This Article introduces a simple method of cell patterning, inspired by the mussel anchoring protein. Polydopamine (PDA), artificial polymers made from self-polymerization of dopamine (a molecule that resembles mussel-adhesive proteins), has recently been studied for its ability to make modifications on surfaces in aqueous solutions. We explored the interfacial interaction between PDA and poly(ethylene glycol) (PEG) using microcontact printing (μCP). We patterned PDA on several substrates such as glass, polystyrene, and poly(dimethylsiloxane) and realized spatially defined anchoring of mammalian cells as well as bacteria. We applied our system in investigating the relationship between areas of mammalian nuclei and that of the cells. The com...
Integration of living cells with novel microdevices requires the development of innovative technolog...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...
This thesis is designed to help understand the need for patterning molecules and cells for uses in m...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
Surface functionalization via molecular design has been a key approach to incorporate new functional...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
Protein micropatterned surfaces integrated with microfluidics are useful in numerous bioanalytical a...
Live cell arrays are an emerging tool that expand traditional 2D in vitro cell culture, increasing e...
Biomaterials with graded functionality have various applications in cell and tissue engineering. In ...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
Integration of living cells with novel microdevices requires the development of innovative technolog...
Engineered surface-bound molecular gradients are of great importance for a range of biological appli...
Bioinspired poly(dopamine) (PDA) films are merged with antifouling poly(MeOEGMA) brushes utilizing a...
Mussel inspired proteins have been demonstrated to serve as a versatile biologic adhesive with numer...
Surface modification of tissue engineering scaffolds and substrates is required for improving the ef...
Integration of living cells with novel microdevices requires the development of innovative technolog...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...
This thesis is designed to help understand the need for patterning molecules and cells for uses in m...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
Surface functionalization via molecular design has been a key approach to incorporate new functional...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
Protein micropatterned surfaces integrated with microfluidics are useful in numerous bioanalytical a...
Live cell arrays are an emerging tool that expand traditional 2D in vitro cell culture, increasing e...
Biomaterials with graded functionality have various applications in cell and tissue engineering. In ...
Creating patterns of biomolecules and cells has been applied widely in many fields associated with t...
Integration of living cells with novel microdevices requires the development of innovative technolog...
Engineered surface-bound molecular gradients are of great importance for a range of biological appli...
Bioinspired poly(dopamine) (PDA) films are merged with antifouling poly(MeOEGMA) brushes utilizing a...
Mussel inspired proteins have been demonstrated to serve as a versatile biologic adhesive with numer...
Surface modification of tissue engineering scaffolds and substrates is required for improving the ef...
Integration of living cells with novel microdevices requires the development of innovative technolog...
We describe a straightforward approach to the covalent immobilization of cytophilic proteins by micr...
This thesis is designed to help understand the need for patterning molecules and cells for uses in m...