首页> 外文期刊>Expert opinion on therapeutic targets >The emerging importance of DNA mapping and other comprehensive screening techniques, as tools to identify new drug targets and as a means of (cancer) therapy personalisation.
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The emerging importance of DNA mapping and other comprehensive screening techniques, as tools to identify new drug targets and as a means of (cancer) therapy personalisation.

机译:DNA作图和其他全面筛选技术的重要性日益凸显,作为鉴定新药靶标的工具以及个性化(癌症)治疗的手段。

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摘要

Every human being is genetically unique and this individuality is not only marked by morphologic and physical characteristics but also by an individual's response to a particular drug. Single nucleotide polymorphisms (SNPs) are largely responsible for one's individuality. A drug may be ineffective in one patient, whereas the exact same drug may cure another patient. Recent advances in DNA mapping and other screening technologies have provided researchers and drug developers with crucial information needed to create drugs that are specific for a given individual. In the future, physicians will be able to prescribe individualised drugs adjusted to, for example, activities of specific enzymatic pathways that would either be targeted by these drugs, or would be responsible for drug conversion or inactivation. Furthermore, the mapping of the human genome allows broader development and application of drugs that act on the level of gene transcription rather than as simple biochemical inhibitors or activators of certain enzymes. Such new approaches will maximise desired therapeutic results and may completely eliminate severe side effects. To illustrate the potential of genetic translational research, the authors discuss available analytical methodologies such as; gene arrays, flow cytometry-based screening for SNPs, proteomics, metabolomics, real-time PCR, and other methods capable of detecting both SNPs, as well as more profound changes in cell metabolism. Finally, the authors provide several examples that focus mostly on targeting protein-DNA interactions, but also other processes.
机译:每个人在基因上都是独特的,这种个性不仅以形态和身体特征为特征,而且还以个人对特定药物的反应为特征。单核苷酸多态性(SNP)在很大程度上负责一个人的个性。一种药物可能对一名患者无效,而完全相同的药物可能会治愈另一名患者。 DNA作图和其他筛选技术的最新进展为研究人员和药物开发人员提供了创建针对特定个体的药物所需的关键信息。将来,医生将能够开出个性化的药物处方,以适应例如特定酶途径的活性,这些酶可能成为这些药物的靶标,或者负责药物的转化或失活。此外,人类基因组图谱的开发使作用于基因转录水平的药物的开发和应用更加广泛,而不是作为某些酶的简单生化抑制剂或激活剂。这样的新方法将使所需的治疗效果最大化,并且可以完全消除严重的副作用。为了说明基因翻译研究的潜力,作者讨论了可用的分析方法,例如;基因阵列,基于流式细胞仪的SNP筛选,蛋白质组学,代谢组学,实时PCR以及其他能够检测两种SNP以及细胞代谢更深刻变化的方法。最后,作者提供了几个主要针对蛋白质-DNA相互作用以及其他过程的例子。

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