1Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Bucharest, Bucharest, Romania.
2Department of Cellular and Molecular Biology, National Institute R&D for Biological Sciences, Bucharest, Romania.
Stem Cells Dev. 2019 Aug 1;28(15):963-973. doi: 10.1089/scd.2019.0016. Epub 2019 May 24.
Several therapeutic strategies are currently in development for severe periodontitis and other associated chronic inflammatory diseases. Guided tissue regeneration of the periodontium is based on surgical implantation of natural or synthetic polymers conditioned as membranes, injectable biomaterials (hydrogels), or three-dimensional (3D) matrices. Combinations of biomaterials with bioactive factors represent the next generation of regenerative strategy. Cell delivery strategy based on scaffold-cell constructs showed potential in periodontitis treatment. Bioengineering of periodontal tissues using cell sheets and genetically modified stem cells is currently proposed to complete existing (pre)clinical procedures for periodontal regeneration. 3D structures can be built using computer-assisted manufacturing technologies to improve the implant architecture effect on new tissue formation. The aim of this review was to summarize the advantages and drawbacks of biomimetic composite matrices used as biomaterials for periodontal tissue engineering. Their conditioning as two-dimensional or 3D scaffolds using conventional or emerging technologies was also discussed. Further biotechnologies are required for developing novel products tailored to stimulate periodontal regeneration. Additional preclinical studies will be useful to closely investigate the mechanisms and identify specific markers involved in cell-implant interactions, envisaging further clinical tests. Future therapeutic protocols will be developed based on these novel procedures and techniques.
目前,有几种治疗策略正在开发中,用于治疗严重的牙周炎和其他相关的慢性炎症性疾病。牙周组织的引导组织再生是基于天然或合成聚合物的外科植入,这些聚合物被调理成膜、可注射生物材料(水凝胶)或三维(3D)基质。生物材料与生物活性因子的组合代表了下一代再生策略。基于支架细胞构建的细胞输送策略在牙周炎治疗中显示出了潜力。使用细胞片和基因修饰的干细胞对牙周组织进行生物工程,目前被提议用于完成牙周再生的现有(前)临床程序。可以使用计算机辅助制造技术构建 3D 结构,以改善植入物结构对新组织形成的影响。本综述的目的是总结用作牙周组织工程生物材料的仿生复合基质的优缺点。还讨论了使用传统或新兴技术将其调理为二维或 3D 支架的情况。需要进一步的生物技术来开发针对刺激牙周再生的定制新型产品。进一步的临床前研究将有助于密切研究细胞-植入物相互作用的机制和鉴定特定标记物,以进行进一步的临床测试。未来的治疗方案将基于这些新的程序和技术进行开发。