• 目的利用核苷酸芯片检测SARS病毒

    Objective: To detect SARS virus by hybridization in oligonucleotide array.

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  • 利用水稻寡核苷酸芯片检测了去水稻种子的基因表达

    RNA profiling using a rice (Oryza sativa cv Nipponbare) oligonucleotide microarray was used to monitor gene expression in de-embryonated rice grains.

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  • 方法制备了包含87个心血管疾病相关基因探针寡核苷酸芯片

    Methods Oligonucleotide microarrays consisting of 87 probes representing 87 human cardiovascular disease-related genes were constructed.

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  • 目的设计一种带有通用序列标签的核苷酸探针以应用于寡核苷酸芯片质量控制

    Aim To design an universal sequence-tagged oligonucleotide probes for spot quality control of oligonucleotide microarrays.

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  • 通过试验,研究获得以下成果:(1)制作出背景杂交效率通用寡核苷酸芯片

    This research attains the following achievements: (1) The universal oligonucleotides microarray has the virtues of low background and high probed binding efficiency;

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  • 应用核苷酸芯片后,比较12 - 4级溃疡病人中,金黄色葡萄球菌的耐药性致病基因

    Using oligonucleotide arrays, s. aureus resistance and virulence genes were compared between grade 1 and grade 2-4 ulcers.

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  • 目的观察标记随机渗入标记法、末端转移标记法三种荧光标记法寡核苷酸芯片杂交信号影响

    Objective to observe the impact of three fluorescence marker methods of primer marker, random inleakage marker and terminal transfer marker to Oligonucleotide microarray hybridize signal.

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  • 结果SARS阳性样品核苷酸芯片杂交后出现阳性杂交信号,具有不同二级结构寡核苷酸探针杂交信号强度不一。

    Results: Positive SARS samples were detected by oligonucleotide array and fluorescence signal intensity was highly related to the probe's second structure.

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  • 其他一些人比如哈佛大学GeorgeChurch,采取比较中间位置,运用寡核苷酸芯片来合成个体基因成分然后它们在一起

    Others, like George Church of Harvard University, fall somewhere in the middle, synthesizing individual genetic components using oligonucleotide chips, then piecing them together.

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  • 目的建立核苷酸芯片技术检测SARS病毒

    Objective: To set up an oligonucleotide membrane chip technique for detecting SARS virus.

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  • 方法利用核苷酸基因芯片技术实时定量pcr技术检测20胰腺癌组织和6正常胰腺组织中TUSC3基因表达

    Methods The expression of TUSC3 gene in 20 cases of pancreatic cancer and 6 cases of normal pancreas were detected by oligonucleotide microarray and real-time quantitative PCR.

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  • 结构DNA芯片分为两种形式,DNA阵列寡核苷酸芯片

    According to the structures, DNA chip can be divided into two variants, DNA array and oligonucleotide microchip.

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  • 结论采用寡核苷酸阵列芯片技术可HCV进行基因以及基因亚型分析,方法快速、简便、敏感特异

    Conclusions This method is highly specific, sensitive and rapid for the diagnosis of the genotypes and sub-genotypes of HCV.

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  • 结论采用寡核苷酸阵列芯片技术可HCV进行基因以及基因亚型分析,方法快速、简便、敏感特异

    Conclusions This method is highly specific, sensitive and rapid for the diagnosis of the genotypes and sub-genotypes of HCV.

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