Effects of nanotopography on the in vitro hemocompatibility of nanocrystalline diamond coatings. Issue 1 (18th October 2016)
- Record Type:
- Journal Article
- Title:
- Effects of nanotopography on the in vitro hemocompatibility of nanocrystalline diamond coatings. Issue 1 (18th October 2016)
- Main Title:
- Effects of nanotopography on the in vitro hemocompatibility of nanocrystalline diamond coatings
- Authors:
- Skoog, Shelby A.
Lu, Qijin
Malinauskas, Richard A.
Sumant, Anirudha V.
Zheng, Jiwen
Goering, Peter L.
Narayan, Roger J.
Casey, Brendan J. - Abstract:
- Abstract: Nanocrystalline diamond (NCD) coatings have been investigated for improved wear resistance and enhanced hemocompatibility of cardiovascular devices. The goal of this study was to evaluate the effects of NCD surface nanotopography on in vitro hemocompatibility. NCD coatings with small (NCD‐S) and large (NCD‐L) grain sizes were deposited using microwave plasma chemical vapor deposition and characterized using scanning electron microscopy, atomic force microscopy, contact angle testing, and Raman spectroscopy. NCD‐S coatings exhibited average grain sizes of 50–80 nm (RMS 5.8 nm), while NCD‐L coatings exhibited average grain sizes of 200–280 nm (RMS 23.1 nm). In vitro hemocompatibility testing using human blood included protein adsorption, hemolysis, nonactivated partial thromboplastin time, platelet adhesion, and platelet activation. Both NCD coatings demonstrated low protein adsorption, a nonhemolytic response, and minimal activation of the plasma coagulation cascade. Furthermore, the NCD coatings exhibited low thrombogenicity with minimal platelet adhesion and aggregation, and similar morphological changes to surface‐bound platelets (i.e., activation) in comparison to the HDPE negative control material. For all assays, there were no significant differences in the blood–material interactions of NCD‐S versus NCD‐L. The two tested NCD coatings, regardless of nanotopography, had similar hemocompatibility profiles compared to the negative control material (HDPE) andAbstract: Nanocrystalline diamond (NCD) coatings have been investigated for improved wear resistance and enhanced hemocompatibility of cardiovascular devices. The goal of this study was to evaluate the effects of NCD surface nanotopography on in vitro hemocompatibility. NCD coatings with small (NCD‐S) and large (NCD‐L) grain sizes were deposited using microwave plasma chemical vapor deposition and characterized using scanning electron microscopy, atomic force microscopy, contact angle testing, and Raman spectroscopy. NCD‐S coatings exhibited average grain sizes of 50–80 nm (RMS 5.8 nm), while NCD‐L coatings exhibited average grain sizes of 200–280 nm (RMS 23.1 nm). In vitro hemocompatibility testing using human blood included protein adsorption, hemolysis, nonactivated partial thromboplastin time, platelet adhesion, and platelet activation. Both NCD coatings demonstrated low protein adsorption, a nonhemolytic response, and minimal activation of the plasma coagulation cascade. Furthermore, the NCD coatings exhibited low thrombogenicity with minimal platelet adhesion and aggregation, and similar morphological changes to surface‐bound platelets (i.e., activation) in comparison to the HDPE negative control material. For all assays, there were no significant differences in the blood–material interactions of NCD‐S versus NCD‐L. The two tested NCD coatings, regardless of nanotopography, had similar hemocompatibility profiles compared to the negative control material (HDPE) and should be further evaluated for use in blood‐contacting medical devices. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 253–264, 2017. … (more)
- Is Part Of:
- Journal of biomedical materials research. Volume 105:Issue 1(2017)
- Journal:
- Journal of biomedical materials research
- Issue:
- Volume 105:Issue 1(2017)
- Issue Display:
- Volume 105, Issue 1 (2017)
- Year:
- 2017
- Volume:
- 105
- Issue:
- 1
- Issue Sort Value:
- 2017-0105-0001-0000
- Page Start:
- 253
- Page End:
- 264
- Publication Date:
- 2016-10-18
- Subjects:
- nanocrystalline diamond -- hemocompatibility -- cardiovascular devices -- nanostructured topography -- blood
Biomedical materials -- Periodicals
610.28 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1552-4965 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/jbm.a.35872 ↗
- Languages:
- English
- ISSNs:
- 1549-3296
- Deposit Type:
- Legaldeposit
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- British Library DSC - 4953.720000
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