Biomaterials and regenerative technologies used in bone regeneration in the craniomaxillofacial region: Consensus report of group 2 of the 15th European Workshop on Periodontology on Bone Regeneration

再生(生物学) 医学 组织工程 骨愈合 干细胞 生物材料 牙周病学 牙科 生物医学工程 外科 细胞生物学 生物
作者
Mariano Sanz,Christer Dahlin,Danae A. Apatzidou,Zvi Artzi,Darko Božić,Elena Calciolari,Hugo De Bruyn,Henrik Dommisch,Nikolaos Donos,Peter Eickholz,Jan Eirik Ellingsen,Håvard Jostein Haugen,David Herrera,France Lambert,Pierre Layrolle,Eduardo Montero,Kamal Mustafa,Omar Omar,Henning Schliephake
出处
期刊:Journal of Clinical Periodontology [Wiley]
卷期号:46 (S21): 82-91 被引量:227
标识
DOI:10.1111/jcpe.13123
摘要

Abstract Background and Aims To review the regenerative technologies used in bone regeneration: bone grafts, barrier membranes, bioactive factors and cell therapies. Material and Methods Four background review publications served to elaborate this consensus report. Results and Conclusions Biomaterials used as bone grafts must meet specific requirements: biocompatibility, porosity, osteoconductivity, osteoinductivity, surface properties, biodegradability, mechanical properties, angiogenicity, handling and manufacturing processes. Currently used biomaterials have demonstrated advantages and limitations based on the fulfilment of these requirements. Similarly, membranes for guided bone regeneration ( GBR ) must fulfil specific properties and potential biological mechanisms to improve their clinical applicability. Pre‐clinical and clinical studies have evaluated the added effect of bone morphogenetic proteins (mainly BMP ‐2) and autologous platelet concentrates ( APC s) when used as bioactive agents to enhance bone regeneration. Three main approaches using cell therapies to enhance bone regeneration have been evaluated: (a) “minimally manipulated” whole tissue fractions; (b) ex vivo expanded “uncommitted” stem/progenitor cells; and (c) ex vivo expanded “committed” bone‐/periosteum‐derived cells. Based on the evidence from clinical trials, transplantation of cells, most commonly whole bone marrow aspirates ( BMA ) or bone marrow aspirate concentrations ( BMAC ), in combination with biomaterial scaffolds has demonstrated an additional effect in sinus augmentation and horizontal ridge augmentation, and comparable bone regeneration to autogenous bone in alveolar cleft repair.
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