PO.ET06.04 · 实验与分子治疗
与杂交捕获DNA-NGS相比,基于扩增子的DNA和RNA NGS联合检测在中国实体瘤中对NTRK融合具有更优的检出能力
Superior detection of NTRK fusions across Chinese solid tumors using amplicon-based DNA and RNA NGS co-detection compared with hybrid-capture DNA-NGS
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摘要 Abstract
中文摘要
背景:NTRK融合是许多实体瘤中具有临床可操作性的驱动因素,已有多种不限癌种的靶向疗法获批。传统的基于DNA的检测方法对NTRK重排的敏感性往往不足。尽管RNA-NGS可提高融合检测能力,但基于扩增子的DNA+RNA NGS联合检测与杂交捕获DNA-NGS在泛实体瘤中识别NTRK融合的相对性能仍不明确。
方法:本研究采用35基因、基于扩增子的DNA+RNA NGS联合检测分析了16,546例肿瘤,并采用杂交捕获DNA-NGS分析了4,709例肿瘤中的NTRK融合检测情况。肿瘤类型包括BRCA、COAD、HNSC、黑色素瘤、NSCLC、PAAD、SARC、THCA、BTC和STAD。具体而言,联合检测队列由BRCA(27)、COAD(3,839)、HNSC(39)、黑色素瘤(111)、NSCLC(11,242)、PAAD(89)、SARC(61)、THCA(62)、BTC(310)和STAD(766)组成,而DNA-NGS队列包括BRCA(126)、COAD(857)、HNSC(79)、黑色素瘤(42)、NSCLC(2,504)、PAAD(184)、SARC(67)、THCA(62)、BTC(398)和STAD(446)。
结果:基于扩增子的DNA+RNA NGS联合检测在多种实体瘤中显示出更高的NTRK融合阳性率,包括BRCA(2/27,7.41%)、COAD(7/3,839,0.19%)、HNSC(1/39,2.56%)、黑色素瘤(1/111,0.90%)、NSCLC(18/11,242,0.16%)、PAAD(2/89,2.25%)、SARC(1/61,1.64%)和THCA(1/62,1.61%),而在BTC或STAD中未检测到NTRK融合。基于扩增子的DNA+RNA NGS检测到的全部33个融合均为经典的5′-3′事件,主要融合伙伴包括TPM3-NTRK1(42.42%)、SQSTM1-NTRK3(12.12%)、CD74-NTRK1(9.09%),以及几种罕见形式,涉及LMNA-NTRK1(3.03%)、KIF5B-NTRK2(3.03%)、ETV6-NTRK3(21.21%)、AKAP13-NTRK3(3.03%)、CD74-NTRK3(3.03%)、EML4-NTRK3(3.03%)。相比之下,杂交捕获DNA-NGS在相同肿瘤类型中检出率总体较低,仅在COAD(1/857,0.12%)、NSCLC(4/2,504,0.16%)、BTC(1/398,0.25%,NTRK1)和STAD(1/446,0.22%)中识别出零星的NTRK阳性病例,而在BRCA、HNSC、黑色素瘤、PAAD、SARC或THCA中未检出。在杂交捕获DNA-NGS检测到的融合中,除一例外均为经典的5′-3′重排;一例NSCLC携带非经典的5′-5′ ETV6-NTRK3融合。该方法检测到的融合伙伴包括PIGR-NTRK1、NTRK1-RHBG、NTRK1-HAPLN2、NTRK1-S100A12、NTRK2-TMPRSS2和ETV6-NTRK3。总体而言,联合检测展现出明显更广泛的融合谱和显著提高的敏感性,尤其是在BRCA、COAD、HNSC和PAAD中。
结论:基于扩增子的DNA+RNA NGS在敏感性和融合伙伴广度方面均优于杂交捕获DNA-NGS,凸显了RNA分析在NTRK指导的不限癌种治疗常规检测中的重要性。
查看英文原文 English abstract
Background: NTRK fusions are clinically actionable drivers across many solid tumors, with several tumor-agnostic targeted therapies approved. Traditional DNA-based assays often lack sensitivity for NTRK rearrangements. Although RNA-NGS improves fusion detection, the relative performance of amplicon-based DNA+RNA NGS co-detection versus hybrid-capture DNA-NGS for identifying NTRK fusions in pan-solid tumors remains unclear.
Methods: This study analyzed NTRK fusion detection across 16,546 tumors using a 35-gene amplicon-based DNA+RNA NGS co-detection and 4,709 tumors using hybrid-capture DNA-NGS. Tumor types included BRCA, COAD, HNSC, melanoma, NSCLC, PAAD, SARC, THCA, BTC, and STAD. Specifically, the co-detection cohort consisted of BRCA (27), COAD (3,839), HNSC (39), melanoma (111), NSCLC (11,242), PAAD (89), SARC (61), THCA (62), BTC (310), and STAD (766), whereas the DNA-NGS cohort included BRCA (126), COAD (857), HNSC (79), melanoma (42), NSCLC (2,504), PAAD (184), SARC (67), THCA (62), BTC (398), and STAD (446).
Results: Amplicon-based DNA+RNA NGS co-detection demonstrated higher NTRK fusion positivity across multiple solid tumors, including BRCA (2/27, 7.41%), COAD (7/3,839, 0.19%), HNSC (1/39, 2.56%), melanoma (1/111, 0.90%), NSCLC (18/11,242, 0.16%), PAAD (2/89, 2.25%), SARC (1/61, 1.64%), and THCA (1/62, 1.61%), with no NTRK fusions detected in BTC or STAD. All 33 fusions detected by Amplicon-based DNA+RNA NGS were classical 5′-3′ events, with predominant fusion partners including TPM3-NTRK1(42.42%), SQSTM1-NTRK3(12.12%), CD74-NTRK1(9.09%), and several rare forms involving LMNA-NTRK1(3.03%), KIF5B-NTRK2(3.03%), ETV6-NTRK3(21.21%), AKAP13-NTRK3(3.03%), CD74-NTRK3(3.03%), EML4-NTRK3(3.03%). In contrast, hybrid-capture DNA-NGS showed generally lower detection rates across the same tumor types, identifying only sporadic NTRK-positive cases in COAD (1/857, 0.12%), NSCLC (4/2,504, 0.16%), BTC (1/398, 0.25%, NTRK1), and STAD (1/446, 0.22%), and none in BRCA, HNSC, melanoma, PAAD, SARC, or THCA. Among the fusions detected by hybrid-capture DNA-NGS, all but one were classical 5′-3′ rearrangements; a single NSCLC case harbored a non-canonical 5′-5′ ETV6-NTRK3 fusion. Fusion partners detected by this method included PIGR-NTRK1, NTRK1-RHBG, NTRK1-HAPLN2, NTRK1-S100A12, NTRK2-TMPRSS2, and ETV6-NTRK3. Collectively, co-detection demonstrated a markedly broader fusion spectrum and substantially improved sensitivity, particularly in BRCA, COAD, HNSC, and PAAD.
Conclusion: Amplicon-based DNA+RNA NGS outperformed hybrid-capture DNA-NGS in sensitivity and fusion-partner breadth, highlighting the importance of RNA analysis in routine testing for NTRK-guided tumor-agnostic therapy.
利益披露 Disclosure
M. Lu, None.