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Genome-wide microarray analysis of MG-63 osteoblastic cells exposed to ultrasound

机译:外暴露于超声的Mg-63骨细胞细胞的基因组微阵列分析

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It is well documented that low intensity pulsed ultrasound can be clinically used to accelerate bone fracture healing. Additionally, in vitro studies have shown that ultrasound can, for instance, increase mineralization, collagen production and alkaline phosphatase activity in osteoblasts. Despite the extensive research on the subject, the exact mechanism of ultrasound effect on bone cell gene regulation has not yet been deduced. In this study, we made an effort to reveal the features of genome-wide transcriptional response of osteoblast-type cells to ultrasound. MG-63 osteoblastic cell transcriptome was analyzed with whole genome microarray either 6 or 24 h after 30 min long exposure to 1.035 MHz pulsed ultrasound with three different acoustic pressures. Special attention was paid to the experimental design to minimize thermal effects and unwanted reflections of ultrasound. Microarray analysis suggested that ultrasound affects the genes involved with cellular membranes, and regulation of transcription as well. Several plasma membrane solute carriers were also regulated by ultrasound. It also changed the transcript level of several transcription factors belonging to the zinc finger proteins. However, ultrasound did not clearly promote genes involved with osteoblast differentiation. ^g>Bone cell, gene expression, transcriptome, ultrasound stimulation
机译:有很好的记录,低强度脉冲超声可以临床上用于加速骨折愈合。另外,体外研究表明,超声可以在成骨细胞中增加矿化,胶原蛋白产生和碱性磷酸酶活性。尽管对该受试者进行了广泛的研究,但尚未推导出超声波对骨细胞基因调节的确切机制。在这项研究中,我们努力揭示骨细胞型细胞的基因组转录响应的特征来超声。用全基因组微阵列分析Mg-63骨细胞细胞转录组,在30分钟内暴露于1.035MHz的脉冲超声,具有三种不同的声学压力。特别注意实验设计,以最大限度地减少超声波的热效应和不需要的反射。微阵列分析表明,超声波影响了细胞膜所涉及的基因,以及转录的调节。几种血浆膜溶质载体也通过超声调节。它还改变了属于锌指蛋白的几种转录因子的转录水平。然而,超声波没有明确促进与成骨细胞分化的基因。 ^ G>骨细胞,基因表达,转录组,超声刺激

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