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Biointerphases|December 17, 2015
ToF-SIMS multivariate analysis of surface-grafted small bioactive moleculesMarek Jasieniak, Bryan R Coad, Hans J Griesser
ACS Applied Bio Materials|January 10, 2022
Candida albicans Can Survive Antifungal Surface Coatings on Surfaces with Microcone TopographyArgha Chakraborty, Marek Jasieniak, Bryan R Coad, et al.
Biointerphases|October 16, 2015
Antifungal coatings by caspofungin immobilization onto biomaterials surfaces via a plasma polymer interlayerStefani S Griesser, Marek Jasieniak, Bryan R Coad, et al.
The Journal of Physical Chemistry. B|November 17, 2015
Comparison of Plasma Polymerization under Collisional and Collision-Less Pressure RegimesSolmaz Saboohi, Marek Jasieniak, Bryan R Coad, et al.
Biointerphases|November 19, 2021
Assessment of nonreleasing antifungal surface coatings bearing covalently attached pharmaceuticalsJavad Naderi, Hans J Griesser, Bryan R Coad
Journal of Materials Chemistry. B|April 9, 2020
Surface coatings with covalently attached caspofungin are effective in eliminating fungal pathogensBryan R Coad, Stephanie J Lamont-Friedrich, Lauren Gwynne, et al.
The Journal of Antimicrobial Chemotherapy|October 31, 2018
Surface coatings with covalently attached anidulafungin and micafungin prevent Candida albicans biofilm formationJavad Naderi, Carla Giles, Solmaz Saboohi, et al.
Biointerphases|November 29, 2018
Surface-grafted antimicrobial drugs: Possible misinterpretation of mechanism of actionJavad Naderi, Carla Giles, Solmaz Saboohi, et al.
Biotechnology Advances|November 12, 2013
Biomaterials surfaces capable of resisting fungal attachment and biofilm formationBryan R Coad, Sarah E Kidd, David H Ellis, et al.
Biointerphases|December 19, 2020
Combatting fungal biofilm formation by diffusive release of fluconazole from heptylamine plasma polymer coatingJavad Naderi, Carla Giles, Solmaz Saboohi, et al.
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