314
Y. Sasikumar et al.
17. Marenzi G, Spagnuolo G, Sammartino JC, Gasparro R, Rebaudi A, Salerno M (2019) MicroScale Surface patterning of titanium dental implants by anodization in the presence of modifying
salts. Materials 12:1753
18. Fialho L, Carvalho S (2019) Surface engineering of nanostructured Ta surface with incorporation of osteoconductive elements by anodization. Appl Surf Sci 143:573
19. Thukkaram M, Cools P, Nikiforov A, Rigole P, Coenye T, Van Der Voort P et al (2019)
Antibacterial activity of a porous silver doped TiO 2 coating on titanium substrates synthesized
by plasma electrolytic oxidation. Appl Surf Sci 144:235
20. Li X, Qi M, Sun X, Weir MD, Tay FR, Oates TW et al (2019) Surface treatments on titanium
implants via nanostructured ceria for antibacterial and anti-inflammatory capabilities. Acta
Biomater 94:627
21. Abdulkareem EH, Memarzadeh K, Allaker RP, Huang J, Pratten J, Spratt D (2015) Anti-biofilm
activity of zinc oxide and hydroxyapatite nanoparticles as dental implant coating materials. J
Dent 43:1462
22. Mostafa D, Aboushelib M (2018) Bioactive-hybrid-zirconia implant surface for enhancing
osseointegration: an in vivo study. Int J Imp Dent 4:20
23. Li J, Li Z, Tu J, Jin G, Li L, Wang K et al (2019) In vitro and in vivo investigations of a-C/a-C:
Ti nanomultilayer coated Ti6Al4V alloy as artificial femoral head. Mater Sci Engg C 99:816
24. Hwang C, Min Y, Seong Y-J, Kim D-E, Kim H-E, Jeong S-H (2019) Enhanced biolubrication
on biomedical devices using hyaluronic acid-silica nanohybrid hydrogels. Coll Surf B Biointer
184:110503
25. Trino LD, Dias LFG, Albano LGS, Bronze-Uhle ES, Rangel EC, Graeff CFO et al (2018) Zinc
oxide surface functionalization and related effects on corrosion resistance of titanium implants.
Ceram Int 44:4000
26. Garza-Maldonado AV, Hernandez-Rodriguez MAL, Alvarez-Vera M, Ortega-Saenz JA, PerezUnzueta A, Cue-Sampedro R (2017) Biotribological study of multi-nano-layers as a coating
for total hip prostheses. Wear 376–377:243
27. Amaral M, Maru MM, Rodrigues SP, Gouvêa CP, Trommer RM, Oliveira FJ et al (2015)
Extremely low wear rates in hip joint bearings coated with nanocrystalline diamond. Tribo
Inter 89:72
28. Frandsen CJ, Noh K, Brammer KS, Johnston G, Jin S (2013) Hybrid micro/nano-topography
of a TiO 2 nanotube-coated commercial zirconia femoral knee implant promotes bone cell
adhesion in vitro. Mater Sci Engg C 33:2752
29. Hwang C, Min Y, Seong Y-J, Kim D-E, Kim H-E, Jeong S-H (2019) Enhanced biolubrication
on biomedical devices using hyaluronic acid-silica nanohybrid hydrogels. Colloids Surf B
184:110503
30. Trino LD, Dias LFG, Albano LGS, Bronze-Uhle ES, Rangel EC, Graeff CFO et al (2018) Zinc
oxide surface functionalization and related effects on corrosion resistance of titanium implants.
Ceram Int 44:4000–4008
31. Soliman AM, Tolba SA, Sharafeldin IM, Gepreel MA-H, Allam NK (2019) Ni-free, builtin nanotubular drug eluting stents: experimental and theoretical insights. Mater Sci Engg C
103:109750
32. Fan Y, Zhang Y, Zhao Q, Xie Y, Luo R, Yang P et al (2019) Immobilization of nano Cu-MOFs
with polydopamine coating for adaptable gasotransmitter generation and copper ion delivery
on cardiovascular stents. Biomaterials 204:36
33. Bedair TM, Min IJ, Park W, Joung YK, Han DK (2018) Sustained drug release using cobalt
oxide nanowires for the preparation of polymer-free drug-eluting stents. J Biomater Appl
33:352
34. Tang J, Liu Y, Zhu B, Su Y, Zhu X (2017) Preparation of paclitaxel/chitosan co-assembled
core-shell nanofibers for drug-eluting stent. Appl Surf Sci 393:299
35. Yang J, Lee I-S, Cui F (2016) Sirolimus-loaded CaP coating on Co-Cr alloy for drug-eluting
stent. Regen Biomater 3:167
36. Kushwaha M, Anderson JM, Bosworth CA, Andukuri A, Minor WP, Lancaster JR et al (2010) A
nitric oxide releasing, self assembled peptide amphiphile matrix that mimics native endothelium
for coating implantable cardiovascular devices. Biomaterials 31:1502
Y. Sasikumar et al.
17. Marenzi G, Spagnuolo G, Sammartino JC, Gasparro R, Rebaudi A, Salerno M (2019) MicroScale Surface patterning of titanium dental implants by anodization in the presence of modifying
salts. Materials 12:1753
18. Fialho L, Carvalho S (2019) Surface engineering of nanostructured Ta surface with incorporation of osteoconductive elements by anodization. Appl Surf Sci 143:573
19. Thukkaram M, Cools P, Nikiforov A, Rigole P, Coenye T, Van Der Voort P et al (2019)
Antibacterial activity of a porous silver doped TiO 2 coating on titanium substrates synthesized
by plasma electrolytic oxidation. Appl Surf Sci 144:235
20. Li X, Qi M, Sun X, Weir MD, Tay FR, Oates TW et al (2019) Surface treatments on titanium
implants via nanostructured ceria for antibacterial and anti-inflammatory capabilities. Acta
Biomater 94:627
21. Abdulkareem EH, Memarzadeh K, Allaker RP, Huang J, Pratten J, Spratt D (2015) Anti-biofilm
activity of zinc oxide and hydroxyapatite nanoparticles as dental implant coating materials. J
Dent 43:1462
22. Mostafa D, Aboushelib M (2018) Bioactive-hybrid-zirconia implant surface for enhancing
osseointegration: an in vivo study. Int J Imp Dent 4:20
23. Li J, Li Z, Tu J, Jin G, Li L, Wang K et al (2019) In vitro and in vivo investigations of a-C/a-C:
Ti nanomultilayer coated Ti6Al4V alloy as artificial femoral head. Mater Sci Engg C 99:816
24. Hwang C, Min Y, Seong Y-J, Kim D-E, Kim H-E, Jeong S-H (2019) Enhanced biolubrication
on biomedical devices using hyaluronic acid-silica nanohybrid hydrogels. Coll Surf B Biointer
184:110503
25. Trino LD, Dias LFG, Albano LGS, Bronze-Uhle ES, Rangel EC, Graeff CFO et al (2018) Zinc
oxide surface functionalization and related effects on corrosion resistance of titanium implants.
Ceram Int 44:4000
26. Garza-Maldonado AV, Hernandez-Rodriguez MAL, Alvarez-Vera M, Ortega-Saenz JA, PerezUnzueta A, Cue-Sampedro R (2017) Biotribological study of multi-nano-layers as a coating
for total hip prostheses. Wear 376–377:243
27. Amaral M, Maru MM, Rodrigues SP, Gouvêa CP, Trommer RM, Oliveira FJ et al (2015)
Extremely low wear rates in hip joint bearings coated with nanocrystalline diamond. Tribo
Inter 89:72
28. Frandsen CJ, Noh K, Brammer KS, Johnston G, Jin S (2013) Hybrid micro/nano-topography
of a TiO 2 nanotube-coated commercial zirconia femoral knee implant promotes bone cell
adhesion in vitro. Mater Sci Engg C 33:2752
29. Hwang C, Min Y, Seong Y-J, Kim D-E, Kim H-E, Jeong S-H (2019) Enhanced biolubrication
on biomedical devices using hyaluronic acid-silica nanohybrid hydrogels. Colloids Surf B
184:110503
30. Trino LD, Dias LFG, Albano LGS, Bronze-Uhle ES, Rangel EC, Graeff CFO et al (2018) Zinc
oxide surface functionalization and related effects on corrosion resistance of titanium implants.
Ceram Int 44:4000–4008
31. Soliman AM, Tolba SA, Sharafeldin IM, Gepreel MA-H, Allam NK (2019) Ni-free, builtin nanotubular drug eluting stents: experimental and theoretical insights. Mater Sci Engg C
103:109750
32. Fan Y, Zhang Y, Zhao Q, Xie Y, Luo R, Yang P et al (2019) Immobilization of nano Cu-MOFs
with polydopamine coating for adaptable gasotransmitter generation and copper ion delivery
on cardiovascular stents. Biomaterials 204:36
33. Bedair TM, Min IJ, Park W, Joung YK, Han DK (2018) Sustained drug release using cobalt
oxide nanowires for the preparation of polymer-free drug-eluting stents. J Biomater Appl
33:352
34. Tang J, Liu Y, Zhu B, Su Y, Zhu X (2017) Preparation of paclitaxel/chitosan co-assembled
core-shell nanofibers for drug-eluting stent. Appl Surf Sci 393:299
35. Yang J, Lee I-S, Cui F (2016) Sirolimus-loaded CaP coating on Co-Cr alloy for drug-eluting
stent. Regen Biomater 3:167
36. Kushwaha M, Anderson JM, Bosworth CA, Andukuri A, Minor WP, Lancaster JR et al (2010) A
nitric oxide releasing, self assembled peptide amphiphile matrix that mimics native endothelium
for coating implantable cardiovascular devices. Biomaterials 31:1502
