Skip to main content
Top

2024 | OriginalPaper | Chapter

Surface Functionalization of Metallic Biomaterials: Present Trend and Future Perspectives

Authors : Giovanna Rotella, Vito Basile, Pierpaolo Carlone, Jessica Dal Col, Luigino Filice, Leonardo Orazi, Luca Romoli, Felice Rubino, Maria Rosaria Saffioti

Published in: Selected Topics in Manufacturing

Publisher: Springer Nature Switzerland

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Surface functionalization is emerging as one of the most promising methodologies for properly improving surfaces, especially for biomedical applications. The possibility to tune surface properties improving the prosthesis performance and their interaction with the human environment represents a challenging research area. The paper reports the most used surface functionalization for metallic biomaterials highlighting limitations and advantages of such technologies on the actual industrial panorama.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
3.
go back to reference Ratner BD, Hoffman AS, Lemons JE (2006) Biomaterials science : an introduction to materials in volume I : basic concepts 3rd annual microscopy workshop in microscopy for materials these topics will be covered, pp 25–27 Ratner BD, Hoffman AS, Lemons JE (2006) Biomaterials science : an introduction to materials in volume I : basic concepts 3rd annual microscopy workshop in microscopy for materials these topics will be covered, pp 25–27
5.
go back to reference Brånemark R, Brånemark PI, Rydevik B, Myers RR (2001) Osseointegration in skeletal reconstruction and rehabilitation: a review. J Rehabil Res Dev Brånemark R, Brånemark PI, Rydevik B, Myers RR (2001) Osseointegration in skeletal reconstruction and rehabilitation: a review. J Rehabil Res Dev
6.
go back to reference Lee JWY, Bance ML (2019) physiology of osseointegration, otolaryngologic clinics of North America Lee JWY, Bance ML (2019) physiology of osseointegration, otolaryngologic clinics of North America
8.
go back to reference Rivera-Chacon DM, Alvarado-Velez M, Acevedo-Morantes CY, Singh SP, Gultepe E et al (2013) Fibronectin and vitronectin promote human fetal osteoblast cell attachment and proliferation on nanoporous titanium surfaces. J Biomed Nanotechnol 9(6). https://doi.org/10.1166/jbn.2013.1601 Rivera-Chacon DM, Alvarado-Velez M, Acevedo-Morantes CY, Singh SP, Gultepe E et al (2013) Fibronectin and vitronectin promote human fetal osteoblast cell attachment and proliferation on nanoporous titanium surfaces. J Biomed Nanotechnol 9(6). https://​doi.​org/​10.​1166/​jbn.​2013.​1601
9.
go back to reference Mavrogenis AF, Dimitriou R, Parvizi J, Babis GC (2009) Biology of implant osseointegration. J Musculoskelet Neuronal Interact Mavrogenis AF, Dimitriou R, Parvizi J, Babis GC (2009) Biology of implant osseointegration. J Musculoskelet Neuronal Interact
11.
go back to reference Caplan AI, Dennis JE (2006) Mesenchymal stem cells as trophic mediators. J Cell Biochem Caplan AI, Dennis JE (2006) Mesenchymal stem cells as trophic mediators. J Cell Biochem
12.
go back to reference Pellegrini G, Francetti L, Barbaro B, Del Fabbro M (2018) Novel surfaces and osseointegration in implant dentistry. J Investig Clin Dent Pellegrini G, Francetti L, Barbaro B, Del Fabbro M (2018) Novel surfaces and osseointegration in implant dentistry. J Investig Clin Dent
16.
go back to reference Rupp F, Liang L, Geis-Gerstorfer J, Scheideler L, Hüttig F (2018) Surface characteristics of dental implants: a review Dent Mater Rupp F, Liang L, Geis-Gerstorfer J, Scheideler L, Hüttig F (2018) Surface characteristics of dental implants: a review Dent Mater
18.
go back to reference Annibali S, Pranno N, Cristalli MP, La Monaca G, Polimeni A (2016) Survival analysis of implant in patients with diabetes mellitus: a systematic review. Implant Dent Annibali S, Pranno N, Cristalli MP, La Monaca G, Polimeni A (2016) Survival analysis of implant in patients with diabetes mellitus: a systematic review. Implant Dent
21.
go back to reference Rasouli R, Barhoum A, Uludag H (2018) A review of nanostructured surfaces and materials for dental implants: surface coating, patterning and functionalization for improved performance. Biomater Sci Rasouli R, Barhoum A, Uludag H (2018) A review of nanostructured surfaces and materials for dental implants: surface coating, patterning and functionalization for improved performance. Biomater Sci
28.
44.
go back to reference Bechtol F, Laing, (1959) Metals and engineering in bone and joint surgery. Williams and Wilkins, Baltimore, p 582 Bechtol F, Laing, (1959) Metals and engineering in bone and joint surgery. Williams and Wilkins, Baltimore, p 582
45.
go back to reference Wizemann, T. (ed) (2010) Institute of Medicine (US) Committee on the Public Health Effectiveness of the FDA 510(k) Clearance Process. Public Health Effectiveness of the FDA 510(k) Clearance Process: Balancing Patient Safety and Innovation: Worksh Wizemann, T. (ed) (2010) Institute of Medicine (US) Committee on the Public Health Effectiveness of the FDA 510(k) Clearance Process. Public Health Effectiveness of the FDA 510(k) Clearance Process: Balancing Patient Safety and Innovation: Worksh
49.
go back to reference Hornberger H, Virtanen S, Boccaccini AR (2012) Biomedical coatings on magnesium alloys–a review. Acta Biomaterialia Hornberger H, Virtanen S, Boccaccini AR (2012) Biomedical coatings on magnesium alloys–a review. Acta Biomaterialia
50.
go back to reference Koch K, Bhushan B, Barthlott W (2009) Multifunctional surface structures of plants: an inspiration for biomimetics. Prog Mater Sci Koch K, Bhushan B, Barthlott W (2009) Multifunctional surface structures of plants: an inspiration for biomimetics. Prog Mater Sci
51.
go back to reference Ratner BD, Hoffman AS, Schoen FJ, Lemons JE (2013) Biomaterials science: an introduction to materials, 3rd edn. Ratner BD, Hoffman AS, Schoen FJ, Lemons JE (2013) Biomaterials science: an introduction to materials, 3rd edn.
54.
59.
go back to reference Patel D, Jain VK, Ramkumar J (2018) Micro texturing on metallic surfaces: state of the art. Proc Inst Mech Eng, Part B: J Eng Manuf Patel D, Jain VK, Ramkumar J (2018) Micro texturing on metallic surfaces: state of the art. Proc Inst Mech Eng, Part B: J Eng Manuf
60.
go back to reference Biondani F, Benassi L, Bissacco G, Orazi L, Tang PT (2020) Surface micro and nanostructuring of three-dimensional components of micro medical devices. Procedia CIRP Biondani F, Benassi L, Bissacco G, Orazi L, Tang PT (2020) Surface micro and nanostructuring of three-dimensional components of micro medical devices. Procedia CIRP
62.
go back to reference Lu P, Wood RJK (2020) Tribological performance of surface texturing in mechanical applications-a review. Surf Topogr: Metrol Prop Lu P, Wood RJK (2020) Tribological performance of surface texturing in mechanical applications-a review. Surf Topogr: Metrol Prop
63.
go back to reference Usami H, Sato T, Kanda Y, Nishio S (2017) Applicability of interrupted micro cutting process “Tilling” as surface texturing. Key Eng Mater Usami H, Sato T, Kanda Y, Nishio S (2017) Applicability of interrupted micro cutting process “Tilling” as surface texturing. Key Eng Mater
66.
go back to reference Chen N, Li HN, Wu J, Li Z, Li L et al (2021) Advances in micro milling: from tool fabrication to process outcomes. Int J Mach Tools Manuf Chen N, Li HN, Wu J, Li Z, Li L et al (2021) Advances in micro milling: from tool fabrication to process outcomes. Int J Mach Tools Manuf
67.
go back to reference Mao B, Siddaiah A, Liao Y, Menezes PL (2020) Laser surface texturing and related techniques for enhancing tribological performance of engineering materials: a review. J Manuf Process Mao B, Siddaiah A, Liao Y, Menezes PL (2020) Laser surface texturing and related techniques for enhancing tribological performance of engineering materials: a review. J Manuf Process
68.
go back to reference Chen K, Yang X, Zhang Y, Yang H, Lv G et al (2021) Research progress of improving surface friction properties by surface texture technology. Int J Adv Manuf Technol Chen K, Yang X, Zhang Y, Yang H, Lv G et al (2021) Research progress of improving surface friction properties by surface texture technology. Int J Adv Manuf Technol
69.
go back to reference Rajurkar KP, Sundaram MM, Malshe AP (2013) Review of electrochemical and electrodischarge machining. Procedia CIRP Rajurkar KP, Sundaram MM, Malshe AP (2013) Review of electrochemical and electrodischarge machining. Procedia CIRP
71.
go back to reference Kumar A, Kumar M, Alok A, Das M (2020) Surface texturing by electrochemical micromachining: a review. In: IOP conference series: materials science and engineering Kumar A, Kumar M, Alok A, Das M (2020) Surface texturing by electrochemical micromachining: a review. In: IOP conference series: materials science and engineering
81.
go back to reference Gnilitskyi I, Pogorielov M, Viter R, Ferraria AM, Carapeto AP et al (2019) Cell and tissue response to nanotextured Ti–6Al–4V and Zr implants using high-speed femtosecond laser-induced periodic surface structures. Nanomedicine: Nanotechnol, Biol, Med 21. https://doi.org/10.1016/j.nano.2019.102036 Gnilitskyi I, Pogorielov M, Viter R, Ferraria AM, Carapeto AP et al (2019) Cell and tissue response to nanotextured Ti–6Al–4V and Zr implants using high-speed femtosecond laser-induced periodic surface structures. Nanomedicine: Nanotechnol, Biol, Med 21. https://​doi.​org/​10.​1016/​j.​nano.​2019.​102036
87.
go back to reference Schieber R, Lasserre F, Hans M, Fernández-Yagüe M, Díaz-Ricart M et al (2017) Direct laser interference patterning of cocr alloy surfaces to control endothelial cell and platelet response for cardiovascular applications. Adv Healthc Mater 6(19). https://doi.org/10.1002/adhm.201700327 Schieber R, Lasserre F, Hans M, Fernández-Yagüe M, Díaz-Ricart M et al (2017) Direct laser interference patterning of cocr alloy surfaces to control endothelial cell and platelet response for cardiovascular applications. Adv Healthc Mater 6(19). https://​doi.​org/​10.​1002/​adhm.​201700327
88.
go back to reference Carrigy J, Perrotti V, Franciotti R, Sharma A, Quaranta A (2021) A randomized pilot clinical and microbiological study comparing laser microtextured implants with and without platform switching. Appl Sci (Switzerland) 11(9). https://doi.org/10.3390/app11094140 Carrigy J, Perrotti V, Franciotti R, Sharma A, Quaranta A (2021) A randomized pilot clinical and microbiological study comparing laser microtextured implants with and without platform switching. Appl Sci (Switzerland) 11(9). https://​doi.​org/​10.​3390/​app11094140
89.
go back to reference Driver M (2012) Coatings for biomedical applications, p 366 Driver M (2012) Coatings for biomedical applications, p 366
91.
go back to reference Gellér ZE, Albrecht K, Dobránszky J (2008) Electropolishing of coronary stents. Mater Sci Forum Gellér ZE, Albrecht K, Dobránszky J (2008) Electropolishing of coronary stents. Mater Sci Forum
93.
go back to reference Bhuyan A, Gregory B, Lei H, Seow YY, Gianchandani YB (2005) Pulse and DC electropolishing of stainless steel for stents and other devices. Proc IEEE Sens Bhuyan A, Gregory B, Lei H, Seow YY, Gianchandani YB (2005) Pulse and DC electropolishing of stainless steel for stents and other devices. Proc IEEE Sens
94.
100.
go back to reference Maitz MF, Pham MT, Matz W, Reuther H, Steiner G et al (2002) Ion beam treatment of titanium surfaces for enhancing deposition of hydroxyapatite from solution. Biomol Eng Maitz MF, Pham MT, Matz W, Reuther H, Steiner G et al (2002) Ion beam treatment of titanium surfaces for enhancing deposition of hydroxyapatite from solution. Biomol Eng
105.
go back to reference Besra L, Liu M (2007) A review on fundamentals and applications of electrophoretic deposition (EPD). Prog Mater Sci Besra L, Liu M (2007) A review on fundamentals and applications of electrophoretic deposition (EPD). Prog Mater Sci
108.
go back to reference Yerokhin AL, Nie X, Leyland A, Matthews A, Dowey SJ (1999) Plasma electrolysis for surface engineering. Surf CoatS Technol Yerokhin AL, Nie X, Leyland A, Matthews A, Dowey SJ (1999) Plasma electrolysis for surface engineering. Surf CoatS Technol
110.
go back to reference Chiesa R, Sandrini E, Santin M, Rondelli G, Cigada A (2003) Osteointegration of titanium and its alloys by anodic spark deposition and other electrochemical techniques: a review. J App Biomat Biomechanics Chiesa R, Sandrini E, Santin M, Rondelli G, Cigada A (2003) Osteointegration of titanium and its alloys by anodic spark deposition and other electrochemical techniques: a review. J App Biomat Biomechanics
116.
go back to reference Van Der Biest OO, Vandeperre LJ (1999) Electrophoretic deposition of materials Van Der Biest OO, Vandeperre LJ (1999) Electrophoretic deposition of materials
117.
119.
go back to reference Sun L, Berndt CC, Gross KA, Kucuk A (2001) Material fundamentals and clinical performance of plasma-sprayed hydroxyapatite coatings: a review. J Biomed Mater Res Sun L, Berndt CC, Gross KA, Kucuk A (2001) Material fundamentals and clinical performance of plasma-sprayed hydroxyapatite coatings: a review. J Biomed Mater Res
120.
go back to reference Massaro C, Baker MA, Cosentino F, Ramires PA, Klose S et al (2001) Surface and biological evaluation of hydroxyapatite-based coatings on titanium deposited by different techniques. J Biomed Mater Res 58(6). https://doi.org/10.1002/jbm.1065 Massaro C, Baker MA, Cosentino F, Ramires PA, Klose S et al (2001) Surface and biological evaluation of hydroxyapatite-based coatings on titanium deposited by different techniques. J Biomed Mater Res 58(6). https://​doi.​org/​10.​1002/​jbm.​1065
123.
129.
go back to reference Yang CY, Yang YC (2002) The biological response of human osteoblasts on plasma sprayed hydroxyapatite coatings Yang CY, Yang YC (2002) The biological response of human osteoblasts on plasma sprayed hydroxyapatite coatings
136.
141.
go back to reference Yang Y, Kim KH, Ong JL (2005) A review on calcium phosphate coatings produced using a sputtering process—an alternative to plasma spraying. Biomaterials Yang Y, Kim KH, Ong JL (2005) A review on calcium phosphate coatings produced using a sputtering process—an alternative to plasma spraying. Biomaterials
148.
go back to reference Kurtz SM (2015) UHMWPE biomaterials handbook: ultra high molecular weight polyethylene in total joint replacement and medical devices Kurtz SM (2015) UHMWPE biomaterials handbook: ultra high molecular weight polyethylene in total joint replacement and medical devices
150.
go back to reference Orazi L, Sorgato M, Piccolo L, Masato D, Lucchetta G (2020) Generation and characterization of laser induced periodic surface structures on plastic injection molds content courtesy of springer nature , terms of use apply. Rights reserved. Content courtesy of Springer Nature, terms of use apply. Rights reserved, pp 207–221. Orazi L, Sorgato M, Piccolo L, Masato D, Lucchetta G (2020) Generation and characterization of laser induced periodic surface structures on plastic injection molds content courtesy of springer nature , terms of use apply. Rights reserved. Content courtesy of Springer Nature, terms of use apply. Rights reserved, pp 207–221.
151.
go back to reference Modica et al (2022) Replication study of molded micro-textured samples made of ultra-high molecular weight polyethylene for medical application. In: World congress on micro and nano manufacturing WCMNM 2022. Leuven Modica et al (2022) Replication study of molded micro-textured samples made of ultra-high molecular weight polyethylene for medical application. In: World congress on micro and nano manufacturing WCMNM 2022. Leuven
153.
go back to reference Hinderer S, Layland SL, Schenke-Layland K (2016) ECM and ECM-like materials—Biomaterials for applications in regenerative medicine and cancer therapy. Adv Drug Deliv Rev Hinderer S, Layland SL, Schenke-Layland K (2016) ECM and ECM-like materials—Biomaterials for applications in regenerative medicine and cancer therapy. Adv Drug Deliv Rev
157.
go back to reference Douglas T, Wlodarczyk M, Pamula E, Declercq H, de Mulder E et al (2014) Enzymatic mineralization of gellan gum hydrogel for bone tissue-engineering applications and its enhancement by polydopamine. J Tissue Eng Regen Med 8(11). https://doi.org/10.1002/term.1616 Douglas T, Wlodarczyk M, Pamula E, Declercq H, de Mulder E et al (2014) Enzymatic mineralization of gellan gum hydrogel for bone tissue-engineering applications and its enhancement by polydopamine. J Tissue Eng Regen Med 8(11). https://​doi.​org/​10.​1002/​term.​1616
158.
go back to reference De Jonge LT, Leeuwenburgh SCG, Wolke JGC, Jansen JA (2008) Organic-inorganic surface modifications for titanium implant surfaces. Pharm Res De Jonge LT, Leeuwenburgh SCG, Wolke JGC, Jansen JA (2008) Organic-inorganic surface modifications for titanium implant surfaces. Pharm Res
160.
go back to reference Lynge ME, Schattling P, Städler B (2015) Recent developments in poly(dopamine)-based coatings for biomedical applications. Nanomedicine Lynge ME, Schattling P, Städler B (2015) Recent developments in poly(dopamine)-based coatings for biomedical applications. Nanomedicine
161.
go back to reference Chien CY, Tsai WB (2013) Poly(dopamine)-assisted immobilization of Arg-Gly-Asp peptides, hydroxyapatite, and bone morphogenic protein-2 on titanium to improve the osteogenesis of bone marrow stem cells. ACS Appl Mater Interfaces 5(15). https://doi.org/10.1021/am401071f Chien CY, Tsai WB (2013) Poly(dopamine)-assisted immobilization of Arg-Gly-Asp peptides, hydroxyapatite, and bone morphogenic protein-2 on titanium to improve the osteogenesis of bone marrow stem cells. ACS Appl Mater Interfaces 5(15). https://​doi.​org/​10.​1021/​am401071f
162.
go back to reference Siebers (2006) Transforming growth factor-b1 release from a porous electrostatic spray deposition–derived calcium phosphate coating MARIJKE 12(9):1–8 Siebers (2006) Transforming growth factor-b1 release from a porous electrostatic spray deposition–derived calcium phosphate coating MARIJKE 12(9):1–8
170.
go back to reference Roach P, Eglin D, Rohde K, Perry CC (2007) Modern biomaterials: a review—Bulk properties and implications of surface modifications. J Mater Sci: Mater Med Roach P, Eglin D, Rohde K, Perry CC (2007) Modern biomaterials: a review—Bulk properties and implications of surface modifications. J Mater Sci: Mater Med
179.
go back to reference Cheng Y, Feng G, Moraru CI (2019) Micro-and nanotopography sensitive bacterial attachment mechanisms: a review. Front Microbiol Cheng Y, Feng G, Moraru CI (2019) Micro-and nanotopography sensitive bacterial attachment mechanisms: a review. Front Microbiol
181.
go back to reference Orazi L, Pogorielov M, Deineka V, Husak E, Korniienko V et al (2019) Osteoblast cell response to LIPSS-modified Ti-implants, in key engineering materials Orazi L, Pogorielov M, Deineka V, Husak E, Korniienko V et al (2019) Osteoblast cell response to LIPSS-modified Ti-implants, in key engineering materials
182.
184.
Metadata
Title
Surface Functionalization of Metallic Biomaterials: Present Trend and Future Perspectives
Authors
Giovanna Rotella
Vito Basile
Pierpaolo Carlone
Jessica Dal Col
Luigino Filice
Leonardo Orazi
Luca Romoli
Felice Rubino
Maria Rosaria Saffioti
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-41163-2_15

Premium Partners