Skip to main content
Top
Published in: European Spine Journal 8/2006

01-08-2006 | Origianl Article

Clinical, radiological and histological study of the failure of cervical interbody fusions with bone substitutes

Authors: Youzhuan Xie, Daniel Chopin, Pierre Hardouin, Jianxi Lu

Published in: European Spine Journal | Issue 8/2006

Login to get access

Abstract

Few histological studies on bone substitutes in human cervical spine are available and the biological processes of bone substitutes are not well documented. The authors studied four failure cases of cervical interbody fusion: two cases with hydroxyapatite (HA), one case with β-tricalcium phosphate ceramic (β-TCP) and one case with xenograft (bovine bone). Clinical data showed that all the patients experienced neck pain with or without numbness of upper extremity due to fusion failure. Successful fusions were achieved after the salvage surgeries in which autograft were used. Radiographs showed that radiolucent lines were present in all cases. Two HA substitutes fractured without complications. One of them sank into the vertebral body. Some small β-TCP fragments were found under the microscope. Histological study demonstrated only a few newly formed bones at the interface of the substitutes. The fragments of HA were encapsulated by fibrous tissue. The degradation process and bone regeneration were more active in β-TCP than in HA. The intertrabecular spaces of bovine bone were filled with fibrous tissue. The results suggest that a porous calcium phosphate ceramic with special design might assure bone ingrowth and meet the mechanical requirements in cervical interbody fusion. The complications of these materials in the cervical spine should be highlighted.
Literature
1.
go back to reference Banwart JC, Asher MA, Hassanein RS (1995) Iliac crest bone graft harvest donor site morbidity. A statistical evaluation. Spine 20:1055–1060PubMedCrossRef Banwart JC, Asher MA, Hassanein RS (1995) Iliac crest bone graft harvest donor site morbidity. A statistical evaluation. Spine 20:1055–1060PubMedCrossRef
2.
go back to reference Bruneau M, Nisolle JF, Gilliard C, Gustin T (2001) Anterior cervical interbody fusion with hydroxyapatite graft and plate system. Neurosurg Focus (electronic resource) 10:Article 8 Bruneau M, Nisolle JF, Gilliard C, Gustin T (2001) Anterior cervical interbody fusion with hydroxyapatite graft and plate system. Neurosurg Focus (electronic resource) 10:Article 8
3.
go back to reference Cloward RB (1958) The anterior approach for removal of ruptured cervical disks. J Neurosurg 15:602–617PubMed Cloward RB (1958) The anterior approach for removal of ruptured cervical disks. J Neurosurg 15:602–617PubMed
4.
go back to reference Cook SD, Dalton JE, Tan EH, Tejeiro WV, Young MJ, Whitecloud TS III (1994) In vivo evaluation of anterior cervical fusions with hydroxyapatite graft material. Spine 19:1856–1866PubMedCrossRef Cook SD, Dalton JE, Tan EH, Tejeiro WV, Young MJ, Whitecloud TS III (1994) In vivo evaluation of anterior cervical fusions with hydroxyapatite graft material. Spine 19:1856–1866PubMedCrossRef
5.
go back to reference Daculsi G, LeGeros RZ, Heughebaert M, Barbieux I (1990) Formation of carbonate-apatite crystals after implantation of calcium phosphate ceramics. Calcif Tissue Int 46:20–27PubMedCrossRef Daculsi G, LeGeros RZ, Heughebaert M, Barbieux I (1990) Formation of carbonate-apatite crystals after implantation of calcium phosphate ceramics. Calcif Tissue Int 46:20–27PubMedCrossRef
6.
go back to reference Daculsi G, Passuti N, Martin S, Deudon C, Legeros RZ, Raher S (1990) Macroporous calcium phosphate ceramic for long bone surgery in humans and dogs. Clinical and histological study. J Biomed Mater Res 24:379–396PubMedCrossRef Daculsi G, Passuti N, Martin S, Deudon C, Legeros RZ, Raher S (1990) Macroporous calcium phosphate ceramic for long bone surgery in humans and dogs. Clinical and histological study. J Biomed Mater Res 24:379–396PubMedCrossRef
7.
go back to reference Flautre B, Descamps M, Delecourt C, Blary MC (2001) Porous HA ceramic for bone replacement: role of the pores and interconnections—experimental study in the rabbit. J Biomed Mater Res 12:679–682 Flautre B, Descamps M, Delecourt C, Blary MC (2001) Porous HA ceramic for bone replacement: role of the pores and interconnections—experimental study in the rabbit. J Biomed Mater Res 12:679–682
8.
go back to reference GESTO (Association pour l’étude des Greffes Et Substituts Tissulaires en Orthopédie) (1999) Les substituts osseux en 1999, pp 7–8, 13–14, 36–40 GESTO (Association pour l’étude des Greffes Et Substituts Tissulaires en Orthopédie) (1999) Les substituts osseux en 1999, pp 7–8, 13–14, 36–40
9.
go back to reference Ito M, Abumi K, Shono Y, Kotani Y, Minami A, Kaneda K (2002) Complications related to hydroxyapatite vertebral spacer in anterior cervical spine surgery. Spine 27:428–431PubMedCrossRef Ito M, Abumi K, Shono Y, Kotani Y, Minami A, Kaneda K (2002) Complications related to hydroxyapatite vertebral spacer in anterior cervical spine surgery. Spine 27:428–431PubMedCrossRef
10.
go back to reference Jarcho M (1981) Calcium phosphate ceramics as hard tissue prosthetics. Clin Orthop 157:259–278PubMed Jarcho M (1981) Calcium phosphate ceramics as hard tissue prosthetics. Clin Orthop 157:259–278PubMed
11.
go back to reference Kim P, Wakai S, Matsuo S, Moriyama T, Kirino T (1998) Bisegmental cervical interbody fusion using hydroxyapatite implants: surgical results and long-term observation in 70 cases. J Neurosurg 88:21–27PubMedCrossRef Kim P, Wakai S, Matsuo S, Moriyama T, Kirino T (1998) Bisegmental cervical interbody fusion using hydroxyapatite implants: surgical results and long-term observation in 70 cases. J Neurosurg 88:21–27PubMedCrossRef
12.
go back to reference Kuhne JH, Bartl R, Frisch B, Hammer C, Jansson V, Zimmer M (1994) Bone formation in coralline hydroxyapatite. Effects of pore size studied in rabbits. Acta Orthop Scand 65:246–252PubMedCrossRef Kuhne JH, Bartl R, Frisch B, Hammer C, Jansson V, Zimmer M (1994) Bone formation in coralline hydroxyapatite. Effects of pore size studied in rabbits. Acta Orthop Scand 65:246–252PubMedCrossRef
13.
go back to reference Lu JX, Gallur A, Flautre B, Anselme K, Descamps M, Thierry B, Hardouin P (1998) Comparative study of tissue reactions to calcium phosphate ceramics among cancellous, cortical, and medullar bone sites in rabbits. J Biomed Mater Res 42:357–367PubMedCrossRef Lu JX, Gallur A, Flautre B, Anselme K, Descamps M, Thierry B, Hardouin P (1998) Comparative study of tissue reactions to calcium phosphate ceramics among cancellous, cortical, and medullar bone sites in rabbits. J Biomed Mater Res 42:357–367PubMedCrossRef
14.
go back to reference Lu JX, Flautre B, Anselme K, Hardouin P, Gallur A, Descamps M, Thierry B (1999) Role of interconnections in porous Bioceramics on bone recolonization in vitro and in vivo. J Mater Sci Mater Med 10:111–120PubMedCrossRef Lu JX, Flautre B, Anselme K, Hardouin P, Gallur A, Descamps M, Thierry B (1999) Role of interconnections in porous Bioceramics on bone recolonization in vitro and in vivo. J Mater Sci Mater Med 10:111–120PubMedCrossRef
15.
go back to reference McMurray GN (1982) The evaluation of Kiel bone in spinal fusions. J Bone Joint Surg Br 64:101–104PubMed McMurray GN (1982) The evaluation of Kiel bone in spinal fusions. J Bone Joint Surg Br 64:101–104PubMed
16.
go back to reference Neo M, Kotani S, Nakamura T, Yamamuro T, Ohtsuki C, Kokubo T, Bando Y (1992) A comparative study of ultrastructures of the interfaces between four kinds of surface-active ceramic and bone. J Biomed Mater Res 26:1419–1432PubMedCrossRef Neo M, Kotani S, Nakamura T, Yamamuro T, Ohtsuki C, Kokubo T, Bando Y (1992) A comparative study of ultrastructures of the interfaces between four kinds of surface-active ceramic and bone. J Biomed Mater Res 26:1419–1432PubMedCrossRef
17.
go back to reference Pintar FA, Maiman DJ, Hollowell JP, Yoganandan N, Droese KW, Reinartz JM, Cuddy B (1994) Fusion rate and biomechanical stiffness of hydroxyapatite versus autogenous bone grafts for anterior discectomy. An in vivo animal study. Spine 19:2524–2528PubMedCrossRef Pintar FA, Maiman DJ, Hollowell JP, Yoganandan N, Droese KW, Reinartz JM, Cuddy B (1994) Fusion rate and biomechanical stiffness of hydroxyapatite versus autogenous bone grafts for anterior discectomy. An in vivo animal study. Spine 19:2524–2528PubMedCrossRef
18.
go back to reference Ramani PS, Kalbag RM, Sengupta RP (1975) Cervical spinal interbody fusion with Kiel bone. Br J Surg 62:147–150PubMedCrossRef Ramani PS, Kalbag RM, Sengupta RP (1975) Cervical spinal interbody fusion with Kiel bone. Br J Surg 62:147–150PubMedCrossRef
19.
go back to reference Senter HJ, Kortyna R, Kemp WR (1989) Anterior cervical discectomy with hydroxyapatite fusion. Neurosurgery 25:39–42; discussion 42–43 Senter HJ, Kortyna R, Kemp WR (1989) Anterior cervical discectomy with hydroxyapatite fusion. Neurosurgery 25:39–42; discussion 42–43
20.
go back to reference Shima T, Keller JT, Alvira MM, Mayfield FH, Dunsker SB (1979) Anterior cervical discectomy and interbody fusion. An experimental study using a synthetic tricalcium phosphate. J Neurosurg 51:533–538PubMedCrossRef Shima T, Keller JT, Alvira MM, Mayfield FH, Dunsker SB (1979) Anterior cervical discectomy and interbody fusion. An experimental study using a synthetic tricalcium phosphate. J Neurosurg 51:533–538PubMedCrossRef
21.
go back to reference Smith GW, Robinson RA (1958) The treatment of certain cervical-spine disorders by anterior removal of the intervertebral disc and interbody fusion. J Bone Joint Surg Am 40:607–624PubMed Smith GW, Robinson RA (1958) The treatment of certain cervical-spine disorders by anterior removal of the intervertebral disc and interbody fusion. J Bone Joint Surg Am 40:607–624PubMed
22.
go back to reference Suetsuna F, Yokoyama T, Kenuka E, Harata S (2001) Anterior cervical fusion using porous hydroxyapatite ceramics for cervical disc herniation. A two-year follow-up. Spine J 1:348–357PubMedCrossRef Suetsuna F, Yokoyama T, Kenuka E, Harata S (2001) Anterior cervical fusion using porous hydroxyapatite ceramics for cervical disc herniation. A two-year follow-up. Spine J 1:348–357PubMedCrossRef
23.
go back to reference Sutter B, Friehs G, Pendl G, Tolly E (1995) Bovine dowels for anterior cervical fusion: experience in 66 patients with a note on postoperative CT and MRI appearance. Acta Neurochir (Wien) 137:192–198CrossRef Sutter B, Friehs G, Pendl G, Tolly E (1995) Bovine dowels for anterior cervical fusion: experience in 66 patients with a note on postoperative CT and MRI appearance. Acta Neurochir (Wien) 137:192–198CrossRef
24.
go back to reference Thalgott JS, Fritts K, Giuffre JM, Timlin M (1999) Anterior interbody fusion of the cervical spine with coralline hydroxyapatite. Spine 24:1295–1299PubMedCrossRef Thalgott JS, Fritts K, Giuffre JM, Timlin M (1999) Anterior interbody fusion of the cervical spine with coralline hydroxyapatite. Spine 24:1295–1299PubMedCrossRef
25.
go back to reference Tracy BM, Doremus RH (1984) Direct electron microscopy studies of the bone-hydroxyapatite interface. J Biomed Mater Res 18:719–726PubMedCrossRef Tracy BM, Doremus RH (1984) Direct electron microscopy studies of the bone-hydroxyapatite interface. J Biomed Mater Res 18:719–726PubMedCrossRef
Metadata
Title
Clinical, radiological and histological study of the failure of cervical interbody fusions with bone substitutes
Authors
Youzhuan Xie
Daniel Chopin
Pierre Hardouin
Jianxi Lu
Publication date
01-08-2006
Publisher
Springer-Verlag
Published in
European Spine Journal / Issue 8/2006
Print ISSN: 0940-6719
Electronic ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-005-0052-1

Other articles of this Issue 8/2006

European Spine Journal 8/2006 Go to the issue