Literature DB >> 10102551

Recombinant human bone morphogenetic protein-2 stimulation of bone formation around endosseous dental implants.

D L Cochran1, R Schenk, D Buser, J M Wozney, A A Jones.   

Abstract

BACKGROUND: Successful endosseous implant placement requires that the implant be stable in alveolar bone. In certain cases, the implant can be stabilized in native bone but some part of the implant is not covered by bone tissue. This often occurs during placement of implants into extraction sites or in areas where bone resorption has occurred and the ridge width is not sufficient to completely surround the implant. In those cases, the clinician usually employs a procedure to encourage bone formation. These procedures typically include a bone graft and/or membrane therapy. Recent advances have led to the isolation, cloning, and production of recombinant human proteins that stimulate bone formation. One of these bone morphogenetic proteins (rhBMP-2) has been extensively studied in animal models and is currently being tested in human clinical trials.
METHODS: In this study, rhBMP-2 was tested using a collagen sponge carrier to stimulate bone formation in defects in the canine mandible around endosseous dental implants. Six animals had a total of 48 implants placed. rhBMP-2 with the collagen carrier was implanted around 24 of these, the remainder having only the collagen carrier placed. Half the sites were covered with a nonresorbable expanded polytetrafluoroethylene membrane. Histologic analysis was performed after 4 and 12 weeks. The area of new bone formed, percentage of bone-to-implant contact in the defect area, and percentage fill of the defect was calculated.
RESULTS: The addition of rhBMP-2 resulted in significantly greater amounts of new bone area and percentage of bone-to-implant contact and with more percentage fill after 4 and 12 weeks of healing. The area of new bone formed was reduced after 4 weeks when a membrane was present but after 12 weeks, there was no significant difference between membrane and non-membrane treated sites. In some specimens, new bone was found coronal to the membranes, with rhBMP-2-treated sites having greater amounts than non-rhBMP-2-treated sites.
CONCLUSIONS: These data demonstrate that a bone differentiation factor significantly stimulates bone formation in peri-implant bone defects in the canine mandible. In addition, bone-to-implant contact was significantly enhanced along the rough implant surface. Membrane-treated sites had less new bone formation after 4 weeks of healing but were similar to non-membrane sites after 12 weeks. These results demonstrate that rhBMP-2 can be used to stimulate bone growth both around and onto the surface of endosseous dental implants placed in sites with extended peri-implant osseous defects.

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Year:  1999        PMID: 10102551     DOI: 10.1902/jop.1999.70.2.139

Source DB:  PubMed          Journal:  J Periodontol        ISSN: 0022-3492            Impact factor:   6.993


  21 in total

1.  Osteoblast proliferation and differentiation on a barrier membrane in combination with BMP2 and TGFβ1.

Authors:  Richard J Miron; Nikola Saulacic; Daniel Buser; Tateyuki Iizuka; Anton Sculean
Journal:  Clin Oral Investig       Date:  2012-06-06       Impact factor: 3.573

2.  [Experimental pilot study on surface activation of implants with liposomal vectors].

Authors:  M Thorwarth; K A Schlegel; J Wiltfang; S Rupprecht; J H Park
Journal:  Mund Kiefer Gesichtschir       Date:  2004-03-27

3.  [Applying an osteoinductive protein complex for regeneration of osseous defects].

Authors:  F R Kloss; K A Schlegel; E Felszeghy; S Falk; J Wiltfang
Journal:  Mund Kiefer Gesichtschir       Date:  2004-01-20

4.  Effect of IR laser photobiomodulation on the repair of bone defects grafted with organic bovine bone.

Authors:  Marleny Elizabeth Márquez Martínez; Antonio Luiz Barbosa Pinheiro; Luciana Maria Pedreira Ramalho
Journal:  Lasers Med Sci       Date:  2007-09-20       Impact factor: 3.161

Review 5.  Matrices and scaffolds for drug delivery in dental, oral and craniofacial tissue engineering.

Authors:  Eduardo K Moioli; Paul A Clark; Xuejun Xin; Shan Lal; Jeremy J Mao
Journal:  Adv Drug Deliv Rev       Date:  2007-04-18       Impact factor: 15.470

6.  Pterygomaxillary implants: a graftless solution to deficient maxillary bone.

Authors:  G N Anandakrishna; Girish Rao
Journal:  J Indian Prosthodont Soc       Date:  2012-06-12

Review 7.  Pre-clinical models for oral and periodontal reconstructive therapies.

Authors:  G Pellegrini; Y J Seol; R Gruber; W V Giannobile
Journal:  J Dent Res       Date:  2009-11-03       Impact factor: 6.116

8.  Local simvastatin effects on mandibular bone growth and inflammation.

Authors:  David Stein; Yeonju Lee; Marian J Schmid; Byron Killpack; Mikala A Genrich; Nagamani Narayana; David B Marx; Diane M Cullen; Richard A Reinhardt
Journal:  J Periodontol       Date:  2005-11       Impact factor: 6.993

9.  Salicylic Acid-Based Polymers for Guided Bone Regeneration Using Bone Morphogenetic Protein-2.

Authors:  Sangeeta Subramanian; Ashley Mitchell; Weiling Yu; Sabrina Snyder; Kathryn Uhrich; J Patrick O'Connor
Journal:  Tissue Eng Part A       Date:  2015-04-29       Impact factor: 3.845

10.  Sclerostin antibody increases bone volume and enhances implant fixation in a rat model.

Authors:  Amarjit S Virdi; Min Liu; Kotaro Sena; James Maletich; Margaret McNulty; Hua Zhu Ke; Dale R Sumner
Journal:  J Bone Joint Surg Am       Date:  2012-09-19       Impact factor: 5.284

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