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Articles

Modification of titanium surface with collagen and doxycycline as a new approach in dental implants

, , , , , , , , , & show all
Pages 2537-2550 | Received 27 Apr 2015, Accepted 13 Jul 2015, Published online: 31 Jul 2015

References

  • John V, Chen S, Parashos P. Implant or the natural tooth – a contemporary treatment planning dilemma? Aust. Dent. J. 2007;52:S138–S150. 10.1111/adj.2007.52.issue-s1
  • Guo CA, Tang ATH, Matinlinn JP. Insights into surface treatment methods of titanium dental implants. J. Adhes. Sci. Technol. 2012;26:189–205.
  • Torabinejad M, Landaez M, Milan M, et al. Tooth retention through endodontic microsurgery or tooth replacement using single implants: a systematic review of treatment outcomes. J. Endodont. 2015;41:1–10. 10.1016/j.joen.2014.09.002
  • Heitz-Mayfield LJA. Peri-implant diseases: diagnosis and risk indicators. J. Clin. Periodontol. 2008;35:292–304. 10.1111/cpe.2008.35.issue-s8
  • Walter MS, Frank MJ, Satué M, et al. Bioactive implant surface with electrochemically bound doxycycline promotes bone formation markers in vitro and in vivo. Dent. Mater. 2014;30:200–214. 10.1016/j.dental.2013.11.006
  • Chrcanovic BR, Albrektsson T, Wennerberg A. Dental implants inserted in fresh extraction sockets versus healed sites: a systematic review and meta-analysis. J. Dent. 2015;43:16–41. 10.1016/j.jdent.2014.11.007
  • Alla RA, Ginjupalli K, Upadhya N, Shammas M, Ravi RK, Sekhar R. Surface roughness of implants: a review. Trends Biomater. Artif. Organs. 2011;25:112–118.
  • Yeo I-S. Reality of dental implant surface modification: a short literature review. Open Biomed. Eng. J. 2014;8:114–119. 10.2174/1874120701408010114
  • Metoki N, Liu L, Beilis E, Eliaz N, Mandler D. Preparation and characterization of alkylphosphonic acid self-assembled monolayers on titanium alloy by chemisorption and electrochemical deposition. Langmuir. 2014;30:6791–6799. 10.1021/la404829b
  • Corobea MS, Stoenescu M, Miculescu M, et al. Titanium functionalizing and derivatizing for implantable materials osseointegration properties enhancing. Dig. J. Nanomater. Bios. 2014;9:1339–1347.
  • Aaron JE. Periosteal Sharpey’s fibers: a novel bone matrix regulatory system? Front. Endocrinol. 2012;3:1–10.
  • Brånemark PI, Breine U, Adell R, Hansson BO, Lindström J, Ohlsson Å. Intra-osseous anchorage of dental prostheses: I. experimental studies. Scand. J. Plast. Reconstr. Surg. 1969;3:81–100. 10.3109/02844316909036699
  • Roehlecke C, Witt M, Kasper M, et al. Synergistic effect of titanium alloy and collagen type I on cell adhesion, proliferation and differentiation of osteoblast-like cells. Cells Tissues Organs. 2001;168:178–187. 10.1159/000047833
  • Sverzut AT, Crippa GE, Morra M, Tambasco de Oliveira P, Beloti MM, Rosa AL. Effects of type I collagen coating on titanium osseointegration: histomorphometric, cellular and molecular analyses. Biomed. Mater. 2012;2012:1–7.
  • Stadlinger B, Korn P, Tödtmann N, et al. Osseointegration of biochemically modified implants in an osteoporosis rodent model. Eur. Cell. Mater. 2013;25:326–340.
  • Nagai M, Hayakawa T, Fukatsu A, et al. In vitro study of collagen coating of titanium implants for initial cell attachment. Dent. Mater. J. 2002;21:250–260. 10.4012/dmj.21.250
  • Choi J, Jeong Y, Gilad A, et al. Engineered collagen hydrogels for the sustained release of biomolecules and imaging agents: promoting the growth of human gingival cells. Int. J. Nanomed. 2014;9:5189–5201. 10.2147/IJN
  • Esposito M, Grusovin MG, Worthington HV. Interventions for replacing missing teeth: antibiotics at dental implant placement to prevent complications. Cochrane Database Syst. Rev. 2013;7:1–37.
  • Barbaresso RC, Rău I, Zgârian RG, Meghea A, Ghica MV. Niflumic acid-collagen delivery systems used as anti-inflammatory drugs and analgesics in dentistry. C.R. Chim. 2014;17:12–17. 10.1016/j.crci.2013.07.007
  • Ghica MV, Albu MG, Popa L, Moisescu Ş. Response surface methodology and taguchi approach to assess the combined effect of formulation factors on minocycline delivery from collagen sponges. Pharmazie. 2013;68:340–348.
  • Albu MG, Ghica MV, Popa L, Leca M, Trandafir V. Kinetics of in vitro release of doxycycline hyclate from collagen hydrogels. Rev. Roum. Chim. 2009;54:373–379.
  • Singh B, Sharma S, Dhiman A. Design of antibiotic containing hydrogel wound dressings: biomedical properties and histological study of wound healing. Int. J. Pharm. 2013;457:82–91.
  • Sung JH, Hwang MR, Kim JO, et al. Gel characterisation and in vivo evaluation of minocycline-loaded wound dressing with enhanced wound healing using polyvinyl alcohol and chitosan.  Int. J. Pharm. 2010;392:232–240.
  • Bose S, Tarafder S. Calcium phosphate ceramic systems in growth factor and drug delivery for bone tissue engineering: a review. Acta Biomater. 2012;8:1401–1421. 10.1016/j.actbio.2011.11.017
  • Huang X, Brazel CS. On the importance and mechanisms of burst release in matrix-controlled drug delivery systems. J. Controlled Release. 2001;73:121–136. 10.1016/S0168-3659(01)00248-6
  • Lyndon JA, Boyd BJ, Birbilis N. Metallic implant drug/device combinations for controlled drug release in orthopaedic applications. J. Controlled Release. 2014;179:63–75. 10.1016/j.jconrel.2014.01.026

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