药物遗传学:检测拷贝数变异的技术。

Dipali Dhawan, Harish Padh
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引用次数: 0

摘要

人类基因组的特点是结构变异,除了具有广泛的串联重复序列和snp区域。人类基因组中的拷贝数变异(CNVs)是插入、缺失、重复和复杂的多位点变异的结果,影响大约10%至12%的基因组,覆盖的核苷酸数量比snp多。用于检测CNVs的方法有几种,包括基于杂交的方法,如阵列、PCR扩增、FRET和测序。这些方法可以识别微观结构变化(>或= 3mb大小),以及亚微观结构变化(大约1kb到3mb大小)。CNVs可以影响药物代谢和疾病易感性。因此,在临床使用这些药物之前,需要在药代动力学和药效学水平上充分确定基因拷贝变异对治疗药物的疗效和毒性的影响。本文综述了在发表时可用的检测CNVs的技术,并引用了CNVs在临床药物遗传学中的应用实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmacogenetics: technologies to detect copy number variations.

The human genome is characterized by structural variations, in addition to having expansive areas of tandem repeat sequences and SNPs. Copy number variations (CNVs) in the human genome are the result of insertions, deletions, duplications and complex multisite variants, affecting approximately 10 to 12% of the genome and covering a higher number of nucleotides than SNPs. Several methods are used for the detection of CNVs, including approaches based on hybridization, such as arrays, PCR amplification, FRET and sequencing. These methods can identify microscopic structural variations (> or = 3 Mb in size), as well as submicroscopic structural variations (approximately 1 kb to 3 Mb in size). CNVs can affect drug metabolism and disease susceptibility. Therefore, the effect of variations in the copies of genes on the efficacy and toxicity of therapeutic agents needs to be well established at both pharmacokinetic and pharmacodynamic levels prior to the use of these agents clinically. This review evaluates the techniques for detecting the CNVs available at the time of publication, citing examples from the application of CNVs in clinical pharmacogenetics.

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Current Opinion in Molecular Therapeutics
Current Opinion in Molecular Therapeutics 医学-生物工程与应用微生物
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