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牙髓再生的体外、离体和体内模型。

In vitro, ex vivo, and in vivo models for dental pulp regeneration.

机构信息

LBN, Univ. Montpellier, Montpellier, France.

Centro de Investigaciones Odontológicas, National University of Cuyo, Mendoza, Argentina.

出版信息

J Mater Sci Mater Med. 2023 Apr 1;34(4):15. doi: 10.1007/s10856-023-06718-2.

Abstract

Based on the concept of tissue engineering (Cells-Scaffold-Bioactive molecules), regenerative endodontics appeared as a new notion for dental endodontic treatment. Its approaches aim to preserve dental pulp vitality (pulp capping) or to regenerate a vascularized pulp-like tissue inside necrotic root canals by cell homing. To improve the methods of tissue engineering for pulp regeneration, numerous studies using in vitro, ex vivo, and in vivo models have been performed. This review explores the evolution of laboratory models used in such studies and classifies them according to different criteria. It starts from the initial two-dimensional in vitro models that allowed characterization of stem cell behavior, through 3D culture matrices combined with dental tissue and finally arrives at the more challenging ex vivo and in vivo models. The travel which follows the elaboration of such models reveals the difficulty in establishing reproducible laboratory models for dental pulp regeneration. The development of well-established protocols and new laboratory ex vivo and in vivo models in the field of pulp regeneration would lead to consistent results, reduction of animal experimentation, and facilitation of the translation to clinical practice.

摘要

基于组织工程(细胞-支架-生物活性分子)的概念,再生牙髓学作为牙髓治疗的新概念出现。其方法旨在通过细胞归巢来保存牙髓活力(盖髓术)或在坏死根管内再生血管化牙髓样组织。为了改进牙髓再生的组织工程方法,已经进行了大量使用体外、离体和体内模型的研究。这篇综述探讨了此类研究中使用的实验室模型的演变,并根据不同的标准对其进行了分类。它从最初允许干细胞行为特征化的二维体外模型开始,通过与牙齿组织相结合的 3D 培养基质,最后到达更具挑战性的离体和体内模型。所遵循的模型的发展揭示了为牙髓再生建立可重现的实验室模型的困难。在牙髓再生领域建立完善的协议和新的实验室离体和体内模型的发展将导致一致的结果,减少动物实验,并促进向临床实践的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bde/10067643/e158ac0c56d7/10856_2023_6718_Fig1_HTML.jpg

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