Title :
Different macrophage responses on hydrophilic and hydrophobic CNTs
Author :
Chun, Young Wook ; Webster, Thomas J.
Author_Institution :
Div. of Eng., Brown Univ., Providence, RI
Abstract :
Purified carbon nanotubes (with removed toxic catalytic particles) have been considered as novel materials for drug delivery and for generating artificial organs more efficiently due to their unique surface features. Traditionally, the surface chemistry of carbon nanotubes has been modified through various functionalization strategies to increase biocompatibility. Importantly, modulating the intrinsic material surface energy of carbon nanotubes (without functionalization, thus, establishing permanent, non degradable chemical, and physical surface properties) can potentially reduce an immune response mediated by macrophages. Herein, we report macrophage responses on different surface energy carbon nanotubes while keeping their nanoscale surface roughness. Specifically, interactions of ultra hydrophobic (bare or unmodified) and hydrophilic carbon nanotubes (due to the formation of oxide layers) with macrophages were investigated. All results clearly support the evidence that tailoring the surface energy of carbon nanotubes mediates a macrophage immune response.
Keywords :
biomedical materials; carbon nanotubes; drug delivery systems; nanobiotechnology; surface chemistry; surface energy; C; artificial organs; biocompatibility; drug delivery; functionalization; hydrophilic CNT; hydrophobic CNT; intrinsic material surface energy; macrophage immune response; nanoscale surface roughness; oxide layers; purified carbon nanotubes; surface chemistry; surface energy; Artificial biological organs; Biological materials; Carbon nanotubes; Chemistry; Degradation; Drug delivery; Immune system; Organic materials; Rough surfaces; Surface roughness;
Conference_Titel :
Bioengineering Conference, 2009 IEEE 35th Annual Northeast
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-4362-8
Electronic_ISBN :
978-1-4244-4364-2
DOI :
10.1109/NEBC.2009.4967689