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镍离子诱导成纤维细胞差异基因表达的全基因组通路分析。

Genome-wide pathways analysis of nickel ion-induced differential genes expression in fibroblasts.

机构信息

State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096. PR China.

出版信息

Biomaterials. 2010 Mar;31(8):1965-73. doi: 10.1016/j.biomaterials.2009.12.044. Epub 2010 Jan 6.

Abstract

To reveal molecular mechanisms of the interaction between Ni2+ and cells, cDNA microarray technology and GenMAPP analysis were utilized to investigate changes of gene expression profile and identify significant biological pathways in mouse fibroblast cells (L-929) treated by 100 microm Ni2+ for 12, 24, 48 and 72 h, respectively. The microarray data was validated by real-time PCR. Methylthiazoltetrazolium (MTT) analysis and flow cytometry experiment were used to assess the cellular response of L-929 cells to Ni2+. It was found that six main biological pathways were affected by Ni2+ with 118 differentially expressed genes involved. Further analysis illuminated that the exposure of cells to Ni2+ may evoke series of cellular responses to hypoxia by regulating hypoxia-inducible gene expression and cause irreversible DNA damage. Cell cycle pathway analysis results showed DNA replication in S phase could be inhibited by Ni2+ which was consistent with the data gained from flow cytometry experiment. Compared to previous researches based on conventional molecular biology experiments, the present work has not only indirectly validated the findings of other groups but also obtained several discoveries related to cell-Ni2+ interaction, such as inhibition of electron transport chain and accumulation of extracellular matrix (ECM) collagens. The routine of the present study not only can analyze gene expression profile but also may provide a more convenient and efficient approach to explain molecular mechanisms of cell-biomaterial interaction.

摘要

为了揭示 Ni2+与细胞相互作用的分子机制,利用 cDNA 微阵列技术和 GenMAPP 分析分别研究了 100μm Ni2+处理小鼠成纤维细胞(L-929)12、24、48 和 72 小时后基因表达谱的变化,并识别出显著的生物学途径。微阵列数据通过实时 PCR 进行验证。噻唑蓝(MTT)分析和流式细胞术实验用于评估 Ni2+对 L-929 细胞的细胞反应。结果发现,有 6 条主要的生物学途径受到 Ni2+的影响,涉及 118 个差异表达基因。进一步分析表明,细胞暴露于 Ni2+中可能通过调节缺氧诱导基因的表达引起一系列的缺氧反应,并导致不可逆转的 DNA 损伤。细胞周期途径分析结果表明,Ni2+可抑制 S 期的 DNA 复制,这与流式细胞术实验获得的数据一致。与基于传统分子生物学实验的先前研究相比,本研究不仅间接验证了其他研究小组的发现,还获得了一些与细胞-Ni2+相互作用相关的发现,例如电子传递链的抑制和细胞外基质(ECM)胶原的积累。本研究的常规方法不仅可以分析基因表达谱,还可能为解释细胞-生物材料相互作用的分子机制提供一种更方便、更有效的方法。

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