1 Department of Oral Medicine and Periodontology, Faculty of Oral and Dental Medicine, Cairo University , Giza, Egypt .
2 Clinic for Conservative Dentistry and Periodontology, School of Dental Medicine, Christian Albrechts University , Kiel, Germany .
Tissue Eng Part C Methods. 2017 Dec;23(12):900-925. doi: 10.1089/ten.TEC.2017.0130. Epub 2017 Oct 25.
The human periodontium is a uniquely complex vital structure, supporting and anchoring the teeth in their alveolar sockets, thereby playing a decisive role in tooth homeostasis and function. Chronic periodontitis is a highly prevalent immune-inflammatory disease of the periodontium, affecting 15% of adult individuals, and is characterized by progressive destruction of the periodontal tooth-investing tissues, culminating in their irreversible damage. Current periodontal evidence-based treatment strategies achieve periodontal healing via repair processes, mostly combating the inflammatory component of the disease, to halt or reduce prospective periodontal tissue loss. However, complete periodontal tissue regeneration remains a hard fought-for goal in the field of periodontology and multiple in vitro and in vivo studies have been conducted, in the conquest to achieve a functional periodontal tissue regeneration in humans. The present review evaluates the current status of periodontal regeneration attempted through tissue-engineering concepts, ideal requirements for experimental animal models under investigation, the methods of induction and classification of the experimentally created periodontal defects, types of experimental defects employed in the diverse animal studies, as well as the current state of knowledge obtained from in vivo animal experiments, with special emphasis on large animal models.
人类牙周组织是一种独特而复杂的生命结构,支撑和固定牙齿在牙槽骨中,从而在牙齿的稳态和功能中发挥决定性作用。慢性牙周炎是一种高度流行的牙周免疫炎症性疾病,影响 15%的成年人,其特征是牙周组织的进行性破坏,最终导致不可逆的损伤。目前基于循证的牙周治疗策略通过修复过程实现牙周愈合,主要针对疾病的炎症成分,以阻止或减少预期的牙周组织丧失。然而,牙周组织的完全再生仍然是牙周学领域中一个艰苦的目标,已经进行了多次体外和体内研究,以实现在人类中实现功能性牙周组织再生。本综述评估了通过组织工程概念尝试牙周再生的现状,研究中实验动物模型的理想要求,实验性牙周缺损的诱导和分类方法,不同动物研究中使用的实验性缺损类型,以及从体内动物实验中获得的当前知识状态,特别强调大型动物模型。