By Roger Narayan
Half 1 advent to diamond established fabrics for clinical functions: creation to clinical functions of diamond debris and surfaces; Functionalisation of diamond surfaces for scientific functions; Biotribology and organic behaviour of nanocrystalline diamond (NCD) coatings for clinical functions; Blood compatibility of diamond-like carbon (DLC) coatings. half 2 Biomedical functions of diamond established fabrics: Nanostructured diamond coatings for orthopaedic purposes; Ultrananocrystalline diamond (UNCD) movies for ophthalmological functions; Ultrananocrystalline diamond (UNCD) for neural functions; Nanodiamonds for drug supply structures; Diamond nucleation and seeding ideas for tissue regeneration; Diamond fabrics for microfluidic units.
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Additional info for Diamond Based Materials for Biomedical Applications.
Diamond and Related Materials (2009) 18, 606. 44. , Synthetic diamond films as a platform material for label-free protein sensors. Physica Status Solidi A (2008) 205, 520. 45. , et al. Diamond nano-wires, a new approach towards next generation electrochemical gene sensor platforms. Diamond and Related Materials (2009) 18, 910. 46. , et al. On diamond surface properties and interactions with neurons. European Journal of Physics E (2009) 30, 149. 47. Ariano, P, Lo Giudice, A, Marcantoni, A, et al.
Ruther, Rigsby et al. 9 (a) Schematic illustration of the Huisgen 1,3 dipolar cycloaddition. (b) ‘Click’ reactions on diamond surfaces. , 2011). , 2009). , 2010). In addition, the interest in the ‘click’ chemistry approach for the development of glycan interfaces is the possibility to vary the density of the surface immobilized carbohydrate by clicking the azido-derivatized carbohydrate analogue in the presence of a diluting agent such as azidopropanol. , 2010) can be formed in an easy and wellcontrolled fashion, as in the case of thiolated mixed monolayers on gold.
Silanization of photochemically oxidized diamond surface with 3-aminopropyltriethoxysilane (APTES) resulted in the formation of a peptide microarray in a multistep process (Fig. , 2007b). 7 (a) Schematic illustration of the formation of semicarbazide termination on amine-terminated BDD surfaces and subsequent immobilization of glyoxylyl peptides through semicarbazone ligation. (b) Fluorescence intensity of peptide micro array prepared from semicarbazide-modified diamond surfaces when incubated in the presence of antibody antipeptide FLAG labelled with tetramethylrhodamine (10 −2 mg/mL).
Diamond Based Materials for Biomedical Applications. by Roger Narayan