Skip to main content
Top
Published in: International Journal of Implant Dentistry 1/2018

Open Access 01-12-2018 | Review

Maxillary sinus augmentation using chairside bone marrow aspirate concentrates for implant site development: a systematic review of histomorphometric studies

Authors: Miriam Ting, Philip Afshar, Arik Adhami, Stanton M. Braid, Jon B. Suzuki

Published in: International Journal of Implant Dentistry | Issue 1/2018

Login to get access

Abstract

Maxillary sinus pneumatization following dental tooth extractions and maxillary alveolar bone resorption frequently leaves inadequate bone levels for implant placement. The objectives of this systematic review are to evaluate the effects of bone marrow aspirate concentrates (BMACs) used in maxillary sinus augmentation for implant site development.
A systematic search was conducted using PubMed, EMBASE, Web of Science, Cochrane Library, and Google Scholar for studies which histomorphometrically evaluated the efficacy of BMACs and BMAC-enriched biomaterials in sinus floor elevation. Six studies were selected, and the risk of bias was evaluated.
Reported ranges of vital mineralized tissue for the BMAC groups for the selected studies were 34.63–55.15% compared to 27.30% for control groups. For vital mineralized bone, these studies reported variable statistical significance. At 3–4 months, new bone formation for BMAC groups with controls using no BMAC was 7.4–12.6% and for the control groups was 9.45–14.3%. At 6 months, new bone formation for BMAC groups was 13.5–14.12% and for control groups was 10.41–13.9%. For new bone formation, these studies reported no significant difference between test and control and between 3 and 6 months histologic evaluation.
Within the limits of this systematic review, the chairside method to harvest BMAC produced similar implant survival and new bone formation compared to the laboratory FICOLL group, without the additional cost and time of laboratory cell isolation techniques. The iliac crest or tibia origins, single or double centrifugation, for BMAC do not appear to be a factor for implant survival or bone formation. Although some favorable outcomes were reported, the increase in new bone formation using chairside-harvested BMAC compared to control is not predictably more significant across studies.
Clinically, new bone formation in the maxillary sinus is not always contingent on the presence of BMAC. The novelty of this method requires more future studies.
Literature
1.
go back to reference Tatum H Jr. Maxillary and sinus implant reconstructions. Dent Clin N Am. 1986;30(2):207–29.PubMed Tatum H Jr. Maxillary and sinus implant reconstructions. Dent Clin N Am. 1986;30(2):207–29.PubMed
2.
go back to reference Payer M, Lohberger B, Strunk D, Reich KM, Acham S, Jakse N. Effects of directly autotransplanted tibial bone marrow aspirates on bone regeneration and osseointegration of dental implants. Clin Oral Implants Res. 2014;25(4):468–74.CrossRefPubMed Payer M, Lohberger B, Strunk D, Reich KM, Acham S, Jakse N. Effects of directly autotransplanted tibial bone marrow aspirates on bone regeneration and osseointegration of dental implants. Clin Oral Implants Res. 2014;25(4):468–74.CrossRefPubMed
3.
go back to reference Chaushu G, Vered M, Mardinger O, Nissan J. Histomorphometric analysis after maxillary sinus floor augmentation using cancellous bone-block allograft. J Periodontol. 2010;81(8):1147–52.CrossRefPubMed Chaushu G, Vered M, Mardinger O, Nissan J. Histomorphometric analysis after maxillary sinus floor augmentation using cancellous bone-block allograft. J Periodontol. 2010;81(8):1147–52.CrossRefPubMed
4.
go back to reference Boyne PJ, James RA. Grafting of the maxillary sinus floor with autogenous marrow and bone. J Oral Surg. 1980;38(8):613–6.PubMed Boyne PJ, James RA. Grafting of the maxillary sinus floor with autogenous marrow and bone. J Oral Surg. 1980;38(8):613–6.PubMed
5.
go back to reference Prolo DJ, Rodrigo JJ. Contemporary bone graft physiology and surgery. Clin Orthop Relat Res. 1985;200:322–42. Prolo DJ, Rodrigo JJ. Contemporary bone graft physiology and surgery. Clin Orthop Relat Res. 1985;200:322–42.
6.
go back to reference Jensen SS, Terheyden H. Bone augmentation procedures in localized defects in the alveolar ridge: clinical results with different bone grafts and bone-substitute materials. Int J Oral Maxillofac Implants. 2009;24(Suppl):218–36.PubMed Jensen SS, Terheyden H. Bone augmentation procedures in localized defects in the alveolar ridge: clinical results with different bone grafts and bone-substitute materials. Int J Oral Maxillofac Implants. 2009;24(Suppl):218–36.PubMed
7.
go back to reference Pasquali PJ, Teixeira ML, de Oliveira TA, de Macedo LG, Aloise AC, Pelegrine AA. Maxillary sinus augmentation combining Bio-Oss with the bone marrow aspirate concentrate: a histomorphometric study in humans. Int J Biomater. 2015;2015:121286.CrossRefPubMedPubMedCentral Pasquali PJ, Teixeira ML, de Oliveira TA, de Macedo LG, Aloise AC, Pelegrine AA. Maxillary sinus augmentation combining Bio-Oss with the bone marrow aspirate concentrate: a histomorphometric study in humans. Int J Biomater. 2015;2015:121286.CrossRefPubMedPubMedCentral
8.
go back to reference Kale S, Long MW. Osteopoiesis: the early development of bone cells. Crit Rev Eukaryot Gene Expr. 2000;10(3–4):259–71.PubMed Kale S, Long MW. Osteopoiesis: the early development of bone cells. Crit Rev Eukaryot Gene Expr. 2000;10(3–4):259–71.PubMed
9.
go back to reference Yamamoto N, Furuya K, Hanada K. Progressive development of the osteoblast phenotype during differentiation of osteoprogenitor cells derived from fetal rat calvaria: model for in vitro bone formation. Biol Pharm Bull. 2002;25(4):509–15.CrossRefPubMed Yamamoto N, Furuya K, Hanada K. Progressive development of the osteoblast phenotype during differentiation of osteoprogenitor cells derived from fetal rat calvaria: model for in vitro bone formation. Biol Pharm Bull. 2002;25(4):509–15.CrossRefPubMed
10.
go back to reference Kaigler D, Krebsbach PH, Polverini PJ, Mooney DJ. Role of vascular endothelial growth factor in bone marrow stromal cell modulation of endothelial cells. Tissue Eng. 2003;9(1):95–103.CrossRefPubMed Kaigler D, Krebsbach PH, Polverini PJ, Mooney DJ. Role of vascular endothelial growth factor in bone marrow stromal cell modulation of endothelial cells. Tissue Eng. 2003;9(1):95–103.CrossRefPubMed
11.
go back to reference Sauerbier S, Stricker A, Kuschnierz J, Buhler F, Oshima T, Xavier SP, et al. In vivo comparison of hard tissue regeneration with human mesenchymal stem cells processed with either the FICOLL method or the BMAC method. Tissue Eng Part C Methods. 2010;16(2):215–23.CrossRefPubMed Sauerbier S, Stricker A, Kuschnierz J, Buhler F, Oshima T, Xavier SP, et al. In vivo comparison of hard tissue regeneration with human mesenchymal stem cells processed with either the FICOLL method or the BMAC method. Tissue Eng Part C Methods. 2010;16(2):215–23.CrossRefPubMed
12.
go back to reference de Oliveira TA, Aloise AC, Orosz JE, de Mello EOR, de Carvalho P, Pelegrine AA. Double centrifugation versus single centrifugation of bone marrow aspirate concentrate in sinus floor elevation: a pilot study. Int J Oral Maxillofac Implants. 2016;31(1):216–22.CrossRefPubMed de Oliveira TA, Aloise AC, Orosz JE, de Mello EOR, de Carvalho P, Pelegrine AA. Double centrifugation versus single centrifugation of bone marrow aspirate concentrate in sinus floor elevation: a pilot study. Int J Oral Maxillofac Implants. 2016;31(1):216–22.CrossRefPubMed
13.
go back to reference Rooney AA, Boyles AL, Wolfe MS, Bucher JR, Thayer KA. Systematic review and evidence integration for literature-based environmental health science assessments. Environ Health Perspect. 2014;122(7):711–8.PubMedPubMedCentral Rooney AA, Boyles AL, Wolfe MS, Bucher JR, Thayer KA. Systematic review and evidence integration for literature-based environmental health science assessments. Environ Health Perspect. 2014;122(7):711–8.PubMedPubMedCentral
14.
go back to reference Sauerbier S, Rickert D, Gutwald R, Nagursky H, Oshima T, Xavier SP, et al. Bone marrow concentrate and bovine bone mineral for sinus floor augmentation: a controlled, randomized, single-blinded clinical and histological trial-per-protocol analysis. Tissue Eng A. 2011;17(17–18):2187–97.CrossRef Sauerbier S, Rickert D, Gutwald R, Nagursky H, Oshima T, Xavier SP, et al. Bone marrow concentrate and bovine bone mineral for sinus floor augmentation: a controlled, randomized, single-blinded clinical and histological trial-per-protocol analysis. Tissue Eng A. 2011;17(17–18):2187–97.CrossRef
15.
go back to reference Wildburger A, Payer M, Jakse N, Strunk D, Etchard-Liechtenstein N, Sauerbier S. Impact of autogenous concentrated bone marrow aspirate on bone regeneration after sinus floor augmentation with a bovine bone substitute—a split-mouth pilot study. Clin Oral Implants Res. 2014;25(10):1175–81.CrossRefPubMed Wildburger A, Payer M, Jakse N, Strunk D, Etchard-Liechtenstein N, Sauerbier S. Impact of autogenous concentrated bone marrow aspirate on bone regeneration after sinus floor augmentation with a bovine bone substitute—a split-mouth pilot study. Clin Oral Implants Res. 2014;25(10):1175–81.CrossRefPubMed
16.
go back to reference Imam MA, Holton J, Horriat S, Negida AS, Grubhofer F, Gupta R, et al. A systematic review of the concept and clinical applications of bone marrow aspirate concentrate in tendon pathology. SICOT J. 2017;3:58.CrossRefPubMedPubMedCentral Imam MA, Holton J, Horriat S, Negida AS, Grubhofer F, Gupta R, et al. A systematic review of the concept and clinical applications of bone marrow aspirate concentrate in tendon pathology. SICOT J. 2017;3:58.CrossRefPubMedPubMedCentral
Metadata
Title
Maxillary sinus augmentation using chairside bone marrow aspirate concentrates for implant site development: a systematic review of histomorphometric studies
Authors
Miriam Ting
Philip Afshar
Arik Adhami
Stanton M. Braid
Jon B. Suzuki
Publication date
01-12-2018
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Implant Dentistry / Issue 1/2018
Electronic ISSN: 2198-4034
DOI
https://doi.org/10.1186/s40729-018-0137-3

Other articles of this Issue 1/2018

International Journal of Implant Dentistry 1/2018 Go to the issue