Barberi and Spriano, 2021 77. Barberi J, Spriano S. Titanium and protein adsorption: An overview of mechanisms and effects of surface features. Materials (Basel). 2021 Mar;14(7):1590. doi: 10.3390/ma14071590. |
Ticp; Ti-6Al-4V; |
Integrin (α5β1); Fibronectin; Vitronectin; Bone Morphogenic Protein-2; Fibrinogen; Albumin; Laminin α; Lactoferrin; Collagen type I; Salivary Proteins; |
Meyer et al., 2004 88. Meyer U, Joos U, Mythili J, Stamm T, Hohoff A, Fillies T, et al. Ultrastructural characterization of the implant/bone interface of immediately loaded dental implants. Biomaterials. 2004 May;25(10):1959-67. doi: 10.1016/j.biomaterials.2003.08.070. |
not specified |
Fibronectin; Vitronectin; Osteonectin; |
Romero-Gavilán et al., 2017 99. Romero-Gavilán F, Gomes NC, Ródenas J, Sánchez A, Azkargorta M, Iloro I, et al. Proteome analysis of human serum proteins adsorbed onto different titanium surfaces used in dental implants. Biofouling. 2017 Jan;33(1):98-111. doi: 10.1080/08927014.2016.1259414. |
Ti machined; Ti sandblasted and acid etching; |
Integrin αV; Vitronectin; Beta-2-Glycoprotein 1; Complement System (C3; C4α; C6; C8β); CNNM2 metal conveyor; Junction Plakoglobin; Serum Paraoxonase/Arylesterase 1; Plasminogen; Coagulation Factor XII; Gelsolin; Alpha-2-Macroglobulin; Tetranectin; Pigment Epithelium-Derived Factor; Alpha-1-acid glycoprotein (1; 2) Apolipoproteins (ApoA1; ApoC1; ApoE); Proteoglycan 4; Peptidyl-prolyl Cis-Trans Isomerase β; Haptoglobin-Related Protein; Vitamin D Binding Protein; Cytoplasmic Actin 1; Lysozyme C; Hemoglobin β Subunit; Kininogen-1; Serotransferrin; Ceruloplasmin; Plectin; Antithrombin III; Vitamin K Dependent Protein; |
Martínez-Ibáñez et al., 2018 1010. Martínez-Ibáñez M, Murthy NS, Mao Y, Suay J, Gurruchaga M, Goñi I, t al. Enhancement of plasma protein adsorption and osteogenesis of hMSCs by functionalized siloxane coatings for titanium implants. J Biomed Mater Res B Appl Biomater. 2018 Apr;106(3):1138-47. doi: 10.1002/jbm.b.33889. |
Ti machined; |
Fibronectin; Fibrinogen; Albumin; Collagen type I; |
Prati et al., 2013 1111. Prati AJ, Casati MZ, Ribeiro FV, Cirano FR, Pastore GP, Pimentel SP, et al. Release of bone markers in immediately loaded and nonloaded dental implants: a randomized clinical trial. J Dent Res. 2013 Dec;92(12 Suppl):161S-7S. doi: 10.1177/0022034513504951. |
not specified |
Osteoprotegerin; Osteocalcin; Osteopontin; Parathyroid Hormone; Transforming Growth Factor α; |
Cei et al., 2015 1212. Cei S, Karapetsa D, Aleo E, Graziani F. Protein adsorption on a laser-modified titanium implant surface. Implant Dent. 2015 Apr;24(2):134-41. doi: 10.1097/ID.0000000000000214. |
not specified |
Integrin; Fibronectin; Vitronectin; Albumin; Collagen type I; |
Matsumoto et al., 2020 1313. Matsumoto T, Tashiro Y, Komasa S, Miyake A, Komasa Y, Okazaki J. Effects of Surface Modification on Adsorption Behavior of Cell and Protein on Titanium Surface by Using Quartz Crystal Microbalance System. Materials (Basel). 2020 Dec;14(1):97. doi: 10.3390/ma14010097. |
not specified |
Fibronectin; Albumin; |
Parisi et al., 2020 1414. Parisi L, Ghezzi B, Bianchi MG, Toffoli A, Rossi F, Bussolati O, et al. Titanium dental implants hydrophilicity promotes preferential serum fibronectin over albumin competitive adsorption modulating early cell response. Mater Sci Eng C Mater Biol Appl. 2020 Dec;117:111307. doi: 10.1016/j.msec.2020.111307. |
not specified |
Fibronectin; Albumin; |
Wu et al., 2020 1515. Wu L, Dong Y, Yao L, Liu C, Al-Bishari AM, Yie KHR, et al. Nanoporous tantalum coated zirconia implant improves osseointegration. Ceramics Int. 2020;46(11, Part A):17437-48. doi: 10.1016/j.ceramint.2020.04.038. |
Ti-ZiO2; Ti-ZiO2-Ta; Ti-ZiO2-Ta-NS; |
Albumin; Osteocalcin; Osterix; Osteoprotegerin; OSX; OPG; Receptor Activator of Nuclear Factor Kappa B Ligand; Receptor Activator of Nuclear Factor Kappa B; |
Parisi et al., 2019 1616. Parisi L, Toffoli A, Cutrera M, Bianchi MG, Lumetti S, Bussolati O, et al. Plasma Proteins at the Interface of Dental Implants Modulate Osteoblasts Focal Adhesions Expression and Cytoskeleton Organization. Nanomaterials (Basel). 2019 Oct;9(10):1407. doi: 10.3390/nano9101407. |
not specified |
Fibronectin; Vitronectin; Vinculin; |
Dayan et al., 2019 1717. Dayan A, Lamed R, Benayahu D, Fleminger G. RGD-modified dihydrolipoamide dehydrogenase as a molecular bridge for enhancing the adhesion of bone forming cells to titanium dioxide implant surfaces. J Biomed Mater Res A. 2019 Mar;107(3):545-51. doi: 10.1002/jbm.a.36570. |
not specified |
Integrin; |
Subramani et al., 2019 1818. Subramani K, Lavenus S, Rozé J, Louarn G, Layrolle P. Impact of nanotechnology on dental implants. In: Subramani K, Lavenus S, editors. Emerging nanotechnologies in dentistry. 2. ed. Elsevier; 2018. Chapter 5. p:83-97. doi: 10.1016/B978-0-12-812291-4.00005-4. |
not specified |
Integrin; Fibronectin; Vitronectin; Focal Adhesions; |
Boyan et al., 2017 1919. Boyan BD, Lotz EM, Schwartz Z. * Roughness and Hydrophilicity as Osteogenic Biomimetic Surface Properties. Tissue Eng Part A. 2017 Dec;23(23-24):1479-89. doi: 10.1089/ten.TEA.2017.0048. |
Ticp; Ti-6Al-4V; Ti-ZiO2; |
Integrin (α5β1; α2β1; α1β2; α1; α2; α5; αv; β1; β3); Fibronectin; Collagen type 1; Osteoprotegerin; Receptor Activator of Nuclear Factor Kappa B Ligand; Transforming Growth Factor β (1; 2; 4; 7); |
Cho et al., 2016 2020. Cho YD, Kim SJ, Bae HS, Yoon WJ, Kim KH, Ryoo HM, et al. Biomimetic Approach to Stimulate Osteogenesis on Titanium Implant Surfaces Using Fibronectin Derived Oligopeptide. Curr Pharm Des. 2016;22(30):4729-35. doi: 10.2174/1381612822666160203143053. |
not specified |
Integrin (α5β1); Fibronectin type III; |
Chen et al., 2014 2121. Chen C, Li H, Kong X, Zhang SM, Lee IS. Immobilizing osteogenic growth peptide with and without fibronectin on a titanium surface: effects of loading methods on mesenchymal stem cell differentiation. Int J Nanomedicine. 2014 Dec 31;10:283-95. doi: 10.2147/IJN.S74746. |
not specified |
Integrin; Fibronectin; Fibrinogen; Laminin; Bone Morphogenic Protein-2; Osteogenic Growth (OGP); |
Lee and Ogawa, 2012 2222. Lee JH, Ogawa T. The biological aging of titanium implants. Implant Dent. 2012 Oct;21(5):415-21. doi: 10.1097/ID.0b013e31826a51f4. |
not specified |
Fibronectin; Albumin |
Hori et al., 2010 2323. Hori N, Ueno T, Minamikawa H, Iwasa F, Yoshino F, Kimoto K, et al. Electrostatic control of protein adsorption on UV-photofunctionalized titanium. Acta Biomater. 2010 Oct;6(10):4175-80. doi: 10.1016/j.actbio.2010.05.006. |
not specified |
Integrin; Fibronectin; Albumin; |
Lavenus et al., 2010 2424. Lavenus S, Ricquier JC, Louarn G, Layrolle P. Cell interaction with nanopatterned surface of implants. Nanomedicine (Lond). 2010 Aug;5(6):937-47. doi: 10.2217/nnm.10.54. |
not specified |
Integrin; Fibronectin; Vitronectin; Albumin; Focal Adhesions; |
Hori et al., 2009 2525. Hori N, Att W, Ueno T, Sato N, Yamada M, Saruwatari L, et al. Age-dependent degradation of the protein adsorption capacity of titanium. J Dent Res. 2009 Jul;88(7):663-7. doi: 10.1177/0022034509339567. |
not specified |
Fibronectin; Collagen; Albumin; |
Rupp et al., 2018 2626. Rupp F, Liang L, Geis-Gerstorfer J, Scheideler L, Hüttig F. Surface characteristics of dental implants: A review. Dent Mater. 2018 Jan;34(1):40-57. doi: 10.1016/j.dental.2017.09.007. |
not specified |
Fibronectin; Vitronectin; |
Broggini et al., 2012 2727. Broggini N, Tosatti S, Ferguson SJ, Schuler M, Textor M, Bornstein MM, et al. Evaluation of chemically modified SLA implants (modSLA) biofunctionalized with integrin (RGD)- and heparin (KRSR)-binding peptides. J Biomed Mater Res A. 2012 Mar;100(3):703-11. doi: 10.1002/jbm.a.34004. |
not specified |
Integrin; Fibronectin; Vitronectin; Collagen; Laminin; Fibrin; Bone Sialoprotein; Osteopontin; Thrombospondin; |
Jaiswal el al., 2019 2828. Jaiswal S, Dubey A, Haldar S, Roy P, Lahiri D. Differential in vitro degradation and protein adhesion behaviour of spark plasma sintering fabricated magnesium-based temporary orthopaedic implant in serum and simulated body fluid. Biomed Mater. 2019 Dec;15(1):015006. doi: 10.1088/1748-605X/ab4f8b. |
not specified |
Albumin; Fibrinogen; Globulins; Bone Sialoprotein; Osteocalcin; Osteonectin; |
Kopf et al., 2015 2929. Kopf BS, Ruch S, Berner S, Spencer ND, Maniura-Weber K. The role of nanostructures and hydrophilicity in osseointegration: In-vitro protein-adsorption and blood-interaction studies. J Biomed Mater Res A. 2015 Aug;103(8):2661-72. doi: 10.1002/jbm.a.35401. |
Ticp; Ti-ZiO2; |
Fibronectin; Fibrinogen; |
Rapuano et al., 2012 3030. Rapuano BE, Lee JJ, MacDonald DE. Titanium alloy surface oxide modulates the conformation of adsorbed fibronectin to enhance its binding to α(5) β(1) integrins in osteoblasts. Eur J Oral Sci. 2012 Jun;120(3):185-94. doi: 10.1111/j.1600-0722.2012.954.x. |
Ticp; Ti-6Al-4V; |
Fibronectin; Bone Sialoprotein; Integrin α5β1; |
Petrie et al., 2009 3131. Petrie TA, Reyes CD, Burns KL, García AJ. Simple application of fibronectin-mimetic coating enhances osseointegration of titanium implants. J Cell Mol Med. 2009 Aug;13(8B):2602-12. doi: 10.1111/j.1582-4934.2008.00476.x. |
not specified |
Integrin (α5β1; αvβ3; α3β1; α8β1; α2β1); Fibronectin; Laminin; Collagen; Bone Sialoprotein; Osteopontin; |
Salvoni, 2006 3232. Salvoni AD. [Analysis of the expression of integrinas in cells OsA-CL cultivated on treat titanium implantations to the laser] [thesis]. São Paulo: School of Dentistry, University of São Paulo; 2006. [cited 2022 Jan 10 ] Available from: http://www.teses.usp.br/teses/disponiveis/23/23141/tde-08052006-114723. Portuguese. http://www.teses.usp.br/teses/disponivei...
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not specified |
Integrin; |
Wei et al., 2020 3333. Wei CX, Burrow MF, Botelho MG, Lam H, Leung WK. In vitro salivary protein adsorption profile on titanium and ceramic surfaces and the corresponding putative immunological implications. Int J Mol Sci. 2020 Apr;21(9):3083. doi: 10.3390/ijms21093083. |
Ti;ZiO2
|
Fibronectin; Vitronectin; Albumin; Laminin γ; Fibrinogen; Glycosaminoglycans; Collagenase; Apolipoprotein; Complement System Proteins; Phosphopeptides; Haptoglobin; Hemopexin; Salivary Cystatin; Histatin; Statherin; |