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机械负荷对牙周膜细胞基质稳态和分化潜能的影响:一项综述。

Effects of mechanical loading on matrix homeostasis and differentiation potential of periodontal ligament cells: A scoping review.

作者信息

Pakpahan Novena Dameria, Kyawsoewin Maythwe, Manokawinchoke Jeeranan, Termkwancharoen Chutimon, Egusa Hiroshi, Limraksasin Phoonsuk, Osathanon Thanaphum

机构信息

Center of Excellence for Dental Stem Cell Biology and Department of Anatomy, Faculty of Dentistry, Chulalongkorn University, Bangkok, Thailand.

Center of Excellence for Regenerative Dentistry, Chulalongkorn University, Bangkok, Thailand.

出版信息

J Periodontal Res. 2024 Oct;59(5):877-906. doi: 10.1111/jre.13284. Epub 2024 May 12.

Abstract

Various mechanical loadings, including mechanical stress, orthodontics forces, and masticatory force, affect the functions of periodontal ligament cells. Regulation of periodontal tissue destruction, formation, and differentiation functions are crucial processes for periodontal regeneration therapy. Numerous studies have reported that different types of mechanical loading play a role in maintaining periodontal tissue matrix homeostasis, and osteogenic differentiation of the periodontal ligament cells. This scoping review aims to evaluate the studies regarding the effects of various mechanical loadings on the secretion of extracellular matrix (ECM) components, regulation of the balance between formation and destruction of periodontal tissue matrix, osteogenic differentiation, and multiple differentiation functions of the periodontal ligament. An electronic search for this review has been conducted on two databases; MEDLINE via PubMed and SCOPUS. Study selection criteria included original research written in English that reported the effects of different mechanical loadings on matrix homeostasis and differentiation potential of periodontal ligament cells. The final 204 articles were mainly included in the present scoping review. Mechanical forces of the appropriate magnitude, duration, and pattern have a positive influence on the secretion of ECM components such as collagen, as well as regulate the secretion of matrix metalloproteinases and tissue inhibitors of matrix metalloproteinases. Additionally, these forces regulate a balance between osteoblastic and osteoclast differentiation. Conversely, incorrect mechanical loadings can lead to abnormal formation and destruction of both soft and hard tissue. This review provides additional insight into how mechanical loadings impact ECM homeostasis and multiple differentiation functions of periodontal ligament cells (PDLCs), thus making it valuable for regenerative periodontal treatment. In combination with advancing technologies, the utilization of ECM components, application of different aspects of mechanical force, and differentiation potential of PDLCs could bring potential benefits to future periodontal regeneration therapy.

摘要

包括机械应力、正畸力和咀嚼力在内的各种机械负荷会影响牙周膜细胞的功能。调节牙周组织的破坏、形成和分化功能是牙周再生治疗的关键过程。大量研究表明,不同类型的机械负荷在维持牙周组织基质稳态以及牙周膜细胞的成骨分化中发挥作用。本综述旨在评估关于各种机械负荷对细胞外基质(ECM)成分分泌、牙周组织基质形成与破坏平衡的调节、成骨分化以及牙周膜多种分化功能影响的研究。已在两个数据库进行了本综述的电子检索;通过PubMed的MEDLINE和SCOPUS。研究选择标准包括用英文撰写的原始研究,这些研究报告了不同机械负荷对牙周膜细胞基质稳态和分化潜能的影响。最终204篇文章主要纳入了本综述。适当大小、持续时间和模式的机械力对胶原蛋白等ECM成分的分泌有积极影响,并调节基质金属蛋白酶和基质金属蛋白酶组织抑制剂的分泌。此外,这些力调节成骨细胞和破骨细胞分化之间的平衡。相反,不正确的机械负荷会导致软硬组织的异常形成和破坏。本综述为机械负荷如何影响牙周膜细胞(PDLCs)的ECM稳态和多种分化功能提供了更多见解,因此对牙周再生治疗具有重要价值。结合先进技术,ECM成分的利用、机械力不同方面的应用以及PDLCs的分化潜能可能会给未来的牙周再生治疗带来潜在益处。

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