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In Vitro Weight-Loaded Cell Models for Understanding Mechanodependent Molecular Pathways Involved in Orthodontic Tooth Movement: A Systematic Review

机译:体外负重细胞模型用于了解涉及正畸牙齿运动的机械依赖性分子途径:系统综述

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摘要

Cells from the mesenchymal lineage in the dental area, including but not limited to PDL fibroblasts, osteoblasts, and dental stem cells, are exposed to mechanical stress in physiological (e.g., chewing) and nonphysiological/therapeutic (e.g., orthodontic tooth movement) situations. Close and complex interaction of these different cell types results in the physiological and nonphysiological adaptation of these tissues to mechanical stress. Currently, different in vitro loading models are used to investigate the effect of different types of mechanical loading on the stress adaptation of these cell types. We performed a systematic review according to the PRISMA guidelines to identify all studies in the field of dentistry with focus on mechanobiology using in vitro loading models applying uniaxial static compressive force. Only studies reporting on cells from the mesenchymal lineage were considered for inclusion. The results are summarized regarding gene expression in relation to force duration and magnitude, and the most significant signaling pathways they take part in are identified using protein-protein interaction networks.
机译:来自牙齿区域的间充质谱系的细胞,包括但不限于PDL成纤维细胞,成骨细胞和牙齿干细胞,在生理(例如咀嚼)和非生理/治疗(例如正畸牙齿移动)情况下会受到机械应力。这些不同细胞类型的紧密而复杂的相互作用导致这些组织对机械应力的生理和非生理适应。当前,不同的体外负荷模型用于研究不同类型的机械负荷对这些细胞类型的应激适应的影响。我们根据PRISMA指南进行了系统的审查,以鉴定牙科领域的所有研究,重点是使用单轴静态压缩力的体外加载模型对力学生物学进行研究。仅考虑报道间充质谱系细胞的研究。总结了有关力持续时间和强度的基因表达的结果,并使用蛋白质-蛋白质相互作用网络确定了它们参与的最重要的信号通路。

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