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Research ArticleSpecial Issue

Demineralized Bone Matrix in Spine Surgery: A Review of Current Applications and Future Trends

Nicholas A. Shepard, Augustus J. Rush, Nelson L. Scarborough, Andrew J. Carter and Frank M Phillips
International Journal of Spine Surgery April 2021, 8059; DOI: https://doi.org/10.14444/8059
Nicholas A. Shepard
1Department of Orthopaedic Surgery, Rush University Medical Center, Chicago, Illinois
MD
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Augustus J. Rush III
1Department of Orthopaedic Surgery, Rush University Medical Center, Chicago, Illinois
MD
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Nelson L. Scarborough
2TheraCell, Inc, Sherman Oaks, California
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Andrew J. Carter
2TheraCell, Inc, Sherman Oaks, California
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Frank M Phillips
1Department of Orthopaedic Surgery, Rush University Medical Center, Chicago, Illinois
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ABSTRACT

Background Graft augmentation for spinal fusion is an area of continued interest, with a wide variety of available products lacking clear recommendations regarding appropriate use. While iliac crest autograft has long been considered the “gold standard”, suboptimal fusion rates along with harvest-related concerns continue to drive the need for graft alternatives. There are now multiple options of products with various characteristics that are available. These include demineralized bone matrix (DBM) and demineralized bone fibers (DBF), which have been used increasingly to promote spine fusion. The purpose of this review is to provide an updated narrative on the use of DBM/DBF in spine surgery.

Methods Literature review.

Results The clinical application of DBM in spine surgery has evolved since its introduction in the mid-1900s. Early preclinical studies demonstrated its effectiveness in promoting fusion. When used in the cervical, thoracic, and lumbar spine, more recent clinical data suggest similar rates of fusion compared with autograft, although clinical studies are primarily limited to level III or IV evidence with few level I studies. However, significant variability in surgical technique and type of product used in the literature limits its interpretation and overall application.

Conclusions DBM and DBF are bone graft options in spine surgery. Most commonly used as graft extenders, they have the ability to increase the volume of traditional grafting techniques while potentially inducing new bone formation. While the literature supports good fusion rates when used in the lumbar spine and when used with adjuvant cages or additional grafting techniques in the cervical spine, care should be taken when using as a stand-alone product. As new literature emerges, DBM and DBF can be a useful method in a surgeon's armamentarium for fusion-based procedures.

  • demineralized bone matrix (DBM)
  • spine surgery
  • lumbar fusion
  • cervical fusion
  • biologics

Footnotes

  • Disclosures and COI: Authors AJR and NAS have no disclosures. NLS: consultant and shareholder, TheraCell; AJC: employee and shareholder, TheraCell; FMP: royalties (Nuvasive, Medtronic), consulting (Nuvasive, SI-Bone, Stryker, Medtronic, Globus, Spinal Kinetics), and stock/options (Nuvasive, SI Bone, Surgio, Edge Surgical, Theracell, Spinal Simplicity, Augmedics).

  • This manuscript is generously published free of charge by ISASS, the International Society for the Advancement of Spine Surgery. Copyright © 2021 ISASS
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International Journal of Spine Surgery: 19 (S2)
International Journal of Spine Surgery
Vol. 19, Issue S2
1 Apr 2025
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Demineralized Bone Matrix in Spine Surgery: A Review of Current Applications and Future Trends
Nicholas A. Shepard, Augustus J. Rush, Nelson L. Scarborough, Andrew J. Carter, Frank M Phillips
International Journal of Spine Surgery Apr 2021, 8059; DOI: 10.14444/8059

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Demineralized Bone Matrix in Spine Surgery: A Review of Current Applications and Future Trends
Nicholas A. Shepard, Augustus J. Rush, Nelson L. Scarborough, Andrew J. Carter, Frank M Phillips
International Journal of Spine Surgery Apr 2021, 8059; DOI: 10.14444/8059
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  • Letter to the Editor: Rasch Analysis and High Value Spinal Endoscopy—Another Perspective
  • Real-World Implementation of Artificial Intelligence/Machine Learning for Managing Surgical Spine Patients at 2 Academic Health Care Systems
  • Potential Applications of Artificial Intelligence and Machine Learning in Spine Surgery Across the Continuum of Care
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Keywords

  • demineralized bone matrix (DBM)
  • spine surgery
  • lumbar fusion
  • cervical fusion
  • biologics

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