Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here, a novel method for fabricating structures with subcellular dimensions in commonly available thermoplastic poly(methyl methacrylate) (PMMA) is shown. Microstructures are produced in PMMA substrates using Deep Ultraviolet lithography, and the effect of different developers is described. Microgrooves fabricated in PMMA are used for the neuronal differentiation of mouse embryonic stem cells (mESCs) directly on the polymer. The fabrication of 3D, curvilinear patterned surfaces is also highlighted. A 3D multilayered microfluidic chip is fabricated using this method, which includes a porous polycarbonate (PC) membrane as cell culture substrate. Be...
This article presents a micro-manufacturing method for direct, projection printing of 3- dimensiona...
In this article we report the development of scaffold mimicking the cell surface topography. Using S...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
This thesis outlines a novel technique to economically pattern poly(methyl methacrilate) (PMMA) usin...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Tissue culture ware polystyrene is the gold standard for in vitro cell culture. While microengineeri...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Photo-crosslinkable poly(trimethylene carbonate) (PTMC) macromers were used to fabricate microstruct...
Harnessing the ability to precisely manipulate small volumes of fluids and bioparticles, microfluidi...
The extracellular matrix is an important regulator of cell function. Environmental cues existing in ...
A strategy to modulate the behavior of stem cells in culture is to mimic structural aspects of the n...
Plastics and Poly-Methyl-Methacrylate (PMMA) is becoming the choice of microfluidic components in me...
Patterned microstructures of hydrogels have attracted significant attention due to an increasing nee...
This article presents a micro-manufacturing method for direct, projection printing of 3- dimensiona...
In this article we report the development of scaffold mimicking the cell surface topography. Using S...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
This thesis outlines a novel technique to economically pattern poly(methyl methacrilate) (PMMA) usin...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Tissue culture ware polystyrene is the gold standard for in vitro cell culture. While microengineeri...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Photo-crosslinkable poly(trimethylene carbonate) (PTMC) macromers were used to fabricate microstruct...
Harnessing the ability to precisely manipulate small volumes of fluids and bioparticles, microfluidi...
The extracellular matrix is an important regulator of cell function. Environmental cues existing in ...
A strategy to modulate the behavior of stem cells in culture is to mimic structural aspects of the n...
Plastics and Poly-Methyl-Methacrylate (PMMA) is becoming the choice of microfluidic components in me...
Patterned microstructures of hydrogels have attracted significant attention due to an increasing nee...
This article presents a micro-manufacturing method for direct, projection printing of 3- dimensiona...
In this article we report the development of scaffold mimicking the cell surface topography. Using S...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...