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首页> 外文期刊>The Journal of molecular diagnostics: JMD >Whole genome amplification for array comparative genomic hybridization using DNA extracted from formalin-fixed, paraffin-embedded histological sections.
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Whole genome amplification for array comparative genomic hybridization using DNA extracted from formalin-fixed, paraffin-embedded histological sections.

机译:使用从福尔马林固定,石蜡包埋的组织学切片中提取的DNA进行阵列比较基因组杂交的全基因组扩增。

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摘要

Array comparative genomic hybridization (CGH) is useful to assess genome-wide chromosomal imbalance, but the requirement for relatively large amounts of DNA can be a limitation, in particular for samples extracted from small tumor areas on paraffin sections. Whole genome amplification (WGA) can be performed before array CGH to obtain sufficient DNA, but the possibility of artifacts attributable to biased amplification cannot be excluded. We optimized the WGA protocol to generate sufficient DNA with minimum amplification bias. Using formalin-fixed, paraffin-embedded histological sections of tumors carrying known TP53 mutations, LOH 1p, LOH 10q, LOH 19q, and EGFR amplification, we first optimized the protocol so that these genetic alterations were detected after WGA. We found that a ligation step before WGA is important because it allows a short reaction time with Phi29 to generate WGA-DNA with greatly decreased amplification bias. Using template >150 ng of DNA, a ligation step before WGA, and a short reaction time with Phi29 DNA polymerase (<1.5 hours), we obtained WGA-DNA (>4 mug) with minimum amplification bias (less than threefold). Using this protocol, we performed array CGH (Agilent 105K) before and after WGA. Pearson correlation analysis indicated a significant positive correlation in array CGH results between DNA before and after WGA (P < 0.0001). These results suggest that genetic analyses are possible using WGA-DNA extracted from paraffin sections, but that they should be performed with a carefully optimized and controlled protocol.
机译:阵列比较基因组杂交(CGH)可用于评估全基因组染色体失衡,但是对相对大量DNA的要求可能是一个限制,特别是对于从石蜡切片上小肿瘤区域提取的样品。可以在阵列CGH之前进行全基因组扩增(WGA),以获得足够的DNA,但是不能排除归因于扩增偏差的假象的可能性。我们优化了WGA协议,以最小的扩增偏差产生足够的DNA。使用携带已知TP53突变,LOH 1p,LOH 10q,LOH 19q和EGFR扩增的福尔马林固定,石蜡包埋的组织学切片,我们首先优化了方案,以便在WGA之后检测到这些遗传改变。我们发现WGA之前的连接步骤很重要,因为它允许与Phi29的反应时间短,从而产生扩增偏差大大降低的WGA-DNA。使用> 150 ng DNA模板,WGA之前的连接步骤以及与Phi29 DNA聚合酶的较短反应时间(<1.5小时),我们获得了WGA-DNA(> 4马克杯),其扩增偏差最小(小于三倍)。使用此协议,我们在WGA之前和之后执行了阵列CGH(Agilent 105K)。 Pearson相关分析表明,WGA前后DNA阵列CGH结果之间存在显着的正相关(P <0.0001)。这些结果表明,使用从石蜡切片中提取的WGA-DNA进行遗传分析是可能的,但应使用经过仔细优化和控制的方案进行分析。

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