139
Views
0
CrossRef citations to date
0
Altmetric
Research Article

The effect of bone morphogenic protein-2-coated tri-calcium phosphate/hydroxyapatite on new bone formation in a rat model of femoral distraction osteogenesis

, , , , , , & show all
Pages 315-326 | Received 03 Aug 2011, Accepted 05 Oct 2011, Published online: 28 Nov 2011

References

  • McCarthy JG, Katzen JT, Hopper R, Grayson BH. The first decade of mandibular distraction: lessons we have learned. Plast Reconstr Surg. 2002;110:1704–13.
  • Paley D. Problems, obstacles, and complications of limb lengthening by the Ilizarov technique. Clin Orthop Relat Res. 1990;250:81–104.
  • Hamanishi C, Kawabata T, Yoshii T, Tanaka S. Bone mineral density changes in distracted callus stimulated by pulsed direct electrical current. Clin Orthop Relat Res. 1995;312:247–52.
  • Hamanishi C, Yoshii T, Totani Y, Tanaka S. Bone mineral density of lengthened rabbit tibia is enhanced by transplantation of fresh autologous bone marrow cells. An experimental study using dual X-ray absorptiometry. Clin Orthop Relat Res. 1994;303:250–5.
  • Ilizarov GA. The tension-stress effect on the genesis and growth of tissues. II. The influence of the rate and frequency of distraction. Clin Orthop Relat Res. 1989;239:263–85.
  • Pepper JR, Herbert MA, Anderson JR, Bobechko WP. Effect of capacitive coupled electrical stimulation on regenerate bone. J Orthop Res. 1996;14:296–302.
  • Raschke MJ, Bail H, Windhagen HJ, Kolbeck SF, Weiler A, Raun K, . Recombinant growth hormone accelerates bone regenerate consolidation in distraction osteogenesis. Bone. 1999;24:81–8.
  • Tsubota S, Tsuchiya H, Shinokawa Y, Tomita K, Minato H. Transplantation of osteoblast-like cells to the distracted callus in rabbits. J Bone Joint Surg Br. 1999;81:125–9.
  • Yamane K, Okano T, Kishimoto H, Hagino H. Effect of ED-71 on modeling of bone in distraction osteogenesis. Bone. 1999;24:187–93.
  • Ozkan K, Eralp L, Kocaoglu M, Ahishali B, Bilgic B, Mutlu Z, . The effect of transforming growth factor beta1 (TGF-beta1) on the regenerate bone in distraction osteogenesis. Growth Factors. 2007;25:101–7.
  • Moore DC, Ehrlich MG, McAllister SC, Machan JT, Hart CE, Voigt C, . Recombinant human platelet-derived growth factor-BB augmentation of new-bone formation in a rat model of distraction osteogenesis. J Bone Joint Surg Am. 2009;91:1973–84.
  • Fowlkes JL, Thrailkill KM, Liu L, Wahl EC, Bunn RC, Cockrell GE, . Effects of systemic and local administration of recombinant human IGF-I (rhIGF-I) on de novo bone formation in an aged mouse model. J Bone Miner Res. 2006;21: 1359–66.
  • Abbaspour A, Takata S, Sairyo K, Katoh S, Yukata K, Yasui N. Continuous local infusion of fibroblast growth factor-2 enhances consolidation of the bone segment lengthened by distraction osteogenesis in rabbit experiment. Bone. 2008;42:98–106.
  • Casap N, Venezia NB, Wilensky A, Samuni Y. VEGF facilitates periosteal distraction-induced osteogenesis in rabbits: a micro-computerized tomography study. Tissue Eng Part A. 2008;14:247–53.
  • Hu J, Qi MC, Zou SJ, Li JH, Luo E. Callus formation enhanced by BMP-7 ex vivo gene therapy during distraction osteogenesis in rats. J Orthop Res. 2007;25:241–51.
  • Lammens J, Nijs J, Schepers E, Ectors N, Lismont D, Verduyckt B. The effect of bone morphogenetic protein-7 (OP-1) and demineralized bone matrix (DBM) in the rabbit tibial distraction model. Acta Orthop Belg. 2009;75:103–9.
  • Mandu-Hrit M, Haque T, Lauzier D, Kotsiopriftis M, Rauch F, Tabrizian M, . Early injection of OP-1 during distraction osteogenesis accelerates new bone formation in rabbits. Growth Factors. 2006;24:172–83.
  • Chen D, Zhao M, Mundy GR. Bone morphogenetic proteins. Growth Factors. 2004;22:233–41.
  • Knaus P, Sebald W. Cooperativity of binding epitopes and receptor chains in the BMP/TGFbeta superfamily. Biol Chem. 2001;382:1189–95.
  • Ashinoff RL, Cetrulo CL,Jr., Galiano RD, Dobryansky M, Bhatt KA, Ceradini DJ, . Bone morphogenic protein-2 gene therapy for mandibular distraction osteogenesis. Ann Plast Surg. 2004;52:585–91.
  • Terheyden H, Wang H, Warnke PH, Springer I, Erxleben A, Ludwig K, . Acceleration of callus maturation using rhOP-1 in mandibular distraction osteogenesis in a rat model. Int J Oral Maxillofac Surg. 2003;32:528–33.
  • Campisi P, Hamdy RC, Lauzier D, Amako M, Rauch F, Lessard ML. Expression of bone morphogenetic proteins during mandibular distraction osteogenesis. Plast Reconstr Surg. 2003;111:201–10.
  • Farhadieh RD, Gianoutsos MP, Yu Y, Walsh WR. The role of bone morphogenetic proteins BMP-2 and BMP-4 and their related postreceptor signaling system (Smads) in distraction osteogenesis of the mandible. J Craniofac Surg. 2004;15: 714–8.
  • Rauch F, Lauzier D, Croteau S, Travers R, Glorieux FH, Hamdy R. Temporal and spatial expression of bone morphogenetic protein-2, -4, and -7 during distraction osteogenesis in rabbits. Bone. 2000;26:611–7.
  • Cheung LK, Zheng LW. Effect of recombinant human bone morphogenetic protein-2 on mandibular distraction at different rates in an experimental model. J Craniofac Surg. 2006;17:100–10.
  • Mundy GR, Chen D, Zhao M, Dallas S, Xu C, Harris S. Growth regulatory factors and bone. Rev Endocr Metab Disord. 2001;2:105–15.
  • Zheng LW, Cheung LK. Effect of recombinant human bone morphogenetic protein-2 on mandibular distraction at different rates in a rabbit model. Tissue Eng. 2006;12:3181–8.
  • Hamdy RC, Amako M, Beckman L, Kawaguchi M, Rauch F, Lauzier D, . Effects of osteogenic protein-1 on distraction osteogenesis in rabbits. Bone. 2003;33:248–55.
  • Li G, Bouxsein ML, Luppen C, Li XJ, Wood M, Seeherman HJ, . Bone consolidation is enhanced by rhBMP-2 in a rabbit model of distraction osteogenesis. J Orthop Res. 2002;20:779–88.
  • Jarcho M. Biomaterial aspects of calcium phosphates. Properties and applications. Dent Clin North Am. 1986;30:25–47.
  • Choi KH, Moon K, Kim SH, Yun JH, Jang KL, Cho KS. Purification and biological activity of recombinant human bone morphogenetic protein-2 produced by E. coli expression system. J Korean Acad Periodontol. 2008;38:41–50.
  • Tabandeh F, Shojaosadati SA, Zomorodipour A, Khodabandeh M, Sanati MH, Yakhchali B. Heat-induced production of human growth hormone by high cell density cultivation of recombinant Escherichia coli. Biotechnol Lett. 2004;26:245–50.
  • Ilizarov GA. The tension-stress effect on the genesis and growth of tissues. I. The influence of stability of fixation and soft-tissue preservation. Clin Orthop Relat Res. 1989;238:249–81.
  • Sailhan F, Gleyzolle B, Parot R, Guerini H, Viguier E. Rh-BMP-2 in distraction osteogenesis: dose effect and premature consolidation. Injury. 2009;41:680–6.
  • Reddi AH. Regulation of cartilage and bone differentiation by bone morphogenetic proteins. Curr Opin Cell Biol. 1992;4: 850–5.
  • Reddi AH. Role of morphogenetic proteins in skeletal tissue engineering and regeneration. Nat Biotechnol. 1998;16: 247–52.
  • Sampath TK, Reddi AH. Homology of bone-inductive proteins from human, monkey, bovine, and rat extracellular matrix. Proc Natl Acad Sci USA. 1983;80:6591–5.
  • Aronson J, Shen XC, Gao GG, Miller F, Quattlebaum T, Skinner RA, . Sustained proliferation accompanies distraction osteogenesis in the rat. J Orthop Res. 1997; 15:563–9.
  • Li G, Simpson AH, Kenwright J, Triffitt JT. Assessment of cell proliferation in regenerating bone during distraction osteogenesis at different distraction rates. J Orthop Res. 1997;15: 765–72.
  • Issa JP, do Nascimento C, Lamano T, Iyomasa MM, Sebald W, de Albuquerque RF, Jr. Effect of recombinant human bone morphogenetic protein-2 on bone formation in the acute distraction osteogenesis of rat mandibles. Clin Oral Implants Res. 2009;20:1286–92.
  • Issa JP, Spadaro AC, Bentley MV, Iyomasa MM, Siessere S, Regalo SC, . Monoolein and chitosan gels as potential carriers of the rhBMP-2, using decortication surgical technique in Wistar rats as experimental model. Micron. 2008;39:952–9.
  • Misch CE, Dietsh F. How to select, use bone substitute materials in conjunction with root-form implants. Dent Implantol Update. 1993;4:93–7.
  • Misch CE, Dietsh F. Bone-grafting materials in implant dentistry. Implant Dent. 1993;2:158–67.
  • Aronson J, Harrison BH, Stewart CL, Harp JH Jr. The histology of distraction osteogenesis using different external fixators. Clin Orthop Relat Res. 1989:106–16.w
  • Delloye C, Delefortrie G, Coutelier L, Vincent A. Bone regenerate formation in cortical bone during distraction lengthening. An experimental study. Clin Orthop Relat Res. 1990;250:34–42.
  • Yasui N, Sato M, Ochi T, Kimura T, Kawahata H, Kitamura Y, . Three modes of ossification during distraction osteogenesis in the rat. J Bone Joint Surg Br. 1997;79:824–30.
  • Kitakoji T, Takashi S, Ono Y, Hattori T, Takahashi H, Iwata H. Effect of hyperbaric oxygenation treatment on lengthened callus. Undersea Hyperb Med. 1999;26:165–8.
  • Muhonen A, Haaparanta M, Gronroos T, Bergman J, Knuuti J, Hinkka S, . Osteoblastic activity and neoangiogenesis in distracted bone of irradiated rabbit mandible with or without hyperbaric oxygen treatment. Int J Oral Maxillofac Surg. 2004;33:173–8.
  • Cope JB, Samchukov ML. Mineralization dynamics of regenerate bone during mandibular osteodistraction. Int J Oral Maxillofac Surg. 2001;30:234–42.
  • Sojo K, Sawaki Y, Hattori H, Mizutani H, Ueda M. Immunohistochemical study of vascular endothelial growth factor (VEGF) and bone morphogenetic protein-2, -4 (BMP-2, -4) on lengthened rat femurs. J Craniomaxillofac Surg. 2005; 33:238–45.
  • Tatehara S, Miyamoto Y, Takechi M, Momota Y, Yuasa T. Osteoporosis influences the early period of the healing after distraction osteogenesis in a rat osteoporotic model. J Craniomaxillofac Surg. 2011;39:2–9.
  • Djasim UM, Mathot BJ, Wolvius EB, van Neck JW, van der Wal KG. Histomorphometric comparison between continuous and discontinuous distraction osteogenesis. J Craniomaxillofac Surg. 2009;37:398–404.
  • Richards M, Kozloff KM, Goulet JA, Goldstein SA. Increased distraction rates influence precursor tissue composition without affecting bone regeneration. J Bone Miner Res. 2000;15: 982–9.
  • Richards M, Wineman AS, Alsberg E, Goulet JA, Goldstein SA. Viscoelastic characterization of mesenchymal gap tissue and consequences for tension accumulation during distraction. J Biomech Eng. 1999;121:116–23.
  • Younger AS, Mackenzie WG, Morrison JB. Femoral forces during limb lengthening in children. Clin Orthop Relat Res. 1994;301:55–63.
  • Fang TD, Salim A, Xia W, Nacamuli RP, Guccione S, Song HM, . Angiogenesis is required for successful bone induction during distraction osteogenesis. J Bone Miner Res. 2005;20:1114–24.
  • Amir LR, Becking AG, Jovanovic A, Perdijk FB, Everts V, Bronckers AL. Formation of new bone during vertical distraction osteogenesis of the human mandible is related to the presence of blood vessels. Clin Oral Implants Res. 2006;17:410–6.
  • Pacicca DM, Patel N, Lee C, Salisbury K, Lehmann W, Carvalho R, . Expression of angiogenic factors during distraction osteogenesis. Bone. 2003;33:889–98.
  • Bouletreau PJ, Warren SM, Longaker MT. The molecular biology of distraction osteogenesis. J Craniomaxillofac Surg. 2002;30:1–11.
  • Schumacher B, Albrechtsen J, Keller J, Flyvbjerg A, Hvid I. Periosteal insulin-like growth factor I and bone formation. Changes during tibial lengthening in rabbits. Acta Orthop Scand. 1996;67:237–41.
  • Byun JH, Park BW, Kim JR, Lee JH. Expression of vascular endothelial growth factor and its receptors after mandibular distraction osteogenesis. Int J Oral Maxillofac Surg. 2007;36: 338–44.
  • Hu J, Zou S, Li J, Chen Y, Wang D, Gao Z. Temporospatial expression of vascular endothelial growth factor and basic fibroblast growth factor during mandibular distraction osteogenesis. J Craniomaxillofac Surg. 2003;31:238–43.
  • Yamaguchi A, Katagiri T, Ikeda T, Wozney JM, Rosen V, Wang EA, . Recombinant human bone morphogenetic protein-2 stimulates osteoblastic maturation and inhibits myogenic differentiation in vitro. J Cell Biol. 1991;113:681–7.
  • Li G, Cui Y, McIlmurray L, Allen WE, Wang H. rhBMP-2, rhVEGF(165), rhPTN and thrombin-related peptide, TP508 induce chemotaxis of human osteoblasts and microvascular endothelial cells. J Orthop Res. 2005;23:680–5.
  • Li G, Simpson AH, Kenwright J, Triffitt JT. Effect of lengthening rate on angiogenesis during distraction osteogenesis. J Orthop Res. 1999;17:362–7.
  • http://www.cowellmedi.com/eng/product_e.htm

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.