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用于高通量、多重单核苷酸多态性基因分型的悬浮阵列

Suspension arrays for high throughput, multiplexed single nucleotide polymorphism genotyping.

作者信息

Armstrong B, Stewart M, Mazumder A

机构信息

Axys Pharmaceuticals, La Jolla, CA, USA.

出版信息

Cytometry. 2000 Jun 1;40(2):102-8.

Abstract

BACKGROUND

Genetic diversity can help explain disease susceptibility and differential drug response. The most common type of variant is the single nucleotide polymorphism (SNP). We present a low-cost, high throughput assay for SNP genotyping.

METHODS

The assay uses oligonucleotide probes covalently attached to fluorescently encoded microspheres. These probes are hybridized directly to fluorescently labeled polymerase chain reaction (PCR) products and the results are analyzed in a standard flow cytometer.

RESULTS

The genotypes determined with our assay are in good agreement with those determined by TaqMan. The range of G/C content for oligonucleotide probes was 23.5-65% in the 17 bases surrounding the SNP. Further optimization of probe length and target concentration is shown to dramatically enhance the assay performance for certain SNPs. Using microspheres which have unique fluorescent signatures, we performed a 32-plex assay where we simultaneously determined the genotypes of eight different polymorphic genes.

CONCLUSIONS

We demonstrate, for the first time, the feasibility of multiplexed genotyping with suspension arrays using direct hybridization analyses. Our approach enables probes to be removed from or added to an array, enhancing flexibility over conventional chips. The ability to multiplex both the PCR preparation and the hybridization should enhance the throughput, cost, and speed of the assay.

摘要

背景

基因多样性有助于解释疾病易感性和药物反应差异。最常见的变异类型是单核苷酸多态性(SNP)。我们提出了一种用于SNP基因分型的低成本、高通量检测方法。

方法

该检测方法使用共价连接到荧光编码微球上的寡核苷酸探针。这些探针直接与荧光标记的聚合酶链反应(PCR)产物杂交,并在标准流式细胞仪中分析结果。

结果

我们的检测方法所确定的基因型与TaqMan检测法所确定的基因型高度一致。在SNP周围的17个碱基中,寡核苷酸探针的G/C含量范围为23.5%至65%。对于某些SNP,进一步优化探针长度和靶标浓度可显著提高检测性能。使用具有独特荧光标记的微球,我们进行了一次32重检测,同时确定了八个不同多态性基因的基因型。

结论

我们首次证明了使用直接杂交分析的悬浮阵列进行多重基因分型的可行性。我们的方法能够从阵列中移除或添加探针,比传统芯片具有更高的灵活性。在PCR制备和杂交过程中进行多重检测的能力应可提高检测的通量、成本和速度。

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