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Natural Graft Tissues and Synthetic Biomaterials for Periodontal and Alveolar Bone Reconstructive Applications: a Review

Overview
Journal Biomater Res
Date 2017 Jun 9
PMID 28593053
Citations 130
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Abstract

Periodontal disease is categorized by the destruction of periodontal tissues. Over the years, there have been several clinical techniques and material options that been investigated for periodontal defect repair/regeneration. The development of improved biomaterials for periodontal tissue engineering has significantly improved the available treatment options and their clinical results. Bone replacement graft materials, barrier membranes, various growth factors and combination of these have been used. The available bone tissue replacement materials commonly used include autografts, allografts, xenografts and alloplasts. These graft materials mostly function as osteogenic, osteoinductive and/or osteoconductive scaffolds. Polymers (natural and synthetic) are more widely used as a barrier material in guided tissue regeneration (GTR) and guided bone regeneration (GBR) applications. They work on the principle of epithelial cell exclusion to allow periodontal ligament and alveolar bone cells to repopulate the defect before the normally faster epithelial cells. However, in an attempt to overcome complications related to the epithelial down-growth and/or collapse of the non-rigid barrier membrane and to maintain space, clinicians commonly use a combination of membranes with hard tissue grafts. This article aims to review various available natural tissues and biomaterial based bone replacement graft and membrane options used in periodontal regeneration applications.

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References
1.
Tanner M, Solt C, Vuddhakanok S . An evaluation of new attachment formation using a microfibrillar collagen barrier. J Periodontol. 1988; 59(8):524-30. DOI: 10.1902/jop.1988.59.8.524. View

2.
Loesche W, Grossman N . Periodontal disease as a specific, albeit chronic, infection: diagnosis and treatment. Clin Microbiol Rev. 2001; 14(4):727-52, table of contents. PMC: 89001. DOI: 10.1128/CMR.14.4.727-752.2001. View

3.
Scarano A, Degidi M, Iezzi G, Pecora G, Piattelli M, Orsini G . Maxillary sinus augmentation with different biomaterials: a comparative histologic and histomorphometric study in man. Implant Dent. 2006; 15(2):197-207. DOI: 10.1097/01.id.0000220120.54308.f3. View

4.
Osborn J, Newesely H . The material science of calcium phosphate ceramics. Biomaterials. 1980; 1(2):108-11. DOI: 10.1016/0142-9612(80)90009-5. View

5.
Linde A, THOREN C, Dahlin C, Sandberg E . Creation of new bone by an osteopromotive membrane technique: an experimental study in rats. J Oral Maxillofac Surg. 1993; 51(8):892-7. DOI: 10.1016/s0278-2391(10)80111-9. View