Rapid molecular profiling utilising minimal quantities of endobronchial ultrasound-guided aspirates for the detection of Epidermal Growth Factor Receptor, KRAS, ALK, ROS1, RET, NTRK and MET gene alterations from patients with non-small-cell lung carcinomas on the Biocartis Idylla™ platform

IF 1.2 4区 医学 Q4 CELL BIOLOGY Cytopathology Pub Date : 2024-05-30 DOI:10.1111/cyt.13406
Alexander Haragan, Robert Lee
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Abstract

Objectives

Comprehensive molecular analysis for patients with non-small-cell lung carcinoma (NSCLC) is essential for managing modern targeted therapies. This study sought to establish the feasibility of utilising real-time PCR to perform rapid and comprehensive profiling on minimal amounts of endobronchial ultrasound-guided (EBUS) aspirates as a fast, tissue-sparing route of predictive profiling.

Methods

A volume of 500 μL of EBUS aspirate and fixative from patients with NSCLC was decanted, and 80 μL (<1% of total specimen received) was utilised for analysis. Biocartis Idylla™ cartridges for epidermal growth factor receptor (EGFR) mutations, KRAS mutations and a GeneFusion cartridge (ALK, ROS1, RET, NTRK1/2/3 rearrangements & MET 14 exon skipping) were analysed for each case to provide molecular data on the main clinically relevant targets as per UK guidelines.

Results

A total of 62 cases were included; all of which had successful DNA analysis (EGFR and KRAS cartridges). RNA analysis (GeneFusion cartridge) was successful for 42 of 51 (82%) with initial approach, with 11 of 11 (100%) achieving a successful result with modified protocol. In all, 23 KRAS mutations (37%), 5 EGFR mutations (8%) and 1 ROS fusion (2%) were identified. Average time from specimen receipt to molecular read-out was 5 h.

Conclusion

Real-time PCR utilising the Idylla™ platform is rapid, utilises minimal amounts of tissue and provides accurate results. We propose this is a useful ancillary method to utilise alongside next-generation sequencing (NGS) in cases of urgent clinical requirement or EBUS aspirates with inadequate quantities of tissue for NGS.

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在 Biocartis Idylla™ 平台上,利用极少量的支气管内超声引导抽吸物进行快速分子谱分析,检测非小细胞肺癌患者的表皮生长因子受体、KRAS、ALK、ROS1、RET、NTRK 和 MET 基因改变。
目标:对非小细胞肺癌(NSCLC)患者进行全面的分子分析对于管理现代靶向疗法至关重要。本研究试图确定利用实时 PCR 对极少量的支气管内超声引导(EBUS)吸出物进行快速、全面分析的可行性,以此作为一种快速、不损伤组织的预测性分析途径:方法:从 NSCLC 患者的 EBUS 吸出液和固定液中倾析出 500 μL 和 80 μL (结果:共纳入 62 个病例;所有病例均成功进行了 DNA 分析(表皮生长因子受体和 KRAS 试剂盒)。采用初始方法时,51 例中有 42 例(82%)成功进行了 RNA 分析(GeneFusion 试剂盒),采用修改方案时,11 例中有 11 例(100%)取得了成功。总共鉴定出 23 例 KRAS 突变(37%)、5 例 EGFR 突变(8%)和 1 例 ROS 融合(2%)。从标本接收到分子读出的平均时间为 5 小时:结论:利用 Idylla™ 平台进行实时 PCR 分析非常快速,只需使用极少量的组织,并能提供准确的结果。我们认为这是一种有用的辅助方法,可与下一代测序(NGS)一起用于临床急需或 EBUS 抽吸组织量不足以进行 NGS 的病例。
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来源期刊
Cytopathology
Cytopathology 生物-病理学
CiteScore
2.30
自引率
15.40%
发文量
107
审稿时长
6-12 weeks
期刊介绍: The aim of Cytopathology is to publish articles relating to those aspects of cytology which will increase our knowledge and understanding of the aetiology, diagnosis and management of human disease. It contains original articles and critical reviews on all aspects of clinical cytology in its broadest sense, including: gynaecological and non-gynaecological cytology; fine needle aspiration and screening strategy. Cytopathology welcomes papers and articles on: ultrastructural, histochemical and immunocytochemical studies of the cell; quantitative cytology and DNA hybridization as applied to cytological material.
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