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快速且高灵敏度的多重体细胞融合检测方法。

Rapid and highly sensitive approach for multiplexed somatic fusion detection.

机构信息

Dana-Farber/Boston Children's Cancer and Blood Disorders Center, Boston, MA, USA.

Gustave Roussy Cancer Campus, Department of Pediatric and Adolescent Oncology, INSERM U1015, Université Paris-Saclay, Villejuif, France.

出版信息

Mod Pathol. 2022 Aug;35(8):1022-1033. doi: 10.1038/s41379-022-01058-y. Epub 2022 Mar 28.

Abstract

Somatic gene translocations are key to making an accurate diagnosis in many cancers including many pediatric sarcomas. Currently available molecular diagnostic approaches to identifying somatic pathognomonic translocations have limitations such as minimal multiplexing, high cost, complex computational requirements, or slow turnaround times. We sought to develop a new fusion-detection assay optimized to mitigate these challenges. To accomplish this goal, we developed a highly sensitive multiplexed digital PCR-based approach that can identify the gene partners of multiple somatic fusion transcripts. This assay was validated for specificity with cell lines and synthetized DNA fragments. Assay sensitivity was optimized using a tiered amplification approach for fusion detection from low input and/or degraded RNA. The assay was then tested for the potential application of fusion detection from FFPE tissue and liquid biopsy samples. We found that this multiplexed PCR approach was able to accurately identify the presence of seven different targeted fusion transcripts with a turnaround time of 1 to 2 days. The addition of a tiered amplification step allowed the detection of targeted fusions from as little as 1 pg of RNA input. We also identified fusions from as little as two unstained slides of FFPE tumor biopsy tissue, from circulating tumor cells collected from tumor-bearing mice, and from liquid biopsy samples from patients with known fusion-positive cancers. We also demonstrated that the assay could be easily adapted for additional fusion targets. In summary, this novel assay detects multiple somatic fusion partners in biologic samples with low tumor content and low-quality RNA in less than two days. The assay is inexpensive and could be applied to surgical and liquid biopsies, particularly in places with inadequate resources for more expensive and expertise-dependent assays such as next-generation sequencing.

摘要

体细胞基因易位是许多癌症(包括许多儿科肉瘤)进行准确诊断的关键。目前,用于识别体细胞标志性易位的分子诊断方法存在一些局限性,如多重检测能力有限、成本高、计算要求复杂或周转时间长。我们试图开发一种新的融合检测方法,以优化这些挑战。为了实现这一目标,我们开发了一种高度敏感的基于多重数字 PCR 的方法,可以识别多个体细胞融合转录本的基因伙伴。该方法使用细胞系和合成 DNA 片段进行了特异性验证。通过融合检测的分层扩增方法优化了检测灵敏度,可用于从低输入和/或降解 RNA 中进行融合检测。然后,该方法用于从 FFPE 组织和液体活检样本中检测融合的潜在应用。我们发现,这种多重 PCR 方法能够准确识别七种不同靶向融合转录本的存在,周转时间为 1 至 2 天。添加分层扩增步骤可使靶向融合物的检测灵敏度达到 1pg RNA 输入量。我们还从载瘤小鼠循环肿瘤细胞和已知融合阳性癌症患者的液体活检样本中检测到了融合。我们还证明该方法可以轻松适应更多的融合靶标。总之,该新型检测方法可以在不到两天的时间内,在低肿瘤含量和低质量 RNA 的生物样本中检测到多个体细胞融合伙伴。该检测方法价格低廉,可用于手术和液体活检,尤其适用于资源不足和更昂贵且依赖专业知识的检测方法(如下一代测序)的地方。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7c7/9314249/0685bcb379ce/41379_2022_1058_Fig1_HTML.jpg

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