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Original Article

Graft perforations favor osteoinduction

Studies of rabbit cortical grafts sterilized with ethylene oxide

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Pages 177-182 | Accepted 31 Oct 1991, Published online: 08 Jul 2009

References

  • Aspenberg P, Johnsson E, Thorngren K G. Dose–dependent reduction of bone inductive properties by ethylene oxide. J Bone Joint Surg (Br) 1990; 72(6)1036–7
  • Bemick S, Paule W, Ertl D, Nishimoto S K., Nimni M E. Cellular events associated with the induction of bone by demineralized bone. J Orlhop Res 1989; 7(1)1–11
  • Bolander M E., Baslian G. The use of demineralized bone matrix in the repair of segmental defects. Augmentation with extracted matrix proteins and a comparison with autologous grafts. J Bone Joint Surg (Am) 1986; 68(8)1264–74
  • Delloye C, Hebrant A, Munting E, Piret L, Coutelier L. The osteoinductive capacity of differently HC1 decalcified bone alloimplants. Acta Orthop Scand 1985; 56(4)318–22
  • Einhorn T A., Lane J M., Burstein A H., Kopman C R., Vigorita V J. The healing of segmental bone defects induced by demineralized bone matrix. A radiographic and bio–mechanical study. J Bone Joint Surg (Am) 1984; 66(2)274–9
  • Gendler E. Perforated demineralized bone matrix: A new form of osteoinductive biomaterial. J Biomed Mater Res 1986; 20(6)687–697
  • Gepstein R, Weiss R E., Hallel T. Bridging large defects in bone by demineralized bone matrix in the form of a powder. A radiographic, histological, and radioisotope uptake study in rats. J Bone Joint Surg (Am) 1987; 69(7)984–92
  • Hollinger J O., Mark D E., Goco P, Quigley N, Desverreaux R W., Bach D E. A comparison of four particulate bone derivatives. Clin Orthop 1991; 267: 255–63
  • Iwata H, Hanamura H, Kaneko M, Yasuhara N, Terashima Y, Kajino G, Ida K, Mabuchi Y, Nakagawa M. Chemosteril–ized autolysed antigen–extracted allogeneic (AAA) bone matrix gelatin for repair of defects from excision of benign bone tumors. Clin Orthop 1981; 154: 150–5
  • Köhler P, Kreicbergs A. Incorporation of autoclaved auto–geneic bone supplemented with allogeneic demineralized bone matrix. An experimental study in the rabbit. Clin Orthop 1987; 218: 247–58
  • Moore T M., Artal R, Arenas M, Gendler E. Influence of post–mortem time and temperature on osteoinductive activity of demineralized microperforated ethylene oxide sterilized syngeneic bone implant in the rat. Clin Orthop 1990; 259: 239–44
  • Munting E, Wilmart J F., Wijne A, Hennebert P, Delloye C. Effect of sterilization on osteoinduction. Comparison of five methods in demineralized rat bone. Acta Orthop Scand 1988; 59(1)34–8
  • Nade S, Burwell R G. Decalcified bone as a substrate for osteogenesis. An appraisal of the interrelation of bone and marrow in combined grafts. J Bone Joint Surg (Br) 1977; 59(2)189–96
  • Oikarinen J, Korhonen L K. Repair of bone defects by bone inductive material. Acta Orthop Scand 1979; 50(1)21–6
  • Reddi A H. Implant–stimulated interface reactions during collagenous bone matrix–induced bone formation. J Biomed Mater Res 1985; 19(3)233–9
  • Saveliev V I., Sivkov S. Our experience with supply of demineralized bone grafts. Ortoped Travmat Protezi–rovanie (USSR) 1986; 8: 22–5
  • Tuli S M., Singh A D. The osteoninductive property of decalcified bone matrix. An experimental study. J Bone Joint Surg (Br) 1978; 60(1)116–23
  • Urist M R. Bone formation by autoinduction. Science 1965; 150(698)893–9
  • Urist M R. Surface decalcified allogenic bone (SDAB) implants: A preliminary report of 10 cases and 25 comparable operations with undecalcified lyophilized bone implants. Clin Orthop 1968; 56: 37–50
  • Urist M R. A chemosterilized antigen–extracted autodigested alloimplant for bone banks. Arch Surg 1975; 110: 416–28
  • Urist M R., Chung J J., Lietze A, Huo Y K., Brownell A G., DeLange R J. Methods of preparation and bioassay of bone morphogenetic protein and polypeptide fragments. Meth Enzymol 1987; 146: 296–312
  • Vandersteenhoven J, Spector M. Histological investigation of bone induction by demineralized allogenic bone matrix: a natural biomaterial for osseous reconstruction. J Biomed Mater Res 1983; 17: 1003–14
  • Zislis T, Martin S A., Cerbas E, Heath J R., Mansfield J L., Hollinger J O. A scanning electron microscopic study of in vitro toxicity of ethylene oxide–sterilized bone repair materials. J Oral Implant 1989; 15: 41–6

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