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Biocompatibility evaluation of human umbilical vein endothelial cells directly onto low-temperature co-fired ceramic materials for microfluidic applications

Producción científica: Paperrevisión exhaustiva

2 Citas (Scopus)

Resumen

Expansion of Low-Temperature Co-fired Ceramic materials into microfluidic systems technology has many beneficial applications due to their ability to combine complex three dimensional structures with optical, fluidic, electrical functions. Evaluations of the biocompatibility of these Low-Temperature Co- fired Ceramic materials are vital for expanding into biomedical research. The few biocompatibility> studies on Low-Temperature Co-fired Ceramics generally show negative cellular response to thick film pastes used in generating the electronic circuitry patterns. In this study, biocompatibility of Human Umbilical Vein Endothelial Cells was examined on Heraeus's Low-Temperature Co-fired Ceramic tape and two of their conductive pastes. The biocompatibility was assessed by monitoring cellular attachment and viability up to three days. This study examines the idea of leacliates being detrimental to cells due to a study that suggests the possibility' of harmful leacliates. Results indicate difficulty in initial attachment of Human Umbilical Vein Endothelial Cells to sintered Low-Temperature Co-fired Ceramic tapes, but no hindrance of cellular attachment and growth onto the two conductive pastes. Outcomes also demonstrate that possible harmful leacliates from Low-Temperature Co-fired Ceramic materials don 7 thwart cellular attachment and growth for up to three days of cell culturing. These results provide a basis for biological devices using Low-Temperature Co-fired Ceramic materials.

Idioma originalEnglish
Páginas549-556
Número de páginas8
EstadoPublished - 2012
Evento8th International Conference and Exhibition on Ceramic Interconnect and Ceramic Microsystems Technologies, CICMT 2012 - Erfurt, Germany
Duración: abr 16 2012abr 19 2012

Conference

Conference8th International Conference and Exhibition on Ceramic Interconnect and Ceramic Microsystems Technologies, CICMT 2012
País/TerritorioGermany
CiudadErfurt
Período4/16/124/19/12

ASJC Scopus subject areas

  • Ceramics and Composites
  • Materials Chemistry

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