Menicanin Danijela, Hynes K, Han J, Gronthos S, Bartold P M
Colgate Australian Clinical Dental Research Centre, School of Dentistry, Faculty of Health Sciences, University of Adelaide, Adelaide, 5005, SA, Australia.
Mesenchymal Stem Cell Laboratory, School of Medical Sciences, University of Adelaide, Adelaide, SA, Australia.
Adv Exp Med Biol. 2015;881:207-36. doi: 10.1007/978-3-319-22345-2_12.
The unique anatomy and composition of the periodontium make periodontal tissue healing and regeneration a complex process. Periodontal regeneration aims to recapitulate the crucial stages of wound healing associated with periodontal development in order to restore lost tissues to their original form and function and for regeneration to occur, healing events must progress in an ordered and programmed sequence both temporally and spatially, replicating key developmental events. A number of procedures have been employed to promote true and predictable regeneration of the periodontium. Principally, the approaches are based on the use of graft materials to compensate for the bone loss incurred as a result of periodontal disease, use of barrier membranes for guided tissue regeneration and use of bioactive molecules. More recently, the concept of tissue engineering has been integrated into research and applications of regenerative dentistry, including periodontics, to aim to manage damaged and lost oral tissues, through reconstruction and regeneration of the periodontium and alleviate the shortcomings of more conventional therapeutic options. The essential components for generating effective cellular based therapeutic strategies include a population of multi-potential progenitor cells, presence of signalling molecules/inductive morphogenic signals and a conductive extracellular matrix scaffold or appropriate delivery system. Mesenchymal stem cells are considered suitable candidates for cell-based tissue engineering strategies owing to their extensive expansion rate and potential to differentiate into cells of multiple organs and systems. Mesenchymal stem cells derived from multiple tissue sources have been investigated in pre-clinical animal studies and clinical settings for the treatment and regeneration of the periodontium.
牙周组织独特的解剖结构和组成使得牙周组织的愈合与再生成为一个复杂的过程。牙周再生旨在重现与牙周发育相关的伤口愈合关键阶段,以便将丧失的组织恢复到其原始形态和功能,并且为了实现再生,愈合过程必须在时间和空间上按照有序且程序化的顺序进行,复制关键的发育事件。已经采用了多种方法来促进牙周组织真正且可预测的再生。主要而言,这些方法基于使用移植材料来弥补因牙周疾病导致的骨质流失、使用屏障膜进行引导组织再生以及使用生物活性分子。最近,组织工程的概念已被整合到包括牙周病学在内的再生牙科的研究和应用中,旨在通过牙周组织的重建和再生来处理受损和缺失的口腔组织,并弥补更传统治疗方法的不足。产生有效的基于细胞的治疗策略的基本要素包括一群多能祖细胞、信号分子/诱导形态发生信号的存在以及一个具有传导性的细胞外基质支架或合适的递送系统。间充质干细胞因其广泛的增殖率以及分化为多个器官和系统细胞的潜力,被认为是基于细胞的组织工程策略的合适候选细胞。源自多种组织来源的间充质干细胞已在临床前动物研究和临床环境中用于牙周组织的治疗和再生研究。