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正畸牙齿移动中的生物标志物。

Biomarkers in orthodontic tooth movement.

作者信息

Kumar A Anand, Saravanan K, Kohila K, Kumar S Sathesh

机构信息

Department of Orthodontics and Dentofacial Orthopedics, JKK Dental College and Hospital, Komarapalayam, Namakkal, Tamil Nadu, India.

出版信息

J Pharm Bioallied Sci. 2015 Aug;7(Suppl 2):S325-30. doi: 10.4103/0975-7406.163437.

Abstract

Tooth movement by orthodontic treatment is characterized by remodeling changes in the periodontal ligament, alveolar bone, and gingiva. A reflection of these phenomenons can be found in the gingival crevicular fluid (GCF) of moving teeth, with significant elevations in the concentrations of its components like, cytokines, neurotransmitters, growth Factors, and a arachidonic acid metabolites. GCF arises at the gingival margin and can be described as a transudate or an exudate. Several studies have focused on the composition of GCF and the changes that occur during orthodontic tooth movement (OTM). GCF component analysis is a non-invasive method for studying the cellular response of the underlying periodontium. Clinically, GCF can be easily collected using platinum loops, filter paper strips, gingival washings, and micropipettes. A number of GCF biomarkers involve in bone remodeling during OTM. The data suggest that knowledge of all the biomarkers present in the GCF that can be used to mark the changes in tooth that is undergoing orthodontic treatment may be of clinical usefulness leading to proper choice of mechanical stress to improve and to shorten treatment time and avoid side effects.

摘要

正畸治疗引起的牙齿移动的特征是牙周韧带、牙槽骨和牙龈的重塑变化。这些现象的一个反映可以在移动牙齿的龈沟液(GCF)中找到,其成分如细胞因子、神经递质、生长因子和花生四烯酸代谢产物的浓度会显著升高。GCF产生于牙龈边缘,可被描述为一种漏出液或渗出液。几项研究集中在GCF的成分以及正畸牙齿移动(OTM)过程中发生的变化。GCF成分分析是一种研究下方牙周组织细胞反应的非侵入性方法。临床上,使用铂环、滤纸条、牙龈冲洗液和微量移液器可以很容易地收集GCF。许多GCF生物标志物参与了OTM期间的骨重塑。数据表明,了解GCF中所有可用于标记正在接受正畸治疗的牙齿变化的生物标志物,可能具有临床实用性,有助于正确选择机械应力,以改善和缩短治疗时间并避免副作用。

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Biomarkers in orthodontic tooth movement.正畸牙齿移动中的生物标志物。
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