• 目的观察小鼠骨髓形成细胞基因表达变化规律,研究骨髓形成肝细胞分子机制

    Objective:To observe the change of gene expression profile while the mouse bone marrow cells forming liver cell and study the gene mechanism of bone marrow cells forming liver cells.

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  • 方法利用密度脂蛋白作用血管内皮细胞系ecv304通过基因芯片分析信号传导相关蛋白表达

    Methods Microarray analysis on human signal transduction associated proteins was applied to profile changes in gene expression of human ECV304 endothelial cells induced by low density lipoprotein.

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  • 目的利用已经建立胶质瘤细胞诱导分化相关基因表达筛选胶质瘤恶性进展相关基因

    Objective To screen out genes associated with malignant progression of glioma, based on the established glioma cell differentiation-inducing gene expression profiles.

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  • 目的比较不同转移潜能肝癌细胞基因表达,寻找转移相关的基因表达改变。

    Objective to compare gene expression profile of human hepatocellular carcinoma (HCC) cell lines with different metastatic potentials, so as to screen for metastasis-related genes.

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  • 结论:交叉性别骨髓移植小鼠肝脏的基因表达变化规律进一步研究骨髓形成细胞分子机制奠定实验基础

    Conclusion: the gene expression profile of bone marrow transplantation model have established a foundation to study the gene mechanism of bone marrow cells forming liver cells.

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  • 基因芯片技术一种通量研究手段可以同一时刻成千上万个基因表达情况进行分析,形成完整细胞基因表达谱

    DNA microarray technology is a high throughout method that can analyze the expression of thousands of genes at the same time to form a complete cellular gene expression profile.

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  • 目的利用基因表达芯片NB 4细胞硫化砷作用前后基因表达的差异性进行比较

    Objective To compare the gene expression status of NB4 cells before and after arsenic sulfide treatment by cDNA microarray.

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  • 目的基因芯片技术研究高低转移人卵巢癌细胞系(HO 8910 PMHO 8910)基因表达差异筛选与转移相关基因

    Objectives To study the difference between gene expressions of high (H0-8910PM) and low (HO-8910) metastatic human ovarian carcinoma cell lines and screen novel associated genes by cDNA microarray.

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  • 结论RAW264.7具有细胞特征性基因表达一种较好的破骨前细胞模型

    Conclusions RAW264. 7 cell could be used as a preferable preoste-oclast model in respect of its osteoclast characteristic gene expression profile.

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  • 目的研究周期性张力成骨细胞基因表达影响

    Objective: To study the effects of cyclic tensile stress on the gene expression profiles of human osteoblasts in vitro.

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  • 目的运用基因芯片技术研究人参甙(TSPG)作用后K 562细胞基因表达变化。

    Objective to investigate the effect of the total saponin of Panax ginseng (TSPG) on gene expression profile of K562 cells using microarray technique.

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  • 目的利用基因表达芯片研究T淋巴细胞株(HUT78黑素作用后免疫相关基因表达差异性

    Objective To in ve stigate the difference of immuno-related gene expressions in T lymphocyte line (HUT78) incubated with melatonin by cDNA microarray of gene expression profile.

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  • 通过分析酵母细胞的大规模基因表达数据,获得不同基因表达的相关性。

    Through seriate genome-wide mRNA expression data, similarity between two genes could be measured.

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  • 基因芯片技术建立颅内动脉瘤患者血液单核细胞基因表达谱,筛选与信号传导相关的基因表达情况。

    To identify signal transduction-related genes in peripheral blood mononuclear cells from intracranial aneurysm patients using oligo-microarrays.

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  • 目的探讨葡萄胎与正常胎盘绒毛基因表达 ,研究葡萄胎滋养层细胞增生机制

    OBJECTIVE:To explore gene expression profiles of complete hydatidiform mole to understand mechanisms of trophoblastic cell hyperplasia from gene level.

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  • 目的:运用芯片技术研究内源性一氧化碳(CO)刺激血管平滑肌细胞凋亡相关基因表达变化。

    OBJECTIVE: to identify the gene expression profiles associated with the apoptosis of pulmonary arterial smooth muscle cells stimulated by carbon monoxide (CO).

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  • 目的观察人脐静脉内皮细胞(ECV304细胞)内皮抑素(es)作用前后基因表达变化探讨作用的分子机制

    Objective to observe the altered gene expression of ECV304 cell after treated with endostatin (es) using cDNA microarray, and to investigate its molecular mechanism.

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  • 此外,我们还应用基因芯片技术研究SBP细胞基因表达影响。

    Furthermore, microarray was used for studying the change of gene expression profiles of hepatocyte in addition of SBP1.

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  • 目的研究视黄醇脱氢酶13 (Rdh13)基因小鼠组织中的表达及其细胞定位,为其功能研究提供线索。

    Objective: To study the expression profile of retinol dehydrogenase 13 (Rdh13) in mouse tissues and determine its subcellular localization.

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  • 目的研究视黄醇脱氢酶13 (Rdh13)基因小鼠组织中的表达及其细胞定位,为其功能研究提供线索。

    Objective: To study the expression profile of retinol dehydrogenase 13 (Rdh13) in mouse tissues and determine its subcellular localization.

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