layers of lipids are hydrated with aqueous solutions and gently agitated to form vesicles.
An important benefit to gentle hydration is that the method produces vesicles without introducing any organic contaminants, such as mineral oil, into the lipid bilayer.
However, compared to other methods of liposome formation, gentle hydration is much less efficient at encapsulating aqueous cargo.
Improving the encapsulation efficiency of gentle hydration would be of broad use for medicine, biotechnology, and protocell research.
Here, we describe a method of sequentially hydrating lipid thin films to increase encapsulation efficiency.
We demonstrate that sequential gentle hydration significantly improves encapsulation of water-soluble cargo compared to the traditional method, and that this improved efficiency is dependent on buffer composition.
Similarly, we also demonstrate how this method can be used to increase concentrations of oleic acid, a fatty acid commonly used in origins of life research, to improve the formation of vesicles in aqueous buffer.

Related Results

Abstract 179: Novel Theranostic Protocells for Intracerebral Hemorrhage
Abstract 179: Novel Theranostic Protocells for Intracerebral Hemorrhage
Background and Aims: Theranostics is an emerging concept of integrating therapy and imaging into a single platform. Intracerebral hemorrhage (ICH) causes intense inflam...
Composite Hydration Process of Clay Minerals Simulating Mineral Clay Components and Influence Mechanism of Cations
Composite Hydration Process of Clay Minerals Simulating Mineral Clay Components and Influence Mechanism of Cations
Clay minerals are an important part of the mud shale reservoir, and their type of content has a great impact on the hydration of the formation. The hydration of clay minerals cause...
First growth, then information: the path to genetic heredity in protocells
First growth, then information: the path to genetic heredity in protocells
Abstract Most theoretical work on the origin of heredity has focused on how genetic information can be maintained without mutational degradation ...
Recent Advancements in Wearable Hydration-Monitoring Technologies: Scoping Review of Sensors, Trends, and Future Directions
Recent Advancements in Wearable Hydration-Monitoring Technologies: Scoping Review of Sensors, Trends, and Future Directions
Background Monitoring hydration is crucial for maintaining health and preventing dehydration. Despite the potential of wearable devices for continuous hydration...
The impact of periodic operation on barley hydration
The impact of periodic operation on barley hydration
AbstractIntensification of barley hydration process using periodic operation was evaluated as compared to isothermal hydration conditions (20°C). Periodic operation resulted in an ...
Numerical simulation on the warpage of reconstructed wafer during encapsulation process
Numerical simulation on the warpage of reconstructed wafer during encapsulation process
Abstract At present, the general fan-out package generally uses the molding process and uses epoxy molding compound (EMC) material to complete the reconstruction of ...
Evaluation des solutions d’encapsulation quasi-hermétique pour les composants actifs hyperfréquences
Evaluation des solutions d’encapsulation quasi-hermétique pour les composants actifs hyperfréquences
Les composants hyperfréquences embarqués dans des satellites utilisent actuellement l’encapsulation hermétique dans des boîtiers métalliques ou céramiques. La très forte améliorati...

Back to Top