Constructing a cell mimic is a major challenge posed by synthetic biologists. Efforts to this end have been primarily focused on lipid- and polymer-encapsulated containers, liposomes and polymersomes, respectively. Here, we introduce a multi-compartment, nested system comprising aqueous droplets stabilized in an oil/lipid mixture, all encapsulated in hydrogel. Functional capabilities (electrical and chemical communication) were imparted by protein nanopores spanning the lipid bilayer formed at the interface of the encapsulated aqueous droplets and the encasing hydrogel. Crucially, the compartmentalization enabled the formation of two adjoining lipid bilayers in a controlled manner, a requirement for the realization of a functional protocell...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Diverse fields including drug and gene delivery and live cell encapsulation require biologically com...
Constructing a cell mimic is a major challenge posed by synthetic biologists. Efforts to this end ha...
Constructing a cell mimic is a major challenge posed by synthetic biologists. Efforts to this end ha...
An aqueous droplet in a solution of lipids in oil acquires a lipid monolayer coat, and two such drop...
Aqueous droplets in oil that are coated with lipid monolayers and joined through interface bilayers ...
Living cells communicate and cooperate to produce the emergent properties of tissues. Synthetic mimi...
Living cells segregate molecules and reactions in various subcellular compartments known as organell...
The ability to make artificial lipid bilayers compatible with a wide range of environments, and with...
Compartmentalization of biological content and function is a key architectural feature in biology, w...
Building artificial cells using a bottom-up approach is a remarkable challenge that would be of inte...
Over the past few decades, several protocell models have been developed that mimic certain essential...
In recent years there has been an increasing interest in using lipid vesicles and related membrane s...
ABSTRACT We report on microfluidic strategies to generate several multi-compartment membrane-based s...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Diverse fields including drug and gene delivery and live cell encapsulation require biologically com...
Constructing a cell mimic is a major challenge posed by synthetic biologists. Efforts to this end ha...
Constructing a cell mimic is a major challenge posed by synthetic biologists. Efforts to this end ha...
An aqueous droplet in a solution of lipids in oil acquires a lipid monolayer coat, and two such drop...
Aqueous droplets in oil that are coated with lipid monolayers and joined through interface bilayers ...
Living cells communicate and cooperate to produce the emergent properties of tissues. Synthetic mimi...
Living cells segregate molecules and reactions in various subcellular compartments known as organell...
The ability to make artificial lipid bilayers compatible with a wide range of environments, and with...
Compartmentalization of biological content and function is a key architectural feature in biology, w...
Building artificial cells using a bottom-up approach is a remarkable challenge that would be of inte...
Over the past few decades, several protocell models have been developed that mimic certain essential...
In recent years there has been an increasing interest in using lipid vesicles and related membrane s...
ABSTRACT We report on microfluidic strategies to generate several multi-compartment membrane-based s...
In the field of bottom-up synthetic biology, lipid membranes are the scaffold to create minimal cell...
The quintessential living element of all organisms is the cell—a fluid-filled compartment enclosed, ...
Diverse fields including drug and gene delivery and live cell encapsulation require biologically com...