首页> 外文期刊>The International journal of periodontics & restorative dentistry >The effects of enamel matrix derivative and cyclic mechanical strain on human gingival fibroblasts in an in vitro defect healing model.
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The effects of enamel matrix derivative and cyclic mechanical strain on human gingival fibroblasts in an in vitro defect healing model.

机译:牙釉质基质衍生物和循环机械应变对人牙龈成纤维细胞的体外缺损修复模型的影响。

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Gingival fibroblasts (GFs) play a considerable role in the maintenance of the gingival apparatus as well as in connective tissue repair. Mobility of a periodontal wound or soft tissue graft can impair connective tissue healing from the GFs. Enamel matrix derivative (EMD) is an enamel matrix protein used clinically for periodontal regeneration of intrabony defects and furcations, as well as treatment of gingival margin recessions. The goal of this project was to compare the effects of varying concentrations of EMD, with and without cyclic mechanical strain, on cellular wound fill of human GFs using an in vitro defect healing model. GFs were seeded and cultured in six-well flexible-bottomed plates. A 3-mm wound was created in the central portion of each confluent well. Three wells were treated with each EMD concentration of 0 Mug/mL (control), 30 Mug/mL, 60 Mug/mL, or 120 Mug/mL. The plates were placed in an incubator containing a strain unit to subject test plates to cyclic strain. An identical set of control plates were not flexed. Cells were examined on days 4, 8, 12, and 16. Microphotographs were taken and wound fill measurements made using image analysis software. The percent wound fill was calculated. All nonflexed plates, regardless of EMD concentration, reached > 90% defect fill at similar rates by day 16. However, in the flexed plates, EMD had a significant negative effect on defect fill. The defect fill was 55.7% for 0 Mug/mL EMD, 48.2% for 30 Mug/mL EMD, 36.7% for 60 Mug/mL EMD, and 34.1% for 120 Mug/mL EMD on day 16 for the flexed GFs. EMD, in concentrations as high as 120 Mug/mL, did not significantly affect the amount of defect fill with nonflexed GFs. However, when the GFs were flexed, the addition of EMD had a significant negative effect on defect fill in a dose-dependent manner.
机译:牙龈成纤维细胞(GFs)在维护牙龈装置以及结缔组织修复中起重要作用。牙周伤口或软组织移植物的活动性可能损害GFs的结缔组织愈合。牙釉质基质衍生物(EMD)是一种牙釉质基质蛋白,在临床上用于牙周骨内缺损和牙根分叉的再生,以及牙龈边缘凹陷的治疗。该项目的目的是使用体外缺陷修复模型比较不同浓度的EMD(有和没有循环机械应变)对人GFs细胞伤口填充的影响。将GFs接种并在六孔柔性底平板中培养。在每个融合孔的中心部分产生3毫米的伤口。处理三个孔,每个EMD浓度分别为0 Mug / mL(对照),30 Mug / mL,60 Mug / mL或120 Mug / mL。将板置于含有应变单元的培养箱中,以使测试板经受循环应变。一组相同的控制板未弯曲。在第4、8、12和16天检查细胞。拍摄显微照片,并使用图像分析软件进行伤口填充测量。计算伤口填充百分比。到第16天,无论EMD浓度如何,所有非挠曲板均以相似的比率达到> 90%的缺陷填充率。但是,在挠曲板上,EMD对缺陷填充率有明显的负面影响。对于挠曲GF,在第16天,对于0μg/ mL EMD,缺陷填充为55.7%,对于30μg/ mL EMD为48.2%,对于60μg/ mL EMD为36.7%,对于120μg/ mL EMD为34.1%。浓度高达120 Mug / mL的EMD不会显着影响未弯曲GF填充的缺损量。但是,当GFs屈曲时,EMD的添加以剂量依赖的方式对缺陷填充有明显的负面影响。

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