Acrylic bone cement: current concept review

MUSCULOSKELETAL SURGERY - Tập 97 Số 2 - Trang 93-100 - 2013
Bruno Magnan1, Manuel Bondi2, Tommaso Maluta3, Elena Manuela Samaila3, L. Schirru3, Carlo Dall’Oca3
1Orthopaedic Department, Surgical Center, P. Confortini, University of Verona, Piazzale A. Stefani 1, 37126, Verona, Italy.
2Department of Orthopaedics and Traumatology, Carlo Poma Hospital, Mantua, Italy
3Orthopaedic Department, Surgical Center “P. Confortini”, University of Verona, Verona, Italy

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Röhm O (1901) On the Polymerization Products of Acrylic Acid. Dissertation, Tübingen, Germany, University of Tübingen

Kuehn KD, Ege W, Gopp U (2005) Acrylic bone cements: composition and properties. Orthop Clin North Am 36:17–28

Judet J, Judet R (1950) The use of an artificial femoral head for arthroplasty of the hip joint. J Bone Joint Surg Br 32-B(2):166–173

Kiaer S (1951) Experimental investigation of the tissue reaction to acrylic plastiques. 5th international congress of orthopaedic surgery, Stockolm

Haboush EJ (1953) A new operation for arthroplasty of the hip based on biomechanics, photoelasticity, fast-setting dental acrylic, and other considerations. Bull Hosp Joint Dis 14:242–277

Segura J, Albareda J, Bueno AL, Nuez A, Palanca D, Seral F (1997) The treatment of giant cell tumors by curettage and filling with acrylic cement. Long-term functional results. Chir Organi Mov 82(4):373–380

Baldini N, Toni A, Sudanese A, Greggi T, Boriani S (1987) Use of acrylic cement after curettage in the treatment of giant cell tumors. Chir Organi Mov 72(1):1–6

Charnley J (1964) The bonding of prostheses to bone by cement. J Bone Joint Surg Br 46:518–529

Lewis G (2008) Alternative acrylic bone cement formulations for cemented arthroplasties: present status, key issues, and future prospects. J Biomed Mater Res B Appl Biomater 84:301–319

Webb JC, Spencer RF (2007) The role of polymethylmethacrylate bone cement in modern orthopaedic surgery. J Bone Joint Surg Br 89:851–857

Goodman S (2005) Wear particulate and osteolysis. Orthop Clin North Am 36:41–48, vi

Crowninshield R (2001) Femoral hip implant fixation within bone cement. Op Tech Orthop 11:296–299

Swedish Hip Arthroplasty. Register http://www.shpr.se/en/default.aspx

The Norwegian Arthroplasty. Register http://nrlweb.ihelse.net/eng/default.htm

Verdonschot N, Huiskes R (1998) Surface roughness of debonded straight-tapered stems in cemented THA reduces subsidence but not cement damage. Biomaterials 19:1773–1779

Weightman B, Freeman MA, Revell PA et al (1982) The mechanical properties of cement and loosening of the femoral component of hip replacements. J Bone Joint Surg Br 69-B:558–564

Shah N, Porter M (2005) Evolution of cemented stems. Orthopedics 28(8 Suppl):s819–s825

Fottner A, Utzschneider S, Mazoochian F et al (2010) Cementing techniques in hip arthroplasty: an overview. [Article in German]. Z Orthop Unfall 148(2):168–173

Geiger MH, Keating EM, Ritter MA et al (2001) The clinical significance of vacuum mixing bone cement. Clin Orthop Relat Res 382:258–266

Hirose S, Otsuka H et al (2012) Outcomes of Charnely total hip arthroplasty using improved cementing with so-called second and third-generation techniques. Orthopaedic Surgery, Aichi Medical University. J Orthop Sci 17:118–123

Mulroy W, Estok D, Harris W (1995) Total hip arthroplasty with use of so-called second-generation cementing techniques. J Bone Joint Surg Am 77:1845–1852

Galibert P, Deramond H, Rosat P, Le Gars D (1981) Preliminary note on the treatment of vertebral angioma by percutaneous acrylic vertebroplasty. Neurochirurgie 33:166–168 (in French)

Piazzolla A, De Giorgi G, Solarino G (2011) Vertebral body recollapse without trauma after kyphoplasty with calcium phosphate cement. Musculoskelet Surg 95(2):141–145. doi: 10.1007/s12306-011-0130-y Epub 2011 Apr 6

Truumees E, Hilibrand A, Vaccaro AR (2004) Percutaneous vertebral augmentation. Spine J 4:218–229

Gheduzzi S, Webb JJ, Miles AW (2006) Mechanical characterisation of three percutaneous vertebroplasty biomaterials. J Mater Sci Mater Med 17(421–26):27

Nussbaum DA, Gailloud P, Murphy K (2004) The chemistry of acrylic bone cements and implications for clinical use in image-guided therapy. J Vasc Interv Radiol 15:121–126

Mathis JM, Wong W (2003) Percutaneous vertebroplasty: technical considerations. J Vasc Interv Radiol 14:953–960

Taylor RS, Taylor RJ, Fritzell P (2006) Balloon kyphoplasty and vertebroplasty for vertebral compression fractures: a comparative systematic review of efficacy and safety. Spine (Phila Pa 1976) 31(23):2747–2755

De Bastiani G, Gabbi C, Magnan B et al (1990) Studio sperimentale dell’interfaccia cemento-osso: effetto del calore di polimerizzazione. Biomateriali 4(3/4):85–93

Ciapetti G, Stea S, Granchi D, Cavedagna D, Gamberini S, Pizzoferrato A (1995) The effects of orthopaedic cements on osteoblastic cells cultured in vitro. Chir Organi Mov 80(4):409–415

Joseph TN, Chen AL, Di Cesare PE (2003) Use of antibiotic-impregnated cement in total joint arthroplasty. J Am Acad Orthop Surg 11(1):38–47

Andollina A, Bertoni G, Zolezzi C, Trentani F, Trentani P, Maria Borrelli A, Tigani D (2008) Vancomycin and meropenem in acrylic cement: elution kinetics of in vitro bactericidal action. Chir Organi Mov 91(3):153–158. doi: 10.1007/s12306-007-0025-0

Gualdrini G, Bassi A, Fravisini M, Giunti A (2005) Bone with cement and antibiotic: antibiotic release in vitro. Chir Organi Mov 90(1):23–29

Chohfi M, Langlais F, Fourastier J et al (1998) Pharmacokinetics, uses, and limitations of vancomycin-loaded bone cement. Int Orthop 22(3):171–177

Klemm K (2001) The use of antibiotic-containing bead chains in the treatment of chronic bone infections. Clin Microbiol Infect 7(1):28–31

Masri BA, Duncan CP, Beauchamp CP (1998) Long-term elution of antibiotics from bone-cement: an in vivo study using the prosthesis of antibiotic-loaded acrylic cement (PROSTALAC) system. J Arthroplasty 13(3):331–338

Allende C, Mangupli M, Bagliardelli J, Diaz P, Allende BT (2009) Infected nonunions of long bones of the upper extremity: staged reconstruction using polymethylmethacrylate and bone graft impregnated with antibiotics. Chir Organi Mov 93(3):137–142. doi: 10.1007/s12306-009-0046-y Epub 2009 Oct 30

Fontanesi G, Giancecchi F, Ruini D, Rotini R (1982) Use of acrylic cement with an antibiotic in prosthetic surgery of the hip. Chir Organi Mov 68(3):287–295

Bertazzoni Minelli E, Benini A, Magnan B et al (2004) Release of gentamicin and vancomycin from temporary human hip spacers in two-stage revision of infected arthroplasty. J Antimicrob Chemother 53(2):329–334

D’Angelo F, Negri L, Binda T, Zatti G, Cherubino P (2011) The use of a preformed spacer in two-stage revision of infected hip arthroplasties. Musculoskelet Surg 95(2):115–120. doi: 10.1007/s12306-011-0128-5 Epub 2011 Apr 9

Tsukayama DT, Estrada R, Gustilo RB (1996) Infection after total hip arthroplasty. A study of the treatment of one hundred and six infections. J Bone Joint Surg Am 78(4):512–523

Callaghan JJ, Katz RP, Johnston RC (1999) One-stage revision surgery of the infected hip. A minimum 10-year followup study. Clin Orthop Relat Res 369:139–143

Ivarsson I, Wahlström O et al (1994) Revision of infected hip replacement. Two-stage procedure with a temporary gentamicin spacer. Acta Orthop Scand 65(1):7–8

Mutimer J, Gillespie G et al (2009) Measurements of in vivo intra-articular gentamicin levels from antibiotic loaded articulating spacers in revision total knee replacement. Knee 16(1):39–41 Epub 2008 Sep 10

Villa T, Carnelli D (2007) Experimental evaluation of the biomechanical performances of a PMMA-based knee spacer. Knee 14(2):145–153

Romanò CL, Romanò D, Albisetti A et al (2012) Preformed antibiotic-loaded cement spacers for two-stage revision of infected total hip arthroplasty. Long-term results. Hip Int 6:0. doi: 10.5301/HIP.2012.9570

Degen RM, Davey JR, Davey JR, et al (2012) Does a prefabricated gentamicin-impregnated, load-bearing spacer control periprosthetic hip infection? Clin Orthop Relat Res 470(10):2724–2729

Pitto RP, Castelli CC et al (2005) Pre-formed articulating knee spacer in two-stage revision for the infected TKA. Int Orthop 29(5):305–308

Wan Z, Karim A et al (2012) Preformed articulating knee spacers in 2-stage total knee revision arthroplasty. Minimum 2-year follow-up. J Arthroplast 27(8):1469–1473

Magnan B, Bondi M, Vecchini E, Samaila E, Maluta T, Dall’Oca C (2013) A preformed antibiotic loader spacer for treatment for septic arthritis of the shoulder. Muscoloskeletal Surg 14(5) [Epub ahead of print]

Harrington KD (1975) The use of methylmethacrylate as an adjunct in the internal fixation of unstable comminuted intertrochanteric fractures in osteoporotic patients. J Bone Joint Surg Am 57(6):744–750

Kammerlander C, Gebhard F, Meier C, et al (2011) Standardised cement augmentation of the PFNA using a perforated blade: A new technique and preliminary clinical results. A prospective multicentre trial. Injury 42(11):1584–1490.83

Dall’Oca C, Maluta T et al (2010) Cement augmentation of intertrochanteric fractures stabilised with intramedullary nailing. Injury 41(11):1150–1155

Heini PF, Franz T, Fankhauser C et al (2004) Femoroplasty-augmentation of mechanical properties in the osteoporotic proximal femur: a biomechanical investigation of PMMA reinforcement in cadaver bones. Clin Biomech (Bristol, Avon) 19:506–512

Linder P, Gisep A, Boner V et al (2006) Biomechanical evaluation of a new Augmentation method for enhanced screw fixation in osteoporotic proximal femoral fractures. J Orthop Res 24:2230–2237

Dall’Oca C, Maluta T, Lavini F, Micheloni GM, Bondi M, Magnan B (2012) Augmentation nelle fratture per trocanteriche instabili nel grande anziano osteoporotico: Tecnica operatoria per sistemi a 1 o 2 viti cervico-cefaliche. Acta Biomed; 83;Quaderno 1:39–45

Nussbaum DA, Gailloud P, Murphy K (2004) A review of complications associated with vertebroplasty and kyphoplasty as reported to the Food and Drug Administration medical device related web site. J Vasc Interv Radiol 15:1185–1192

Vasconcelos C, Gailloud P, Martin JB, Murphy KJ (2001) Transient arterial hypotension induced by polymethylmethacrylate injection during percutaneous vertebroplasty. J Vasc Interv Radiol 12:1001–1002

Krebs J, Ferguson SJ, Hoerstrup SP, Goss BG, Haeberli A, Aebli N (2008) Influence of bone marrow fat embolism on coagulation activation in an ovine model of vertebroplasty. J Bone Joint Surg Am 90:349–356

Krebs J, Aebli N, Goss BG et al (2007) Cardiovascular changes after pulmonary embolism from injecting calcium phosphate cement. J Biomed Mater ResB Appl Biomater 82:526–532

Leitman D, Yu V, Cox C (2011) Investigation of polymethylmethacrylate pulmonary embolus in a patient 10 years following vertebroplasty. Radiol Case 5(10):14–21. doi: 10.3941/jrcr.v5i10.815

Syed MI, Jan S, Patel NA, Shaikh A, Marsh RA, Stewart RV (2006) Fatal fat embolism after vertebroplasty: identification of the high-risk patient. AJNR Am J Neuroradiol 27:343–345

Hyun-Tae K, Yoon-Nyun K, Hong-Won S, In-Cheol K, Hyungseop K, Nam-Hee P, Sae-Young C (2013) Intracardiac foreign body caused by cement leakage as a late complication of percutaneous vertebroplasty. Korean J Intern Med 28:247–250

Benneker LM, Heini PF, Suhm N, Gisep A (2008) The effect of pulsed jet lavage in vertebroplasty on injection forces of polymethylmethacrylate bone cement, material distribution, and potential fat embolism: a cadaver study. Spine 33:E906–E910

Benneker LM, Krebs J, Boner V, Boger A, Hoerstrup S, Heini PF, Gisep A (2010) Cardiovascular changes after PMMA vertebroplasty in sheep: the effect of bone marrow removal using pulsed jet-lavage. Eur Spine J 19:1913–1920. doi: 10.1007/s00586-010-1555-y

Magnan B, Gabbi C, Regis D, et al (1993) La sintesi endomidollare di fratture con polimetilmetacrilato di metile: studio sperimentale del processo riparativo. Biomateriali ½ 21–28

Magnan B, Gabbi C, Pagliara T et al (1996) Un nuovo cemento acrilico composito addizionato con fibre di biovetro: studio sperimentale degli effetti biologici in colture cellulari. Biomateriali 1(2):35–42

Larsen MJ, Thorsen A (1984) A comparison of some effects of fluoride on apatite formation in vitro and in vivo. Calcif Tissue Int 36(6):690–696

Rich C, Ensinck J (1961) Effect of sodium fluoride on calcium metabolism of human beings. Nature 191:184

Baud CA, Very JM, Courvoisier B (1988) Biophysical study of bone mineral in biopsies of osteoporotic patients before and after long-term treatment with fluoride. Bone 9(16):361–365

Digas G, Kärrholm J, Thanner J (2006) Different loss of BMD using uncemented press-fit and whole polyethylene cups fixed with cement: repeated DXA studies in 96 hips randomized to 3 types of fixation. Acta Orthop 77(2):218–226

Magnan B, Gabbi C, Regis D (1994) Sodium fluoride sustained-release bone cement: an experimental study in vitro and in vivo. Acta Orthop Belg 60(1):72–80

Lewis G (1997) Properties of acrylic bone cement: state of the art review. J Biomed Mater Res 38:155

Hockin HK, Elena FB, Lisa EC (2007) Strong, macroporous and in situ-setting calcium phosphate cement-layered structures. Biomaterials 28:3786–3796

Debrunner HU (1976) Untersuchungen zur Porositaet von Knochenzementen. Arch Orthop Unfall Chir 86:261–268