Osseointegration of Hafnium when Compared to Titanium - A Structured Review

[1] Fishero BA, Kohli N, Das A, Christophel JJ, Cui Q. Current concepts of bone tissue engineering for craniofacial bone defect repair. Craniomaxillofac Trauma Reconstr 2015; 8(01): 023-30.
[2] Chanchareonsook N, Junker R, Jongpaiboonkit L, Jansen JA. Tissue-engineered mandibular bone reconstruction for continuity defects: a systematic approach to the literature. Tissue Eng Part B Rev 2014; 20(2): 147-62.
[3] Juneja SC, Schwarz EM, O’Keefe RJ, Awad HA. Cellular and molecular factors in flexor tendon repair and adhesions: a histological and gene expression analysis. Connect Tissue Res 2013; 54(3): 218-26.
[4] Nakahara T, Nakamura T, Kobayashi E, et al. Novel approach to regeneration of periodontal tissues based on in situ tissue engineering: effects of controlled release of basic fibroblast growth factor from a sandwich membrane. Tissue Eng 2003; 9(1): 153-62.
[5] Benzel EC. Biomechanics of spine stabilization 2001; 437-40. [6] Smith DC. Surface characterization of implant materials, Biological implications. The bone-biomaterials interface 1991; 3-18. [7] Solar RJ. Corrosion resistance of titanium surgical implant alloys: a review. Corrosion and degradation of implant materials 1979 Oct ASTM International 1979; In: ASTM International.; [8] Greene ND. Corrosion of surgical implant alloys: A few basic ideas. Corrosion and degradation of implant materials second symposium 1985; In: ASTM International.; [9] Syrett BC, Wing SS. An electrochemical investigation of fretting corrosion of surgical implant materials. Corrosion 1978; 34(11): 378-86.
[10] Song XP, You L, Zhang B, Song A. Design of low elastic modulus Ti–Nb–Zr alloys for implant materials. Mater Technol 2012; 27(1): 55-7.
[11] Gabet Y, Kohavi D, Voide R, Mueller TL, Müller R, Bab I. Endosseous implant anchorage is critically dependent on mechanostructural determinants of peri-implant bone trabeculae. J Bone Miner Res 2010; 25(3): 575-83.
[12] Sakka S, Coulthard P. Bone quality: a reality for the process of osseointegration. Implant Dent 2009; 18(6): 480-5.
[13] Baumgarten HS. Why titanium in dental applications? 2018; 495-504. [14] Graft W, Rostoker W. The measurement of elastic modulus of titanium alloys. Symposium on Titanium 1957.
[15] Saini M, Singh Y, Arora P, Arora V, Jain K. Implant biomaterials: A comprehensive review. World J Clin Cases 2015; 3(1): 52-7.
[16] Wegrzyn J, Kaufman KR, Hanssen AD, Lewallen DG. Performance of porous tantalum vs. titanium cup in total hip arthroplasty: randomized trial with minimum 10-year follow-up. J Arthroplasty 2015; 30(6): 1008-13.
[17] Lu MM, Wu PS, Guo XJ, Yin LL, Cao HL, Zou D. Osteoinductive effects of tantalum and titanium on bone mesenchymal stromal cells and bone formation in ovariectomized rats. Eur Rev Med Pharmacol Sci 2018; 22(21): 7087-104.
[18] Bencharit S, Byrd WC, Altarawneh S, et al. Development and applications of porous tantalum trabecular metal-enhanced titanium dental implants. Clin Implant Dent Relat Res 2014; 16(6): 817-26.
[19] Zhou X, Hu X, Lin Y. Coating of sandblasted and acid-etched dental implants with tantalum using vacuum plasma spraying. Implant Dent 2018; 27(2): 202-8.
[20] Lambert JB. Tantalum and tantalum compounds. Kirk-Othmer Encyclopedia of Chemical Technology 2000 Dec 4; [21] Tripp TB, Eckert J. Tantalum and tantalum compounds. Kirk-Othmer Encyclopedia of Chemical Technology 2000 Dec 4; [22] Miyaza T, Kim HM, Kokubo T, Ohtsuki C, Kato H, Nakamura T. Mechanism of bonelike apatite formation on bioactive tantalum metal in a simulated body fluid. Biomaterials 2002; 23(3): 827-32.
[23] Gurappa I. Characterization of different materials for corrosion resistance under simulated body fluid conditions. Mater Charact 2002; 49(1): 73-9.
[24] Black J. Biological performance of tantalum. Clin Mater 1994; 16(3): 167-73.
[25] Takematsu E, Noguchi K, Kuroda K, Ikoma T, Niinomi M, Matsushita N. In vivo osteoconductivity of surface modified Ti-29Nb-13Ta-4.6Zr alloy with low dissolution of toxic trace elements. PLoS One 2018; 13(1): e0189967. [1].
[26] Matsuno H, Yokoyama A, Watari F, Uo M, Kawasaki T. Biocompatibility and osteogenesis of refractory metal implants, titanium, hafnium, niobium, tantalum and rhenium. Biomaterials 2001; 22(11): 1253-62.
[27] Dai K. Rational utilization of the stress shielding effect of implants. Biomech and Biomat in Ortho 2004; 208-15. [28] Paganias CG, Tsakotos GA, Koutsostathis SD, Macheras GA. Osseous integration in porous tantalum implants. Indian J Orthop 2012; 46(5): 505-13.
[29] de Arriba CC, Alobera Gracia MA, Coelho PG, et al. Osseoincorporation of porous tantalum trabecular-structured metal: a histologic and histomorphometric study in humans. Int J Periodontics Restorative Dent 2018; 38(6): 879-85.
[30] Lee JW, Wen HB, Gubbi P, Romanos GE. New bone formation and trabecular bone microarchitecture of highly porous tantalum compared to titanium implant threads: A pilot canine study. Clin Oral Implants Res 2018; 29(2): 164-74.
[31] Krishna BV, Bose S, Bandyopadhyay A. Fabrication and characterization of porous Ti6Al4V parts for biomedical applications using electron beam melting process. J Acta Biomater 2007; 3: 997-1006.
[32] Medlin DJ, Scrafton J, Shetty R. Metallurgical attachment of a porous tantalum foam to a titanium substrate for orthopedic applications. Titanium, Niobium, Zirconium, and Tantalum for Medical and Surgical Applications 2006 Jan ASTM International 2006. [33] Vetrivendan E, Jayaraj J, Ningshen S, Mallika C, Mudali UK. Argon shrouded plasma spraying of tantalum over titanium for corrosion protection in fluorinated nitric acid media. J of Therml Spray Technol 2018; 27(3): 512-23.
[34] Damhus T, Hartshorn RM, Hutton AT. Nomenclature of inorganic chemistry: IUPAC recommendations 2005. Chem Int 2005. [35] Coster D, Hevesy G. On celtium and hafnium. Nature 1923; 111(2788): 462-3.
[36] Mukherji AK. Analytical Chemistry of Zirconium and Hafnium: International Series of Monographs in Analytical Chemistry 2013 Oct 22; [37] Cheng KL. Determination of zirconium and hafnium with xylenol orange and methylthymol blue. Anal Chim Acta 1963; 28: 41-53.
[38] Predel B. Hf-Zr [Hafnium-Zirconium]. Ga-Gd–Hf-Zr 1996; 1-4. [39] Risovany VD, Prokhorov VI, Ostrovsky ZE, Pimenov VV, Zakharov AV, Muraleva EM. Structure and properties of hafnium after a 9-year operation in the RBT-6 research reactor. J Nucl Mater 2010; 402(2-3): 157-61.
[40] Ruane TF, Storm ML. Epithermal hafnium parameters for the calculation of control rod worth in thermal reactors. Nucl Sci Eng 1959; 6(2): 119-27.
[41] Liu X, Chen S, Tsoi JKH, Matinlinna JP. Binary titanium alloys as dental implant materials-a review. Regen Biomater 2017; 4(5): 315-23.
[42] Venugopalan S, Ariga P, Aggarwal P, Viswanath A. Magnetically retained silicone facial prosthesis. Niger J Clin Pract 2014; 17(2): 260-4.
[43] Ganapathy D, Sathyamoorthy A, Ranganathan H, Murthykumar K. Effect of resin bonded luting agents influencing marginal discrepancy in all ceramic complete veneer crowns. J Clin Diagn Res 2016; 10(12): ZC67-70.
[44] Duraisamy R, Krishnan CS, Ramasubramanian H, Sampathkumar J, Mariappan S, Navarasampatti Sivaprakasam A. Compatibility of nonoriginal abutments with implants: Evaluation of microgap at the implant-abutment interface, with original and nonoriginal abutments. Implant Dent 2019; 28(3): 289-95.
[45] Ozan S, Lin J, Li Y, Wen C. New Ti-Ta-Zr-Nb alloys with ultrahigh strength for potential orthopedic implant applications. J Mech Behav Biomed Mater 2017; 75: 119-27.
[46] Mohammadi S, Esposito M, Cucu M, Ericson LE, Thomsen P. Tissue response to hafnium. J Mater Sci Mater Med 2001; 12(7): 603-11.
[47] Yousef A, Akhtiamov I, Shakirova F, Zubairova L, Gatina E, Aliev E. Changes of blood composition in rabbits before and after osteosynthesis utilizing coated and non-coated metal implants. International Journal of Biomedical and Healthcare Science 2014; 4(1): 21-7. [48] Zhang D, Wong CS, Wen C, Li Y. Cellular responses of osteoblast-like cells to 17 elemental metals. J Biomed Mater Res A 2017; 105(1): 148-58.
[49] Huwais S, Meyer EG. A novel osseous densification approach in implant osteotomy preparation to increase biomechanical primary stability, bone mineral density, and bone-to-implant contact. Int J Oral Maxillofac Implants 2017; 32(1): 27-36. [1].
[50] Trisi P, Lazzara R, Rao W, Rebaudi A. Bone-implant contact and bone quality: evaluation of expected and actual bone contact on machined and osseotite implant surfaces. Int J Periodontics Restorative Dent 2002; 22(6): 535-45. [6].
[51] Lian ZQ, Guan H, Loo YC. Optimum degree of bone-implant contact in bone remodelling induced by dental implant. Procedia Eng 2011; 14: 2972-9.
[52] Yang F, Dong WJ, He FM, Wang XX, Zhao SF, Yang GL. Osteoblast response to porous titanium surfaces coated with zinc-substituted hydroxyapatite. Oral Surg Oral Med Oral Pathol Oral Radiol 2012; 113(3): 313-8.
[53] Martins A, Pinho ED, Faria S, et al. Surface modification of electrospun polycaprolactone nanofiber meshes by plasma treatment to enhance biological performance. Small 2009; 5(10): 1195-206.
[54] Selvan SR, Ganapathy D. Efficacy of fifth generation cephalosporins against methicillin-resistant Staphylococcus aureus-A review. Research Journal of Pharmacy and Technology 2016; 9(10): 1815-8.
[55] Subasree S, Murthykumar K. Effect of aloe vera in oral health-A review. Res J of Phar and Tech 2016; 9(5): 609-12.
[56] Vijayalakshmi B, Ganapathy D. Medical management of cellulitis. Res J of Phar and Tech 2016; 9(11): 2067-70.
[57] Jyothi S, Robin PK, Ganapathy D. Periodontal health status of three different groups wearing temporary partial denture. Res J of Phar and Tech 2017; 10(12): 4339-42.
[58] Kannan A. Effect of coated surfaces influencing screw loosening in implants: A systematic review and meta-analysis. WORLD 2017; 8(6): 496-502. [59] Cui H, Wang Y, Cui L, et al. In vitro studies on regulation of osteogenic activities by electrical stimulus on biodegradable electroactive polyelectrolyte multilayers. Biomacromolecules 2014; 15(8): 3146-57.
[60] Parfitt AM, Simon LS, Villanueva AR, Krane SM. Procollagen type I carboxy-terminal extension peptide in serum as a marker of collagen biosynthesis in bone. Correlation with Iliac bone formation rates and comparison with total alkaline phosphatase. J Bone Miner Res 1987; 2(5): 427-36.
[61] Lee A, Langford CR, Rodriguez-Lorenzo LM, Thissen H, Cameron NR. Bioceramic nanocomposite thiol-acrylate polyHIPE scaffolds for enhanced osteoblastic cell culture in 3D. Biomater Sci 2017; 5(10): 2035-47.
[62] Ashok V, Nallaswamy D, Benazir Begum S, Nesappan T. Lip bumper prosthesis for an acromegaly patient: a clinical report. J Indian Prosthodont Soc 2014; 14(1)(Suppl. 1): 279-82.
[63] Basha FY, Ganapathy D, Venugopalan S. Oral hygiene status among pregnant women. Res J of Phar and Tech 2018; 11(7): 3099-102.
[64] Ajay R, Suma K, Ali SA, et al. Effect of surface modifications on the retention of cement-retained implant crowns under fatigue loads: An in vitro study. J Pharm Bioallied Sci 2017; 9(Suppl. 1): S154-60.
[65] Ashok V, Suvitha S. Awareness of all ceramic restoration in rural population. Res J of Phar and Tech 2016; 9(10): 1691-3.
[66] Jain AR, Nallaswamy D, Ariga P, Ganapathy DM. Determination of correlation of width of maxillary anterior teeth using extraoral and intraoral factors in Indian population: A systematic review. World J Dent 2018; 9: 68-75.
[67] Rajaraman V, Dhanraj M, Jain AR. Dental implant biomaterials–Newer metals and their alloys. Drug Invention Today 2018; 10(6): 986-9.

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