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小尺寸细胞样本mRNA扩增的局限性。

Limitations of mRNA amplification from small-size cell samples.

作者信息

Nygaard Vigdis, Holden Marit, Løland Anders, Langaas Mette, Myklebost Ola, Hovig Eivind

机构信息

Department of Tumor Biology, Institute for Cancer Research, The Norwegian Radium Hospital, Montebello, 0310 Oslo, Norway.

出版信息

BMC Genomics. 2005 Oct 27;6:147. doi: 10.1186/1471-2164-6-147.

Abstract

BACKGROUND

Global mRNA amplification has become a widely used approach to obtain gene expression profiles from limited material. An important concern is the reliable reflection of the starting material in the results obtained. This is especially important with extremely low quantities of input RNA where stochastic effects due to template dilution may be present. This aspect remains under-documented in the literature, as quantitative measures of data reliability are most often lacking. To address this issue, we examined the sensitivity levels of each transcript in 3 different cell sample sizes. ANOVA analysis was used to estimate the overall effects of reduced input RNA in our experimental design. In order to estimate the validity of decreasing sample sizes, we examined the sensitivity levels of each transcript by applying a novel model-based method, TransCount.

RESULTS

From expression data, TransCount provided estimates of absolute transcript concentrations in each examined sample. The results from TransCount were used to calculate the Pearson correlation coefficient between transcript concentrations for different sample sizes. The correlations were clearly transcript copy number dependent. A critical level was observed where stochastic fluctuations became significant. The analysis allowed us to pinpoint the gene specific number of transcript templates that defined the limit of reliability with respect to number of cells from that particular source. In the sample amplifying from 1000 cells, transcripts expressed with at least 121 transcripts/cell were statistically reliable and for 250 cells, the limit was 1806 transcripts/cell. Above these thresholds, correlation between our data sets was at acceptable values for reliable interpretation.

CONCLUSION

These results imply that the reliability of any amplification experiment must be validated empirically to justify that any gene exists in sufficient quantity in the input material. This finding has important implications for any experiment where only extremely small samples such as single cell analyses or laser captured microdissected cells are available.

摘要

背景

全局mRNA扩增已成为一种广泛应用的方法,用于从有限的材料中获取基因表达谱。一个重要的问题是所获得的结果能否可靠地反映起始材料。这对于输入RNA量极低的情况尤为重要,因为可能存在由于模板稀释导致的随机效应。这方面在文献中记录较少,因为通常缺乏数据可靠性的定量测量。为了解决这个问题,我们在3种不同的细胞样本量中检测了每个转录本的灵敏度水平。在我们的实验设计中,使用方差分析来估计输入RNA减少的总体影响。为了评估减小样本量的有效性,我们应用一种基于模型的新方法TransCount检测了每个转录本的灵敏度水平。

结果

从表达数据来看,TransCount提供了每个检测样本中绝对转录本浓度的估计值。利用TransCount的结果计算不同样本量转录本浓度之间的皮尔逊相关系数。相关性明显依赖于转录本拷贝数。观察到一个临界水平,此时随机波动变得显著。该分析使我们能够确定特定来源细胞数量方面定义可靠性极限的基因特异性转录本模板数量。在从1000个细胞扩增的样本中,每个细胞至少表达121个转录本的转录本在统计学上是可靠的,对于250个细胞,这个极限是每个细胞1806个转录本。高于这些阈值,我们数据集之间的相关性处于可接受的值,以便进行可靠的解释。

结论

这些结果表明,任何扩增实验的可靠性都必须通过实证验证,以证明输入材料中任何基因的存在量足够。这一发现对于任何只有极小样本(如单细胞分析或激光捕获显微切割细胞)可用的实验具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/345e/1310617/a070f5de2b44/1471-2164-6-147-2.jpg

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