Resin 3D printing is attractive for the rapid fabrication of microscale cell culture devices, but common resin materials are unstable and cytotoxic under culture conditions. Strategies such as leaching or overcuring are insufficient to protect sensitive primary cells such as white blood cells. Here, we evaluated the effectiveness of using a parylene C coating of commercially available clear resins to prevent cytotoxic leaching, degradation of microfluidic devices, and absorption of small molecules. We found that parylene C significantly improved both the cytocompatibility with primary murine white blood cells and the material integrity of prints while maintaining the favorable optical qualities held by clear resins
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
The use of poly-(para-chloro-xylylene) (Parylene C) in microelectromechanical systems and medical de...
We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely k...
Resin 3D printing is attractive for the rapid fabrication of microscale cell culture devices, but co...
The aim of the present work was to examine the interactions of parylene C with such selected biologi...
Biomedical microsystems attain to contact with environments like blood, ephitHelium and saline solut...
This paper investigates the effects on the blood compatibility of surface nanostructuring of Parylen...
Parylene is a family of chemically vapour deposited polymer with material properties that are attrac...
In order to develop an advanced polymer based package technology to obtain small and flexible medica...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
ThemechanicalandprotectivepropertiesofparyleneNandCcoatings(2 – 20 μ m)onstainlesssteel316Limpla...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Magnesium (Mg) alloy has attracted significant attention as a bioresorbable scaffold for use as a ne...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
The use of poly-(para-chloro-xylylene) (Parylene C) in microelectromechanical systems and medical de...
We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely k...
Resin 3D printing is attractive for the rapid fabrication of microscale cell culture devices, but co...
The aim of the present work was to examine the interactions of parylene C with such selected biologi...
Biomedical microsystems attain to contact with environments like blood, ephitHelium and saline solut...
This paper investigates the effects on the blood compatibility of surface nanostructuring of Parylen...
Parylene is a family of chemically vapour deposited polymer with material properties that are attrac...
In order to develop an advanced polymer based package technology to obtain small and flexible medica...
2019-04-26Parylene provides many advantages as a material for thin-film implantable devices, however...
A novel technique for producing high aspect ratio parylene structures via switching chemistry plasma...
ThemechanicalandprotectivepropertiesofparyleneNandCcoatings(2 – 20 μ m)onstainlesssteel316Limpla...
Parylene C is a promising material for constructing flexible, biocompatible and corrosion-resistant ...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
Magnesium (Mg) alloy has attracted significant attention as a bioresorbable scaffold for use as a ne...
Parylenes are used for a wide range of applications in microelectromechanical systems (MEMS) devices...
The use of poly-(para-chloro-xylylene) (Parylene C) in microelectromechanical systems and medical de...
We demonstrate a simple, accurate and versatile method to manipulate Parylene C, a material widely k...