Periodontol 2000. 2015 Jun;68(1):41-54. doi: 10.1111/prd.12079.
Periodontal wound healing and regeneration are highly complex processes, involving cells, matrices, molecules and genes that must be properly choreographed and orchestrated. As we attempt to understand and influence these clinical entities, we need experimental models to mimic the various aspects of human wound healing and regeneration. In vivo animal models that simulate clinical situations of humans can be costly and cumbersome. In vitro models have been devised to dissect wound healing/regeneration processes into discrete, analyzable steps. For soft tissue (e.g. gingival) healing, in vitro models range from simple culture of cells grown in monolayers and exposed to biological modulators or physical effectors and materials, to models in which cells are 'injured' by scraping and subsequently the 'wound' is filled with new or migrating cells, to three-dimensional models of epithelial-mesenchymal recombination or tissue explants. The cells employed are gingival keratinocytes, fibroblasts or endothelial cells, and their proliferation, migration, attachment, differentiation, survival, gene expression, matrix production or capillary formation are measured. Studies of periodontal regeneration also include periodontal ligament fibroblasts or progenitors, osteoblasts or osteoprogenitors, and cementoblasts. Regeneration models measure cellular proliferation, attachment and migration, as well as gene expression, transfer and differentiation into a mineralizing phenotype and biomineralization. Only by integrating data from models on all levels (i.e. a single cell to the whole organism) can various critical aspects of periodontal wound healing/regeneration be fully evaluated.
牙周组织的伤口愈合和再生是一个高度复杂的过程,涉及到细胞、基质、分子和基因,这些都必须得到适当的协调和调控。当我们试图理解和影响这些临床实体时,我们需要实验模型来模拟人类伤口愈合和再生的各个方面。模拟人类临床情况的体内动物模型既昂贵又繁琐。因此,人们设计了体外模型来将伤口愈合/再生过程分解为离散的、可分析的步骤。对于软组织(如牙龈)的愈合,体外模型的范围从简单的单层细胞培养开始,这些细胞暴露于生物调节剂或物理效应器和材料中,到通过刮擦“损伤”细胞,随后用新的或迁移的细胞填充“伤口”的模型,再到上皮-间充质重组或组织外植体的三维模型。所使用的细胞是牙龈角质形成细胞、成纤维细胞或内皮细胞,其增殖、迁移、附着、分化、存活、基因表达、基质产生或毛细血管形成都可以被测量。牙周再生的研究还包括牙周韧带成纤维细胞或祖细胞、成骨细胞或成骨前体细胞以及牙骨质细胞。再生模型测量细胞的增殖、附着和迁移,以及基因表达、转移和分化为矿化表型和生物矿化。只有将来自各级模型的数据整合起来(即从单个细胞到整个生物体),才能全面评估牙周组织伤口愈合/再生的各个关键方面。