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互补DNA微阵列:基因特征的识别及其在临床实践中的应用

cDNA microarrays: identification of gene signatures and their application in clinical practice.

作者信息

Magic Zvonko, Radulovic Sinisa, Brankovic-Magic Mirjana

机构信息

Institute for Medical Research, Military Medical Academy, Belgrade, Serbia.

出版信息

J BUON. 2007 Sep;12 Suppl 1:S39-44.

Abstract

Sequencing of human genome introduced the new postgenomic era in medicine. A novel microarray technology represents a novel genetic platform which is being widely exploited to bridge the gap between gene sequence and function. Basically, with this technique it is possible to simultaneously measure the activity of virtually all genes in the genome. The result of these experiments are spots whose brightness varies from gene to gene corresponding to the transcriptional activity of the examined genes. It makes it possible to create experiments looking for genes whose expression correlates with the presence of tumor, with progression from a benign to a malignant condition, or with progression from a low grade to high grade malignancy. Tumor types can be more specifically identified, and differences in gene expression can be used to detect tumors that already demonstrate gene expression changes associated with increased risk of metastasis. Gene expression profiles will also help clinicians make decisions about the optimal treatment of cancer patients.

摘要

人类基因组测序开启了医学领域新的后基因组时代。一种新型微阵列技术代表了一种新型遗传平台,该平台正被广泛应用以弥合基因序列与功能之间的差距。从根本上说,利用这项技术可以同时测量基因组中几乎所有基因的活性。这些实验的结果是一些斑点,其亮度因基因而异,对应于所检测基因的转录活性。这使得开展实验寻找那些表达与肿瘤的存在、从良性到恶性状态的进展或从低级别到高级别恶性肿瘤的进展相关的基因成为可能。肿瘤类型能够得到更具体的识别,基因表达的差异可用于检测那些已经表现出与转移风险增加相关的基因表达变化的肿瘤。基因表达谱也将有助于临床医生对癌症患者的最佳治疗方案做出决策。

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