Recent updates for biomaterials used in total hip arthroplasty

Chang Hu1, Tae Mi Yoon1
1Center for Joint Disease, Chonnam National University Hwasun Hospital, 160, Ilsim-ri, Hwasun-eup, Hwasun-gun, Jeonnam, 519-809, South Korea

Tóm tắt

Abstract Background Total hip arthroplasty (THA) is probably one of the most successful surgical interventions performed in medicine. Through the revolution of hip arthroplasty by principles of low friction arthroplasty was introduced by Sir John Charnley in 1960s. Thereafter, new bearing materials, fixation methods, and new designs has been improved. The main concern regarding failure of THA has been the biological response to particulate polyethylene debris generated by conventional metal on polyethylene bearing surfaces leading to osteolysis and aseptic loosening of the prosthesis. To resolve these problems, the materials of the modern THA were developed since then. Methods A literature search strategy was conducted using various search terms in PUBMED. The highest quality articles that met the inclusion criteria and best answered the topics of focus of this review were selected. Key search terms included ‘total hip arthroplasty’, ‘biomaterials’, ‘stainless steel’, ‘cobalt-chromium’, ‘titanium’, ‘polyethylene’, and ‘ceramic’. Results The initial search retrieved 6921 articles. Thirty-two articles were selected and used in the review. Conclusion This article introduces biomaterials used in THA and discusses various bearing materials in currentclinical use in THA as well as the newer biomaterials which may even further decrease wear and improve THA survivorship.

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Tài liệu tham khảo

National Joint Registry for England. Wales Northern Ireland and the Isle of Man. 13th AnnualReport. http://www.njrcentre.org.uk/njrcentre/Portals/0/Documents/England/Reports/13th%20Annual%20Report/07950%20NJR%20Annual%20Report%202016%20ONLINE%20REPORT.pdf. Accessed 2016.

10.2106/JBJS.N.01141

10.2106/00004623-200704000-00012

Health Insurance Review & Assessment Service Korea Healthcare Bigdata Hub. http://opendata.hira.or.kr/op/opc/olapDiagBhvInfo.do. Accessed 14 Sept 2018.

10.1016/j.actbio.2011.02.008

10.1007/s11661-012-1324-0

10.2320/matertrans.43.2970

10.1016/S1359-0286(00)00025-5

10.1016/j.actbio.2009.05.013

10.1002/jbm.b.31985

10.1016/j.biomaterials.2006.07.003

10.1016/0142-9612(92)90192-Q

10.1016/j.biomaterials.2004.02.029

10.1002/(SICI)1097-4636(199611)32:3<409::AID-JBM14>3.0.CO;2-B

10.1002/(SICI)1097-4636(199905)45:2<100::AID-JBM4>3.0.CO;2-0

10.1023/A:1008924102096

10.1016/j.actbio.2010.01.007

10.1098/rsif.2010.0129.focus

10.1016/j.arth.2005.07.009

10.1007/s00264-010-1161-y

10.1002/jbm.a.31134

10.1002/jbm.a.32280

10.2106/00004623-200300004-00009

10.4028/www.scientific.net/KEM.284-286.1019

10.1002/jbm.b.32965

10.1111/j.1744-7402.2005.02025.x

10.2106/00004623-200300004-00013

10.4028/www.scientific.net/KEM.192-195.545

10.1302/0301-620X.48B2.245

Triclot P. Metal-on-metal: history state of the art. Int Orthop. 2011;35(2):201-6.

10.1016/S0140–6736(07)60457–7

10.2106/00004623-200202000-00002

10.1016/j.otsr.2013.12.004

Howmedica I. Strength for Life : The Vitallium Alloy Story. Rutherord: Howmedica Inc.; 1995.

Bronzino JD. The Biomedical Engineering Handbook. 2nd ed: CRC Press; 1999.

Head WC, Bauk DJ, Emerson RH. Titanium as the material of choice for cementless femoral components in total hip arthroplasty. Clin Orthop Relat Res. 1995;311:85–90.

Branemark PI George AZ Tomas A. Tissue-integrated prostheses: osseointegration in clinical dentistry. Chicago: Quintessence; 1985. p. 1–76.

10.1007/s00402-006-0235-1

10.1016/j.actbio.2010.01.046

Matassi F, Botti A, Sirleo L, Carulli C, Innocenti M. Porous metal for orthopedics implants. Clin Cases Miner Bone Metab. 2013;10(2):111–115.

10.1016/S0140-6736(61)92063-3

10.2106/00004623-200303000-00010

10.2106/00004623-200012000-00004

10.1016/S0883-5403(97)90021-8

10.2106/00004623-200201000-00009

Harris WH. The problem is osteolysis. Clin Orthop Relat Res. 1995;311:46–53.

10.1016/j.arth.2011.03.022

10.1097/01.blo.0000150314.70919.e3

10.1016/j.arth.2005.03.033

10.1016/S0883-5403(03)00341-3

10.1097/01.blo.0000073343.50837.03

10.1016/S0142-9612(99)00039-3

10.1002/(SICI)1097-4636(20000605)50:3<381::AID-JBM12>3.0.CO;2-P

10.1016/j.arth.2003.08.003

10.1097/01.blo.0000238856.61862.7d

10.1038/pj.2015.45

10.1097/01.blo.0000149996.91974.83

10.1243/0954411001535381

10.1302/0301-620X.94B6.28801

Kurtz SM. UHMWPE Biomaterials Handbook. 2nd ed. Boston, mass: Academic Press; 2009.

10.1016/j.arth.2004.02.045

10.1016/S0142-9612(01)00206-X

10.1302/0301-620X.81B5.9454

10.1016/j.arth.2004.02.045

10.1016/j.arth.2004.06.017

10.1016/j.biomaterials.2005.07.034

10.1016/j.actbio.2012.04.031

10.1016/j.jeurceramsoc.2015.07.034

10.1007/PL00010875

10.1016/j.arth.2008.01.300

10.3390/lubricants4040035

10.1308/003588413X13629960047876

10.1007/s00590-006-0180-2

10.1016/j.arth.2006.07.005

Lewis PM Moore CA Olsen M Schemitsch E Waddell JP. Comparison of mid-term clinical outcomes following primarytotal hip arthroplasty with Oxinium versus cobalt chromefemoral heads. Orthopedics. 2008;31(12Supppl2).

10.1186/ar2170

10.1016/j.msec.2005.01.026

Pappas MJ, Makris G, Buechel FF. Titanium nitride ceramic film against polyethylene: A 48-million cycle wear test. Clin Orthop Relat Res. 1995;317:64–70.

10.1016/j.actbio.2012.04.016

10.1063/1.370787

10.1007/s10856-010-4207-1

10.1023/B:JMSM.0000032817.05997.d2

10.1063/1.2339042

10.1016/j.mjafi.2014.04.015

10.1007/BF02474667

10.1016/j.arth.2017.06.047

Vendittoli PA, Riviere C, Lavigne M, Lavoie P, Alghamdi A, Duval N. Aluminaon alumina versus metal on conventional polyethylene: a randomizedclinical trial with 9 to 15 years follow-up. Acta Orthop Belg. 2013;79:181–190.

10.1016/S0142-9612(98)00140-9

10.1054/arth.2002.33664

10.1007/s11999-011-2076-7

10.1007/s10195-008-0038-y

10.1016/j.arth.2005.07.009

10.1007/s11999-012-2604-0

McKellop HA, Campbell P, Park SH, Schmalzried TP, Grigoris P, Amstutz HC, Sarmiento A. The origin of submicron polyethylene wear debris in total hip arthroplasty. Clin Orthop Relat Res. 1995;311:3–20.

McMinn D, Daniel J. History and modern concepts in surface replacement. Proc lnst Mech EngH. 2006;220:239–251. 1:STN:280:DC%2BD283ksFKktw%3D%3D

10.1302/0301-620X.86B2.14600

Mauricio S Christian H Thomas P. Metal-on-Metal Total Hip Replacement. Clin Orthop Relate Res. 2005;430:53–61.

10.1016/j.arth.2018.02.089

10.1007/s11999-007-0093-3

National Joint Registry for England. Wales Northern Ireland and the Isle of Man. 5th Annual Report. http://www.njrcentre.org.uk/njrcentre/Portals/0/Documents/England/Reports/5th%20Annual.pdf. Accessed 2008.

Australian Orthopaedic Association National Joint Replacement Registry Annual Report. https://aoanjrr.sahmri.com/documents/10180/42662/Annual%20Report%202008?version=1.1&t=1349406277970. Asscessed 2008.

10.2106/JBJS.A.02039pp

Jacobs JJ, Hallab NJ. Loosening and osteolysis associated with metal-on-metalbearings: a local effect of metal hypersensitivity? J Bone Joint Surg Am. 2006;88:1171–1172.

10.1302/0301-620X.79B2.7326

10.2106/00004623-200004000-00002

10.1302/0301-620X.83B8.12755

10.1136/bmj.e2383

10.2106/JBJS.D.02916

10.2106/JBJS.E.00604

10.2106/JBJS.D.02641

Administration FAD. List of Device Recalls. … fda. gov/medicaldevices/safety/ListofRecalls/default …; 2014; https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfRES/res.cfm?start_search=1&event_id=&productdescriptiontxt=hip%20arthroplasty&productcode=&IVDProducts=&rootCauseText=&recallstatus=%A2erclassificationtypetext=&recallnumber=&postdatefrom=&postdateto=&productshortreasontxt=&knumber=&PAGENUM=500. Accessed 06 Feb 2018.

Boutin P. Total arthroplasty of the hip by fritted aluminum prosthesis. Experimental study and 1st clinical applications. Rev Chir Orthop Reparatrice Appar Mot. 1972;58:229–246. 1:STN:280:DyaE3s7itF2ntA%3D%3D

10.1053/j.sart.2011.10.003

10.1016/B978-0-12-374721-1.00006-7

Williams S, Schepers A, Isaac G, Hardaker C, Ingham E, van der Jagt D, Breckon A, Fisher J. The 2007 Otto Aufranc award. Ceramic-on-metalhip arthroplasties: a comparative in vitro and in vivo study. Clin Orthop Relat Res. 2007;465:23–32.

10.1016/j.arth.2015.05.017

10.1016/j.arth.2009.01.013

10.1002/(SICI)1097-4636(19990615)45:4<363::AID-JBM11>3.0.CO;2-3

10.1007/s11999-009-0773-2

10.5301/hipint.5000223

10.2106/JBJS.H.00627

Yang CC, Kim RH, Dennis DA. The squeaking hip: a cause for concern-disagrees. Orthopedics. 2007;30:739.

Ranawat AS, Ranawat CS. The squeaking hip: a cause for concern-agrees. Orthopedics. 2007;30:738.

10.2106/JBJS.F.01466

10.1007/s11999-009-1091-4

10.1016/j.arth.2011.10.001

10.1243/0954411971534647

10.1016/S0883-5403(05)80087-7

10.1016/j.arth.2014.05.017

Rieger W. Ceramics in orthopaedics - 30 years of evolution and experience. In: Reiker CB, Oberholzer S, Wyss U, editors. World tribology forum in arthroplasty. Berne: Hans Huber Verlag; 2001.

Heisel C, Silva M, Schmalzried TP. Bearing surface options fortotal hip replacement in young patients. Instr Course Lect. 2004;53:49–65.

10.1016/j.arth.2003.12.065

10.1002/(SICI)1097-4636(1999)48:3<365::AID-JBM22>3.0.CO;2-T

Collier JP, Bargmann LS, Currier BH, Mayor MB, Currier JH, Bargmann BC. An analysis of hylamer and polyethylene bearings from retrieved acetabular components. Orthopedics. 1998;21(8):865–871. 1:STN:280:DyaK1cvgtVeqtg%3D%3D

10.1002/jbm.a.32036

10.1016/j.biomaterials.2007.07.040

10.1097/00003086-199711000-00022

Devane PA, Bourne RB, Rorabeck CH, MacDonald S, Robinson EJ. Measurement of polyethylene wear in metal-backed acetabular cups. II Clinical application. Clin Orthop Relat Res. 1995;319:317–326.

10.2106/JBJS.F.01466