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牙周再生医学中的内源性再生技术综述。

A review on endogenous regenerative technology in periodontal regenerative medicine.

机构信息

Department of Periodontology & Oral Medicine, School of Stomatology, Fourth Military Medical University, Xi'an, Shaanxi, People's Republic of China.

出版信息

Biomaterials. 2010 Nov;31(31):7892-927. doi: 10.1016/j.biomaterials.2010.07.019. Epub 2010 Aug 4.

Abstract

Periodontitis is a globally prevalent inflammatory disease that causes the destruction of the tooth-supporting apparatus and potentially leads to tooth loss. Currently, the methods to reconstitute lost periodontal structures (i.e. alveolar bone, periodontal ligament, and root cementum) have relied on conventional mechanical, anti-infective modalities followed by a range of regenerative procedures such as guided tissue regeneration, the use of bone replacement grafts and exogenous growth factors (GFs), and recently developed tissue engineering technologies. However, all current or emerging paradigms have either been shown to have limited and variable outcomes or have yet to be developed for clinical use. To accelerate clinical translation, there is an ongoing need to develop therapeutics based on endogenous regenerative technology (ERT), which can stimulate latent self-repair mechanisms in patients and harness the host's innate capacity for regeneration. ERT in periodontics applies the patient's own regenerative 'tools', i.e. patient-derived GFs and fibrin scaffolds, sometimes in association with commercialized products (e.g. Emdogain and Bio-Oss), to create a material niche in an injured site where the progenitor/stem cells from neighboring tissues can be recruited for in situ periodontal regeneration. The choice of materials and the design of implantable devices influence therapeutic potential and the number and invasiveness of the associated clinical procedures. The interplay and optimization of each niche component involved in ERT are particularly important to comprehend how to make the desired cell response safe and effective for therapeutics. In this review, the emerging opportunities and challenges of ERT that avoid the ex vivo culture of autologous cells are addressed in the context of new approaches for engineering or regeneration of functional periodontal tissues by exploiting the use of platelet-rich products and its associated formulations as key endogenous resources for future clinical management of periodontal tissue defects.

摘要

牙周炎是一种全球流行的炎症性疾病,可导致牙齿支撑结构的破坏,并可能导致牙齿脱落。目前,重建缺失的牙周组织(即牙槽骨、牙周韧带和牙根牙骨质)的方法依赖于传统的机械、抗感染方法,随后是一系列再生程序,如引导组织再生、使用骨替代移植物和外源性生长因子(GFs),以及最近开发的组织工程技术。然而,所有当前或新兴的范例要么显示出有限的和可变的结果,要么尚未为临床应用而开发。为了加速临床转化,目前仍需要开发基于内源性再生技术(ERT)的治疗方法,该方法可以刺激患者潜在的自我修复机制,并利用宿主的固有再生能力。牙周学中的 ERT 应用患者自身的再生“工具”,即患者来源的 GFs 和纤维蛋白支架,有时与商业化产品(如 Emdogain 和 Bio-Oss)联合使用,在受损部位创建一个物质龛,使来自相邻组织的祖细胞/干细胞可以被招募进行原位牙周再生。材料的选择和植入物的设计会影响治疗的潜力以及相关临床程序的数量和侵袭性。ERT 中涉及的每个小生境成分的相互作用和优化对于理解如何使所需的细胞反应安全有效地用于治疗特别重要。在本文中,我们将探讨在利用富含血小板的产品及其相关制剂作为未来牙周组织缺陷临床管理的关键内源性资源来设计功能性牙周组织工程或再生的新方法的背景下,避免自体细胞体外培养的 ERT 的新兴机会和挑战。

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