Miron, Richard J (2024). Optimized bone grafting. Periodontology 2000, 94(1), pp. 143-160. Wiley 10.1111/prd.12517
|
Text
Periodontology_2000_-_2023_-_Miron.pdf - Published Version Available under License Creative Commons: Attribution (CC-BY). Download (16MB) | Preview |
Bone grafting is routinely performed in periodontology and oral surgery to fill bone voids. While autogenous bone is considered the gold standard because of its regenerative properties, allografts and xenografts have more commonly been utilized owing to their availability as well as their differential regenerative/biomechanical properties. In particular, xenografts are sintered at high temperatures, which allows for their slower degradation and resorption rates and/or nonresorbable features. As a result, clinicians have combined xenografts with other classes of bone grafts (most notably allografts and autografts in various ratios) for procedures requiring better long-term stability, such as contour grafting, sinus elevation procedures, and vertical bone augmentations. This review addresses the regenerative properties of each class of bone grafts and then highlights the importance of understanding each of their biomechanical and regenerative properties for clinical applications, including extraction site management, contour augmentation, sinus grafting, and horizontal and vertical augmentation procedures. Thereafter, an introduction toward the novel production of nonresorbable bone allografts (NRBAs) via high-temperature sintering is presented. These NRBAs not only pose the advantage of being more biocompatible than xenografts owing to their origin (human vs. animal bone) but also display nonresorbable properties similar to those of xenografts. Thus, while packaging allografts with xenografts in premixtures specific to various clinical indications has never been permitted owing to cross-species contamination and FDA/CE requirements, the discovery and production of NRBAs allows premixing with standard allografts in various ratios without regulatory restrictions. Therefore, premixtures of allografts with NRBAs can be produced in various ratios for specific indications (e.g., a 1:1 ratio similar to an allograft/xenograft mixture for sinus grafting) without the need for purchasing separate classes of bone grafts. This optimized form of bone grafting could theoretically provide clinicians more precise ratios without the need to purchase separate bone grafts. This review highlights the future potential for simplified and optimized bone grafting in periodontology and implant dentistry.
Item Type: |
Journal Article (Review Article) |
---|---|
Division/Institute: |
04 Faculty of Medicine > School of Dental Medicine > Periodontics Research 04 Faculty of Medicine > School of Dental Medicine > Department of Periodontology |
UniBE Contributor: |
Miron, Richard John |
Subjects: |
600 Technology > 610 Medicine & health |
ISSN: |
1600-0757 |
Publisher: |
Wiley |
Language: |
English |
Submitter: |
Pubmed Import |
Date Deposited: |
24 Aug 2023 09:02 |
Last Modified: |
18 May 2024 00:12 |
Publisher DOI: |
10.1111/prd.12517 |
PubMed ID: |
37610202 |
Uncontrolled Keywords: |
anorganic bovine bone mineral deproteinized bovine bone mineral extraction site management nonresorbable bone allograft |
BORIS DOI: |
10.48350/185697 |
URI: |
https://boris.unibe.ch/id/eprint/185697 |