Fan Xiaofeng, Wang Yu, Li Yu, Zhoo Zhihe
Dept. of Orthodontics, Hainan Stomatology Hospital, Haikou 570125, China.
Hua Xi Kou Qiang Yi Xue Za Zhi. 2012 Oct;30(5):463-7, 473.
The study was aimed to provide insights into cell proliferation ability alteration of human periodontal ligament fibroblasts (HPDLF) under two different types of stimulation, cyclic tensile and compressive stress, and screen the differentially expressed genes to have a comprehensive understanding of the molecular mechanism of changes in proliferation.
Primary HPDLF were subjected to cyclic tensile and compressive stress (0.5 Hz, 4 000 microstrain) for 2 h through a four-point bending strain system. After that, cell proliferation ability was examined by flow cytometry. Then the gene expression profile was investigated by microarray analysis.
Mechanical stress slowed a down proliferation of cells. S phase cells and proliferation index (PI) decreased. Differentially expressed genes were mainly located at nucleus and focus in transcription factor activity related genes, and most of them were involved in the regulation of transcription factors. Among them, more were in group of compressive stress.
本研究旨在深入了解人牙周膜成纤维细胞(HPDLF)在两种不同类型刺激(循环拉伸和压缩应力)下的细胞增殖能力变化,并筛选差异表达基因,以全面了解增殖变化的分子机制。
通过四点弯曲应变系统对原代HPDLF施加循环拉伸和压缩应力(0.5Hz,4000微应变)2小时。之后,通过流式细胞术检测细胞增殖能力。然后通过微阵列分析研究基因表达谱。
机械应力减缓了细胞增殖。S期细胞和增殖指数(PI)降低。差异表达基因主要位于细胞核,集中在转录因子活性相关基因,且大多数参与转录因子的调控。其中,压缩应力组的更多。
1)在机械加载下,HPDLF增殖减缓,细胞周期停滞。2)细胞周期停滞和增殖减缓可被视为细胞的一种适应和保护机制,以便有更多时间决定如何应对机械刺激,差异基因表达反映了细胞行为。反应结果首先是基因转录变化,最重要的生物学反应是核转录。3)HPDLF对循环压缩应力更敏感。