Skip to main content
Have a personal or library account? Click to login
Adhesion and Colonisation of Microorganisms on Porous TiO2 and TiO2-Silver Biomaterials Cover

Adhesion and Colonisation of Microorganisms on Porous TiO2 and TiO2-Silver Biomaterials

Open Access
|Jul 2019

References

  1. Albrektsson, T., Johansson, C. (2002). Osteoinduction, osteoconduction and osseointegration. Eur. Spine J., 2, 96–101.10.1007/978-3-642-56071-2_3
  2. Busscher, H. J., van der Mei, H. C., Subbiahdoss, G., Jutte, P. C., van den Dungen, J. J. A. M., Zaat, S. A. J., Schultz, M. J., Grainger, D. W. (2012). Biomaterial-associated infection: Locating the finish line in the race for the surface. Sci. Transl. Med., 4, 153rv10.10.1126/scitranslmed.3004528
  3. Bürgers, R., Hahnel, S., Reichert, T. E., Rosentritt, M., Behr, M., Handel, T. G. G., Gosau, M. (2010). Adhesion of Candida albicans to various dental implant surfaces and the influence of salivary pellicle proteins. Acta Biomaterialia, 6, 2307–2313.10.1016/j.actbio.2009.11.00319925892
  4. Chue, A. L., Moran, E., Atkins, B. L., Byren, I. (2011). Orthopaedic device associated Candidal infection. A retrospective review of patient characteristics and outcome. J. Infect., 63, 167–171.10.1016/j.jinf.2011.05.01821669224
  5. Eldesoqi, K., Seebach, C., Nguyen Ngoc, C., Meier, S., Nau, C., Schaible, A., Marzi, I., Henrich, D. (2013). High calcium bioglass enhances differentiation and survival of endothelial progenitor cells, inducing early vascularization in critical size bone defects. PLoS One, 14, e79058.10.1371/journal.pone.0079058382828924244419
  6. Eto, S., Kawano, S., Someya, S., Miyamoto, H., Sonohata, M., Mawatari, M. (2016). First clinical experience with thermal-sprayed silver oxide-containing hydroxyapatite coating implant. J. Arthroplasty, 31, 1498–1503.10.1016/j.arth.2015.12.03426810376
  7. Flemming, H. C., Wingender, J. (2010). The biofilm matrix. Nat. Rev. Microbiol, 8, 623–633.10.1038/nrmicro241520676145
  8. Goodman, S. B., Yao, Z., Keeney, M., Yang, F. (2013). The future of biologic coatings for orthopaedic implants. Biomaterials, 34, 3174–3183.10.1016/j.biomaterials.2013.01.074358284023391496
  9. Hall-Stoodley, L., Costerton, J.W., Stoodley, P. (2004). Bacterial biofilms: From the natural environment to infectious diseases. Nat. Rev. Microbiol. 2, 95–108.10.1038/nrmicro82115040259
  10. Huebsch, N., Mooney, D. J. (2009). Inspiration and application in the evolution of biomaterials. Nature, 462, 426–432.10.1038/nature08601284852819940912
  11. Hyun, J. S., Tran, M. C, Wong, V. W., Chung, M. T., Lo, D. D., Montoro, D. T., et al. (2013). Enhancing stem cell survival in vivo for tissue repair. Biotechnol Adv, 31, 736–743.10.1016/j.biotechadv.2012.11.00323153460
  12. Kroica, J., Skadins, I., Salma, I., Reinis, A., Sokolova, M., Rostoka D., Berza N. (2016). Antibacterial efficiency of hydroxyapatite biomaterials with biodegradable polylactic acid and polycaprolactone polymers saturated with antibiotics. Proc. Latvian Acad. Sci., Section B, 70 (4), 220–226.10.1515/prolas-2016-0035
  13. Lewis, K. (2001). Riddle of biofilm resistance. Antimicrob. Agents Chemother, 45, 999–1007.10.1128/AAC.45.4.999-1007.20019041711257008
  14. Liad, J., Hirotab, K., Gotoa, T., Yumotoc, H., Miyake, Y., Ichikawaa, T. (2012). Biofilm formation of Candida albicans on implant overdenture materials and its removal. J. Dentistry, 40, 686–692.10.1016/j.jdent.2012.04.02622580351
  15. McCarty, T. P., Pappas, P. G. (2016). Invasive candidiasis. Infect. Dis. Clin. North Amer., 30, 103–124.10.1016/j.idc.2015.10.01326739610
  16. Nascimento, C., Pita, M. S., Pedrazzi, V., Ferreira de Albuquerque Junior, R., Ribeiro, R. F. (2013). In vivo evaluation of Candida spp. adhesion on titanium or zirconia abutment surfaces. Arch. Oral Biol., 58, 853–861.10.1016/j.archoralbio.2013.01.01423562525
  17. O`Gara, J. P., Humphryes, H. (2001). Staphylococcus epidermidis biofilms: Importance and implications. J. Med. Microbiol., 7, 582–587.10.1099/0022-1317-50-7-58211444767
  18. Oliveira, W. F., Silva, P. M. S., Silva, R. C. S., Silva, G. M. M., Machado, G., Coelho. M. T. S. Correia, L. C. B. B. (2018). Staphylococcus aureus and Staphylococcus epidermidis infections on implants. J. Hospital Infect., 98, 111–117.10.1016/j.jhin.2017.11.00829175074
  19. Post, J. C. (2001). Direct evidence of bacterial biofilms in otitis media. Laryngoscope, 111, 2083–2094.10.1097/00005537-200112000-0000111802002
  20. Ratner, B. D, Bryant, S. J. (2004). Biomaterials: Where we have been and where we are going. Annu. Rev. Biomed. Eng., 6, 41–75.10.1146/annurev.bioeng.6.040803.14002715255762
  21. Ribeiro, M., Monteiro, F. J., Ferraz, M. P. (2012). Infection of orthopedic implants with emphasis on bacterial adhesion process and techniques used in studying bacterial-material interactions. Biomatter, 2 (4), 176–194.10.4161/biom.22905356810423507884
  22. Sampedro, M. F., Patel, R. Infections associated with long-term prosthetic devices. Infect. Dis. Clin. North Amer., 21, 785–819.10.1016/j.idc.2007.07.00117826624
  23. Skadins, I., Kroica, J., Salma, I., Reinis, A., Sokolova, M., Rostoka, D. (2017). The level of inflammatory cytokines and antimicrobial peptides after composite material implantation and contamination with bacterial culture. Key Eng. Mater., 721, 245–250.10.4028/www.scientific.net/KEM.721.245
  24. Smith, G., Chetter, I. (2015). Infection in prosthetic material. Surgery, 33, 559–564.10.1016/j.mpsur.2015.08.003
  25. Taga, T., Kabata, T., Kajino, Y., Inoue, D., Ohmori, T., Yamamoto, T., Takagi, T., Tsuchiya, H. (2018). Comparison with the osteoconductivity and bone-bonding ability of the iodine supported titanium, titanium with porous oxide layer and the titanium alloy in the rabbit model. J. Orthop. Sci., 23, 585–591.10.1016/j.jos.2018.01.00729429889
  26. Trampuz, A., Piper, K. E., Jacobson, M. J., Hanssen, A. D., Unni, K. K., Osmon, D. R., Mandrekar, J. N., Cockerill, F. R., Steckelberg, J. M., Greenleaf, J. F., Patel, R. (2007). Sonication of removed hip and knee prostheses for diagnosis of infection. New Engl. J. Med., 357, 654–663.10.1056/NEJMoa06158817699815
  27. Wilding, C. P., Cooper, G.A., Freeman, A. K., Parry, M. C., Jeys, L. (2016). Can a silver-coated arthrodesis implant provide a viable alternative to above knee amputation in the unsalvageable, infected total knee arthroplasty? J. Arthroplasty, 31, 2542–2547.10.1016/j.arth.2016.04.00927181490
  28. Williams, D. F. (1986). Definitions in Biomaterials: Proceedings of a Consensus Conference of the European Society for Biomaterials, Chester, England, March 3–5, 1986. Elsevier, Amsterdam, p. 30.
  29. Zimmerli, W., Trampuz, A., Ochsner, P. E. (2004). Prosthetic-joint infections. New Engl. J. Med., 351, 1645–1654.10.1056/NEJMra04018115483283
DOI: https://doi.org/10.2478/prolas-2019-0051 | Journal eISSN: 2255-890X | Journal ISSN: 1407-009X
Language: English
Page range: 325 - 331
Submitted on: Jan 3, 2019
Accepted on: Apr 23, 2019
Published on: Jul 12, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2019 Ingus Skadiņš, Lana Micko, Liene Zvaigzne, Inga Narkevica, Juta Kroiča, published by Latvian Academy of Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.