AbstractThe control of the cell microenvironment on model patterned substrates allows the systematic study of cell biology in well defined conditions, potentially using automated systems. The extreme protein resistance of poly(oligo(ethylene glycol methacrylate)) (POEGMA) brushes is exploited to achieve high fidelity patterning of single cells. These coatings can be patterned by soft lithography on large areas (a microscope slide) and scale (substrates were typically prepared in batches of 200). The present protocol relies on the adsorption of extra-cellular matrix (ECM) proteins on unprotected areas using simple incubation and washing steps. The stability of POEGMA brushes, as examined via ellipsometry and SPR, is found to be excellent, bo...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Contains fulltext : 83606.pdf (publisher's version ) (Closed access)12 p
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
AbstractThe control of the cell microenvironment on model patterned substrates allows the systematic...
xx, 126 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P ITC 2017 ChenThorough u...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Three patterned systems aiming at the control of mammalian cell behavior are presented. The determin...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
This work used a hydrophobic polymer pair, i.e. polystyrene (PS) and polyisoprene (PI), to construct...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
A nanopatterning technique, termed femtosecond laser nanomachining, was developed in order to study ...
Bioinspired poly(dopamine) (PDA) films are merged with antifouling poly(MeOEGMA) brushes utilizing a...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Contains fulltext : 83606.pdf (publisher's version ) (Closed access)12 p
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
AbstractThe control of the cell microenvironment on model patterned substrates allows the systematic...
xx, 126 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P ITC 2017 ChenThorough u...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
We describe the design of micropatterned surfaces for single cell studies, based on thermoresponsive...
Three patterned systems aiming at the control of mammalian cell behavior are presented. The determin...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
This work used a hydrophobic polymer pair, i.e. polystyrene (PS) and polyisoprene (PI), to construct...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
A nanopatterning technique, termed femtosecond laser nanomachining, was developed in order to study ...
Bioinspired poly(dopamine) (PDA) films are merged with antifouling poly(MeOEGMA) brushes utilizing a...
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...
Contains fulltext : 83606.pdf (publisher's version ) (Closed access)12 p
In vivo cells reside in a complex extracellular matrix (ECM) that presents spatially distributed bio...