We have previously used three-dimensional (3D) printing to prepare tissue-like materials in which picoliter aqueous compartments are separated by lipid bilayers. These printed droplets are elaborated into synthetic cells by using a tightly regulated in vitro transcription/translation system. A light-activated DNA promoter has been developed that can be used to turn on the expression of any gene within the synthetic cells. We used light activation to express protein pores in 3D-printed patterns within synthetic tissues. The pores are incorporated into specific bilayer interfaces and thereby mediate rapid, directional electrical communication between subsets of cells. Accordingly, we have developed a functional mimic of neuronal transmission ...
The most promising strategies in tissue engineering involve the integration of a triad of biomateria...
We utilized a commercially available materials printer to investigate synthetic multicellular cell-t...
Towards the ambitious goal of manufacturing synthetic cells from the bottom up, various cellular com...
We have previously used three-dimensional (3D) printing to prepare tissue-like materials in which pi...
We have previously used three-dimensional (3D) printing to prepare tissue-like materials in which pi...
'Bottom-up' approaches in synthetic biology have been used to construct synthetic cells from simple ...
In this thesis, biological activity is recreated from the bottom-up. By putting together carefully-d...
Gene-expressing compartments are a minimal representation of living cells. By using DNA blueprints t...
Droplet networks (synthetic tissues) comprised of aqueous droplets interfaced by bilayers show great...
Synthetic tissues can be generated by forming networks of aqueous droplets in lipid-containing oil. ...
Living cells communicate and cooperate to produce the emergent properties of tissues. Synthetic mimi...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
While significant advances have been achieved with non-living synthetic cells built from the bottom-...
3D bioprinting is the additive manufacture of biological materials, such as cells, and has been impl...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
The most promising strategies in tissue engineering involve the integration of a triad of biomateria...
We utilized a commercially available materials printer to investigate synthetic multicellular cell-t...
Towards the ambitious goal of manufacturing synthetic cells from the bottom up, various cellular com...
We have previously used three-dimensional (3D) printing to prepare tissue-like materials in which pi...
We have previously used three-dimensional (3D) printing to prepare tissue-like materials in which pi...
'Bottom-up' approaches in synthetic biology have been used to construct synthetic cells from simple ...
In this thesis, biological activity is recreated from the bottom-up. By putting together carefully-d...
Gene-expressing compartments are a minimal representation of living cells. By using DNA blueprints t...
Droplet networks (synthetic tissues) comprised of aqueous droplets interfaced by bilayers show great...
Synthetic tissues can be generated by forming networks of aqueous droplets in lipid-containing oil. ...
Living cells communicate and cooperate to produce the emergent properties of tissues. Synthetic mimi...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
While significant advances have been achieved with non-living synthetic cells built from the bottom-...
3D bioprinting is the additive manufacture of biological materials, such as cells, and has been impl...
The burgeoning field of additive manufacturing, or “3D printing”, centers on the idea of creating th...
The most promising strategies in tissue engineering involve the integration of a triad of biomateria...
We utilized a commercially available materials printer to investigate synthetic multicellular cell-t...
Towards the ambitious goal of manufacturing synthetic cells from the bottom up, various cellular com...