Microcontact printing (mu CP) of extracellular matrix proteins is a fascinating approach to control cell positioning and outgrowth, which is essential in the development of applications ranging from cellular biosensors to tissue engineering. Microelectronic devices can be used to detect the activity from a large number of recording sites over the long term. However, signals from cells can only be recorded at small sensitive spots. In this paper, we present an innovative setup to perform aligned mu CP of extracellular matrix proteins on microelectronic devices in order to guide the growth of electrogenic cells specifically to these sensitive spots. Our system is based on the combination of a fine-placer with redesigned micro stamps having a ...
Microcontact printing has become a versatile soft lithography technique used to produce molecular mi...
The in vitro assembly of neuronal networks with control over cell position and connectivity is a fas...
Paper presented at the 29th Annual International Conference of IEEE-EMBS, Engineering in Medicine an...
The growth of neurons into networks of controlled geometry is of great interest in the field of cell...
Background: Multi-electrode arrays (MEAs) allow non-invasive multi-unit recording in-vitro from cult...
A spatially resolved delivery of substances integrated with cell culture substrates shows promise fo...
International audienceIn recent years, there has been a strong demand in the biological community fo...
Patterned neuronal cell cultures are important tools for investigating neuronal signal integration, ...
Microcontact printing (microCP) of proteins has been successfully used for patterning surfaces in va...
High resolution lithography combined with microcontact printing (µCP) by means of polyolefine polyme...
We present a method for patterning neural stem cells based on pre-patterning polypeptides on a cellr...
Full details and a step-by-step guide suitable for printing proteins aligned to micron-sized sensors...
In this paper, we describe a technology platform to study the effect of nanocues on the cell growth ...
AbstractFull details and a step-by-step guide suitable for printing proteins aligned to micron-sized...
Microcontact printing has become a versatile soft lithography technique used to produce molecular mi...
Microcontact printing has become a versatile soft lithography technique used to produce molecular mi...
The in vitro assembly of neuronal networks with control over cell position and connectivity is a fas...
Paper presented at the 29th Annual International Conference of IEEE-EMBS, Engineering in Medicine an...
The growth of neurons into networks of controlled geometry is of great interest in the field of cell...
Background: Multi-electrode arrays (MEAs) allow non-invasive multi-unit recording in-vitro from cult...
A spatially resolved delivery of substances integrated with cell culture substrates shows promise fo...
International audienceIn recent years, there has been a strong demand in the biological community fo...
Patterned neuronal cell cultures are important tools for investigating neuronal signal integration, ...
Microcontact printing (microCP) of proteins has been successfully used for patterning surfaces in va...
High resolution lithography combined with microcontact printing (µCP) by means of polyolefine polyme...
We present a method for patterning neural stem cells based on pre-patterning polypeptides on a cellr...
Full details and a step-by-step guide suitable for printing proteins aligned to micron-sized sensors...
In this paper, we describe a technology platform to study the effect of nanocues on the cell growth ...
AbstractFull details and a step-by-step guide suitable for printing proteins aligned to micron-sized...
Microcontact printing has become a versatile soft lithography technique used to produce molecular mi...
Microcontact printing has become a versatile soft lithography technique used to produce molecular mi...
The in vitro assembly of neuronal networks with control over cell position and connectivity is a fas...
Paper presented at the 29th Annual International Conference of IEEE-EMBS, Engineering in Medicine an...