We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely known for its high biocompatibility, and transform it to a substrate that can effectively control the cellular microenvironment and consequently affect the morphology and function of the cells in vitro. The Parylene C scaffolds are fabricated by selectively increasing the material's surface water affinity through lithography and oxygen plasma treatment, providing free bonds for attachment of hydrophilic biomolecules. The micro-engineered constructs were tested as culture scaffolds for rat ventricular fibroblasts and neonatal myocytes (NRVM), toward modeling the unique anisotropic architecture of native cardiac tissue. The scaffolds induced the...
BACKGROUND: The ability to understand and locally control the morphogenesis of mammalian cells is a ...
The crystalline–amorphous parylene C structure was fabricated by Chemical Vapour Deposited (CVD) and...
This article describes high resolution patterning of HEK 293 cells on a construct of micropatterned ...
We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely k...
There are two main challenges when producing in vitro cell systems: first, to reconstitute the in si...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
In cardiac tissue engineering (TE), in vitro models are essential for the study of healthy and patho...
In vitro cardiac models have been attracted substantial interest in cardiac tissue engineering (TE)....
We recently demonstrated that patterned Parylene C films could be effectively used as a mask for dir...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
Abstract: The patterned deposition of cells and biomole-cules on surfaces is a potentially useful to...
Cell patterning is becoming increasingly popular in neuroscience because it allows for the control i...
Parylene C is a well-known polymer and it has been mainly employed as a protective layer for implant...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
BACKGROUND: The ability to understand and locally control the morphogenesis of mammalian cells is a ...
The crystalline–amorphous parylene C structure was fabricated by Chemical Vapour Deposited (CVD) and...
This article describes high resolution patterning of HEK 293 cells on a construct of micropatterned ...
We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely k...
There are two main challenges when producing in vitro cell systems: first, to reconstitute the in si...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
In cardiac tissue engineering (TE), in vitro models are essential for the study of healthy and patho...
In vitro cardiac models have been attracted substantial interest in cardiac tissue engineering (TE)....
We recently demonstrated that patterned Parylene C films could be effectively used as a mask for dir...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
Abstract: The patterned deposition of cells and biomole-cules on surfaces is a potentially useful to...
Cell patterning is becoming increasingly popular in neuroscience because it allows for the control i...
Parylene C is a well-known polymer and it has been mainly employed as a protective layer for implant...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
BACKGROUND: The ability to understand and locally control the morphogenesis of mammalian cells is a ...
The crystalline–amorphous parylene C structure was fabricated by Chemical Vapour Deposited (CVD) and...
This article describes high resolution patterning of HEK 293 cells on a construct of micropatterned ...