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治疗颌骨差异的生物学基础:机械力与骨骼结构的相互作用。

The biological basis of treating jaw discrepancies: An interplay of mechanical forces and skeletal configuration.

机构信息

Department of Biological Chemistry, Cellular and Molecular Biomechanics Unit, Medical School, National and Kapodistrian University of Athens, 11527 Athens, Greece.

Department of Biological Chemistry, Cellular and Molecular Biomechanics Unit, Medical School, National and Kapodistrian University of Athens, 11527 Athens, Greece.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2018 May;1864(5 Pt A):1675-1683. doi: 10.1016/j.bbadis.2018.02.007. Epub 2018 Feb 14.

Abstract

Jaw discrepancies and malrelations affect a large proportion of the general population and their treatment is of utmost significance for individuals' health and quality of life. The aim of their therapy is the modification of aberrant jaw development mainly by targeting the growth potential of the mandibular condyle through its cartilage, and the architectural shape of alveolar bone through a suture type of structure, the periodontal ligament. This targeted treatment is achieved via external mechanical force application by using a wide variety of intraoral and extraoral appliances. Condylar cartilage and sutures exhibit a remarkable plasticity due to the mechano-responsiveness of the chondrocytes and the multipotent mesenchymal cells of the sutures. The tissues respond biologically and adapt to mechanical force application by a variety of signaling pathways and a final interplay between the proliferative activity and the differentiation status of the cells involved. These targeted therapeutic functional alterations within temporo-mandibular joint ultimately result in the enhancement or restriction of mandibular growth, while within the periodontal ligament lead to bone remodeling and change of its architectural structure. Depending on the form of the malrelation presented, the above treatment approaches, in conjunction or separately, lead to the total correction of jaw discrepancies and the achievement of facial harmony and function. Overall, the treatment of craniofacial and jaw anomalies can be seen as an interplay of mechanical forces and adaptations occurring within temporo-mandibular joint and alveolar bone. The aim of the present review is to present up-to-date knowledge on the mechano-biology behind jaw growth modification and alveolar bone remodeling. Furthermore, future molecular targeted therapeutic strategies are discussed aiming at the improvement of mechanically-driven chondrogenesis and osteogenesis.

摘要

颌骨差异和错位影响了很大一部分人群,对其进行治疗对于个人的健康和生活质量至关重要。其治疗的目的主要是通过靶向下颌髁突软骨的生长潜力,以及通过牙周韧带的缝型结构牙槽骨的建筑形状来改变异常的颌骨发育。通过使用各种口腔内和口腔外器具施加外部机械力来实现这种靶向治疗。髁突软骨和缝具有显著的可塑性,这是由于软骨细胞的机械响应性和缝的多能间充质细胞。组织通过多种信号通路对机械力应用做出生物学反应并进行适应,最终涉及的细胞的增殖活性和分化状态相互作用。这些颞下颌关节内的靶向治疗性功能改变最终导致下颌生长的增强或限制,而在牙周韧带内则导致骨重塑和其建筑结构的改变。根据呈现的错位形式,上述治疗方法可以联合或单独使用,从而实现颌骨差异的完全矫正,并实现面部和谐和功能。总的来说,颅面和颌骨畸形的治疗可以看作是颞下颌关节和牙槽骨内机械力和适应的相互作用。本综述的目的是介绍颌骨生长改建和牙槽骨重塑背后的机械生物学最新知识。此外,还讨论了未来的分子靶向治疗策略,旨在改善机械驱动的软骨生成和骨生成。

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