Kaneko Daiki, Sasazaki Yoshihiro, Kikuchi Toshiyuki, Ono Takeshi, Nemoto Kohichi, Matsumoto Hideo, Toyama Yoshiaki
Department of Orthopaedic Surgery, National Defense Medical College, Saitama, Japan.
Connect Tissue Res. 2009;50(4):263-9. doi: 10.1080/03008200902846270.
Cyclic stretching is pivotal to maintenance of the ligaments. However, it is still not clear when ligament fibroblasts switch on expression of genes related to the mechanotransduction pathway in response to cyclic stretching. This in vitro study investigated, using ligament fibroblasts, the time-dependent changes in distribution and gene expression of beta1 integrin, the cytoskeleton, and collagens after the application of 6% cyclic stretching at a frequency of 0.1 Hz for 3 hr on silicon membranes. We carried out confocal laser scanning microscopy to demonstrate changes in distribution of these components as well as quantitative real-time RT-PCR to quantify levels of these gene expression both during application of cyclic stretching and at 0, 2, 6, 12, and 18 hr after the termination of stretching. Control (unstretched) cells were used at each time point. Within 1 hr of the application of stretching, the fibroblasts and their actin stress fibers became aligned in a direction perpendicular to the major axis of stretch, whereas control (unstretched) cells were randomly distributed. In response to cyclic stretching, upregulation of actin at the mRNA level was first observed within 1 hr after the onset of stretching, while upregulation of beta1 integrin and type I and type III collagens was observed between 2 and 12 hr after the termination of stretching. These results indicate that the fibroblasts quickly modify their morphology in response to cyclic stretching, and subsequently they upregulate the expression of genes related to the mechanotransduction pathway mainly during the resting period after the termination of stretching.
周期性拉伸对于韧带的维持至关重要。然而,韧带成纤维细胞在响应周期性拉伸时开启与机械转导途径相关基因表达的具体时间仍不清楚。这项体外研究使用韧带成纤维细胞,在硅膜上以0.1Hz的频率施加6%的周期性拉伸3小时后,研究了β1整合素、细胞骨架和胶原蛋白在分布和基因表达方面的时间依赖性变化。我们进行了共聚焦激光扫描显微镜检查以证明这些成分分布的变化,以及定量实时逆转录聚合酶链反应以量化在周期性拉伸过程中以及拉伸终止后0、2、6、12和18小时这些基因表达的水平。每个时间点都使用了对照(未拉伸)细胞。在施加拉伸的1小时内,成纤维细胞及其肌动蛋白应力纤维沿垂直于拉伸主轴的方向排列,而对照(未拉伸)细胞则随机分布。响应周期性拉伸,在拉伸开始后1小时内首先在mRNA水平观察到肌动蛋白上调,而在拉伸终止后2至12小时观察到β1整合素以及I型和III型胶原蛋白上调。这些结果表明,成纤维细胞在响应周期性拉伸时会迅速改变其形态,随后它们主要在拉伸终止后的静止期上调与机械转导途径相关的基因表达。