This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surface topographies, and a technology for their fabrication. The new fabrication technology is based on microscale thermoforming of thin polymer films whose surfaces are topographically prepatterned on a micro- or nanoscale. For microthermoforming, we apply a new process on the basis of temporary back moulding of polymer films and use the novel concept of a perforated-sheet-like mould. Thermal micro- or nanoimprinting is applied for prepatterning. The novel cell container arrays are fabricated from polylactic acid (PLA) films. The thin-walled microcontainer structures have the shape of a spherical calotte merging into a hexagonal shape at their u...
In this study, a thermoset mold-based hot embossing technique was evaluated for the laboratory-scale...
The primary aim of the research in this study is to develop a robust and simple platform for the in ...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
The microenvironment of cells in vivo is defined by spatiotemporal patterns of chemical and biophysi...
Micropatterning is a powerful technique to custom-make and precisely control the surface topography ...
This paper presents a fundamentally new approach for the manufacturing and the possible applications...
A combination of nanoimprint lithography and microcontact printing was used to create cell substrate...
In bottom-up tissue engineering, small modular units of cells and biomaterials are assembled toward ...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Cell culture is one of the major tools in life sciences. Conventionally, cells are placed in a flat ...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
In this study, a thermoset mold-based hot embossing technique was evaluated for the laboratory-scale...
The primary aim of the research in this study is to develop a robust and simple platform for the in ...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...
This paper presents cell culture substrates in the form of microcontainer arrays with overlaid surfa...
Microfluidics, with the concept of miniaturization, has been applied to analytical chemistry and bio...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
A four-step soft lithographic process based on microcontact printing of organic monolayers, hyperbra...
The microenvironment of cells in vivo is defined by spatiotemporal patterns of chemical and biophysi...
Micropatterning is a powerful technique to custom-make and precisely control the surface topography ...
This paper presents a fundamentally new approach for the manufacturing and the possible applications...
A combination of nanoimprint lithography and microcontact printing was used to create cell substrate...
In bottom-up tissue engineering, small modular units of cells and biomaterials are assembled toward ...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Cell culture is one of the major tools in life sciences. Conventionally, cells are placed in a flat ...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
In this study, a thermoset mold-based hot embossing technique was evaluated for the laboratory-scale...
The primary aim of the research in this study is to develop a robust and simple platform for the in ...
Cell culture is a fundamental and valuable tool for modern biomedical research. The purpose of this ...