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Comparison of Gene-Expression of MC3T3-E1 Osteoblastic Cell Cultured on Machined Titanium Surface and Resorbable Blast Material Titanium Surface

机译:MC3T3-E1骨盆细胞基因表达对加工钛表面培养的基因 - 表达及可再吸收爆破材料钛表面

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Because of its high biocompatibility, hydroxyapatite(HA) has been considered as a good blasting material. DNA microarray is a new molecular technology that enables the analysis of gene expression in parallel on a very large number of genes, spanning a significant fraction of the human genome. It is a qualitive analysis (e.g. it can differentiate each single gene) and quantitative, since it has the sensitivity to detect a change of expression level in the investigated cells when compared to normal samples. The aim of this study is to define the cell attachment and the genetic effect of machined surface implant and RBM (resorbable blast media) surface implant on the osteoblastic cell (MC3T3-E1 osteoblastic cell line) by cDNA microarray slide containing 21575 genes. Cells were cultured on machined grade 4 titanium disks(Group 1, machined surface) and disks of RBM (Group 2) and the samples were moved to new dishes and media were added and the plated disks were cultured for 24 hours. Total RNA extraction was performed with Qiagen mini kit (Qiagen, Chatsworth, CA, USA) for microarray assay. Microarray assay after culturing the cells on the machined surface and RBM surface revealed that osteoinductive molecules appeared more prominent on the RBM surface, whereas the adhesion molecules on the biomaterial were higher on the machined surface than RBM surface.
机译:由于其极高的生物相容性,羟基磷灰石(HA)一直被认为是一个很好的爆破材料。 DNA微阵列是一种新的分子技术,使上非常大量的基因的基因表达的平行分析,跨越人基因组的显著部分。它是一种定性分析(例如它可以区分各单个基因)和定量,因为它具有的灵敏度比正常样品时,以检测所研究的细胞中的表达水平的变化。本研究的目的是定义细胞附着和机加工的表面植入物和RBM(可再吸收的喷砂介质)表面的植入物对成骨细胞(MC3T3-E1骨细胞细胞系)通过含有21575个基因的cDNA微阵列载玻片上的遗传效应。细胞在加工4级钛磁盘培养(第1组,机加工的表面)和RBM的磁盘(第2组),并将样品转移到新的培养皿和媒体,并将电镀磁盘24小时进行培养。总RNA提取用Qiagen mini试剂盒(Qiagen公司,Chatsworth的,CA,USA),用于微阵列测定进行。加工表面和RBM表面上培养细胞后的微阵列分析的结果,成骨诱导分子出现在RBM表面上更突出,而在生物材料上的粘附分子是加工面比RBM表面上更高。

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