DocumentCode
2605423
Title
Nanopolymeric substrates for cyto-regulatory gene program interrogation
Author
Pierstorff, Erik ; Krucoff, Max ; Ho, Dean
Author_Institution
Depts. of Biomed. & Mech. Eng., Northwestern Univ., Evanston, IL
fYear
2007
fDate
2-5 Aug. 2007
Firstpage
574
Lastpage
577
Abstract
Functionalized block copolymers that possess nanoscale thicknesses represent an important class of biomimetic materials with potential applications in drug delivery, membrane/protein-based devices, as well as cellular interrogation platforms for basic science studies. A key element that serves as the foundation for the translational applicability of this material is represented by the examination of its effects upon cyto-regulatory gene programs that govern processes such as cellular stress and inflammation. With a better understanding of the cellular response to these materials, improved design principles can be examined towards the utilization of these polymers for biomedical applications in vivo. Here we present a comprehensive assessment of the basal levels of secretion for a spectrum of inflammatory cytokines/molecules including tumor necrosis factor-alpha (TNFalpha), interleukin-6 (IL-6), interleukin-12 (IL-12), as well as inducible nitric oxide synthase (iNOS). In addition, we examine the effects of cellular incubation with the triblock copolymer in solution upon morphology as well as growth capabilities in vitro. The foundational information gleaned from this study will provide an important glimpse into the internal cellular response to foreign material contact towards the forging of devices fabricated at the interface of biology and artificial materials.
Keywords
biomedical materials; biomimetics; cellular biophysics; drug delivery systems; genetics; molecular biophysics; nanobiotechnology; nanostructured materials; polymer blends; biomimetic materials; cyto-regulatory gene program interrogation; functionalized block copolymers; inflammatory cytokines; interleukin-12; interleukin-6; nanopolymeric substrates; triblock copolymer; tumor necrosis factor-alpha; Biological materials; Biomedical materials; Biomembranes; Biomimetics; Drug delivery; Nanobioscience; Nanoscale devices; Polymers; Proteins; Stress; Nanomaterial; biocompatibility; cell proliferation polymerase chain reaction; drug delivery;
fLanguage
English
Publisher
ieee
Conference_Titel
Nanotechnology, 2007. IEEE-NANO 2007. 7th IEEE Conference on
Conference_Location
Hong Kong
Print_ISBN
978-1-4244-0607-4
Electronic_ISBN
978-1-4244-0608-1
Type
conf
DOI
10.1109/NANO.2007.4601257
Filename
4601257
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