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首页> 外文期刊>Key Engineering Materials >Proliferation Effect of Mandibular Condylar Chondrocytes Given the Static Tension-Stress and/or TGF-β1 in Vitro
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Proliferation Effect of Mandibular Condylar Chondrocytes Given the Static Tension-Stress and/or TGF-β1 in Vitro

机译:静态张力-应力和/或TGF-β1对下颌Con突软骨细胞的体外增殖作用

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摘要

The purpose of this study is to study the proliferous effect of mandibular condylar chondrocytes given static tension-stress and/or transforming growth factor-β_1 (TGF-β_1) in vitro. The fourth-passage condylar chondrocytes were harvested for this study, and a pulsatile cellular mechanical system was used to apply stress on cells. The proliferous effect of condylar chondrocytes given continuous static tension-stress and/or TGF-β_1 were examined by using flow cytometry. The experiment was divided into two parts. The first part was divided into 20 groups according to different TGF-β_1 dosage (0ng/ml, 0.0ng/ml, 1ng/ml and 10ng/ml) for 0, 6, 12, 18 and 24 hours respectively. The second part was divided into eight groups under continuous static tension-stress (0 or 5kPa) and different TGF-β_1 dosage (0ng/ml, 0.1ng/ml, 1ng/ml, 10ng/ml) for 12 hours. Experimental data was analyzed with repeated interclass analysis of variance The results showed that chondrocytes which were cultured under different TGF-β_1dose combined with 5kPa static tension-stress had multi-horn morphological characters, including a great quantity of chondrocytes with division growth.TGF-β_1 had a mitogenic effect on rat mandibular condyle chondrocytes at the concentrations of 0.1, 1 and 10ng/ml, and the mitogenic effect of TGF-β_1 to condylar chondrocytes were demonstrated after 12 to 18 hours, and the peak of mitogenic effects appeared at the 18th hour (P <0 .05) . The most active mitogenesis happened in the group whose chondrocytes was under continuous static tension-stress (5kPa) combined with TGF-β_1. These results proved that mechanical stimulus and TGF-β_1 in vitro could influence and regulate the growth of condylar chondrocytes.
机译:这项研究的目的是研究给定静态张力应力和/或转化生长因子-β_1(TGF-β_1)的下颌con突软骨细胞的增殖作用。收集第四代con突软骨细胞用于这项研究,并使用搏动性细胞机械系统对细胞施加压力。通过流式细胞术检查了连续施加静态静态张力和/或TGF-β_1后con突软骨细胞的增殖作用。实验分为两部分。第一部分根据TGF-β_1的不同剂量(0ng / ml,0.0ng / ml,1ng / ml和10ng / ml)分别分为0、6、12、18和24小时,分为20组。第二部分在连续的静态拉应力(0或5kPa)和不同的TGF-β_1剂量(0ng / ml,0.1ng / ml,1ng / ml,10ng / ml)下分为8组,共12小时。对实验数据进行重复方差的类间分析。结果表明,在不同的TGF-β_1剂量和5kPa静态拉应力作用下培养的软骨细胞具有多角形态特征,其中包括大量具有分裂生长的软骨细胞。分别在0.1、1和10ng / ml的浓度下对大鼠下颌con软骨细胞有促有丝分裂作用,TGF-β_1对con突软骨细胞有丝分裂作用,在12至18小时后出现,有丝分裂作用的高峰出现在第18天小时(P <0 .05)。最活跃的有丝分裂发生发生在软骨细胞处于持续静态张力(5kPa)与TGF-β_1结合的组中。这些结果证明了体外机械刺激和TGF-β_1可以影响和调节con突软骨细胞的生长。

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