New technologies used in the study of human melanoma.

Armando Felsani, Anna Maria Mileo, Vittoria Maresca, Mauro Picardo, Marco G Paggi
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引用次数: 4

Abstract

The amount of information on tumor biology has expanded enormously, essentially due to the completion of the human genome sequencing and to the application of new technologies that represent an exciting breakthrough in molecular analysis. Often these data spring from experimental procedures, such as a serial analysis of gene expression (SAGE) and DNA microarrays, which cannot be defined as hypothesis-driven: it may appear to be a "brute force" approach through which no information can be directly generated concerning the specific functions of selected genes in a definite context. However, interesting results are fruitfully generated, and thus it is important to consider the enormous potential these new technologies possess and to learn how to apply this novel form of knowledge in the emerging field of molecular medicine. This review, after a limited outline regarding several classic aspects of human cutaneous melanoma biology, genetics, and clinical approaches, will focus on the proficient use of up-to-date technologies in the study of the neoplastic disease and on their capability to provide effective support to conventional approaches in melanoma diagnosis, prognosis, and treatment.

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用于人类黑色素瘤研究的新技术。
肿瘤生物学的信息量已经大大增加,这主要是由于人类基因组测序的完成和分子分析领域令人兴奋的新技术的应用。通常,这些数据来自实验程序,如基因表达序列分析(SAGE)和DNA微阵列,这不能被定义为假设驱动:它可能看起来是一种“蛮力”方法,通过这种方法,无法直接生成有关特定背景下选定基因的特定功能的信息。然而,有趣的结果产生了丰硕的成果,因此重要的是要考虑这些新技术所拥有的巨大潜力,并学习如何将这种新形式的知识应用于新兴的分子医学领域。在对人类皮肤黑色素瘤生物学、遗传学和临床方法的几个经典方面进行了有限的概述之后,本综述将重点关注在肿瘤疾病研究中熟练使用最新技术,以及它们在黑色素瘤诊断、预后和治疗方面为传统方法提供有效支持的能力。
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