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锶对人牙龈成纤维细胞的影响。

Strontium Effects on Human Gingival Fibroblasts.

作者信息

Fernandes Gabriela, Vanyo Stephen T, Alsharif Shahad Bakheet Atiano, Andreana Sebastiano, Visser Michelle B, Dziak Rosemary

机构信息

Department of Oral Biology, School of Dental Medicine, University at Buffalo, Buffalo, NY.

Department of Restorative Dentistry, School of Dental Medicine, University at Buffalo, Buffalo, NY.

出版信息

J Oral Implantol. 2019 Aug;45(4):274-280. doi: 10.1563/aaid-joi-D-18-00253. Epub 2019 Jun 19.

Abstract

Strontium is a naturally occurring alkaline earth metal that has been shown to be useful not only in the treatment and prevention of osteoporosis but also in the treatment of dentinal hypersensitivity in the oral cavity; strontium is also an effective cariostatic, antiplaque, antigingivitis agent. Relatively little is known, however, about the effects of strontium on gingival fibroblasts. The purpose of the present investigation was to conduct in vitro studies on the potential for strontium to positively affect the activity of these cells such that it might be effective in the enhancement of gingival attachment to surfaces, such as healing abutments in implants in the oral cavity. The results indicate that strontium added as strontium citrate (0.5-1.0 mM), both in the absence and presence of a healing abutment, increases human gingival cell activity and decreases apoptosis in these cells. Scanning electron microscopy studies also reveal that the addition of strontium increases attachment of gingival fibroblasts to the surfaces of healing abutments. These studies provide the basis for further investigations on the use of strontium in the prevention and treatment of peri-implantitis by maximizing the formation of a peri-implant soft-tissue barrier.

摘要

锶是一种天然存在的碱土金属,已被证明不仅在骨质疏松症的治疗和预防中有用,而且在口腔牙本质过敏症的治疗中也有用;锶还是一种有效的抑龋、抗牙菌斑、抗牙龈炎药物。然而,关于锶对牙龈成纤维细胞的影响,人们所知相对较少。本研究的目的是进行体外研究,探讨锶对这些细胞活性产生积极影响的潜力,以便它可能有效地增强牙龈与表面的附着,例如口腔种植体中的愈合基台。结果表明,无论有无愈合基台,添加柠檬酸锶(0.5 - 1.0 mM)都会增加人牙龈细胞活性并减少这些细胞的凋亡。扫描电子显微镜研究还表明,添加锶会增加牙龈成纤维细胞与愈合基台表面的附着。这些研究为进一步研究通过最大化种植体周围软组织屏障的形成来使用锶预防和治疗种植体周围炎提供了基础。

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