Real-life targeted next-generation sequencing for lymphoma diagnosis over 1 year from the French Lymphoma Network

被引:11
|
作者
Bommier, Come [1 ,2 ,3 ]
Mauduit, Claire [1 ,4 ,5 ]
Fontaine, Juliette [1 ,4 ]
Bourbon, Estelle [1 ,4 ]
Sujobert, Pierre [4 ]
Huet, Sarah [4 ,6 ]
Baseggio, Lucile [4 ,6 ]
Hayette, Sandrine [4 ,6 ]
Laurent, Camille [7 ]
Bachy, Emmanuel [4 ,8 ]
Ghesquieres, Herve [4 ,8 ]
Thieblemont, Catherine [2 ]
Salles, Gilles [4 ,8 ]
Traverse-Glehen, Alexandra [1 ,4 ]
机构
[1] Ctr Hosp Lyon Sud, Hosp Civils Lyon, Dept Pathol, Pierre Benite, France
[2] Hop St Louis, AP HP, Haematooncol Dept, 1 Av Claude Vellefaux, F-75110 Paris, France
[3] Univ Paris 05, Univ Paris, Paris, France
[4] Univ Claude Bernard Lyon 1, Oullins, France
[5] Inserm U1065, Control Gene Express C3M, Nice, France
[6] Hop Lyon Sud, Serv Hematol Biol, Hosp Civils Lyon, Pierre Benite, France
[7] Ctr Hosp Toulouse, Inst Univ Canc Oncopole, Dept Pathol, Toulouse, France
[8] CHU Lyon Sud, Hosp Civils Lyon, Dept Haematol, Pierre Benite, France
关键词
diagnosis; lymphoma; molecular biology; next‐ generation sequencing; pathology;
D O I
10.1111/bjh.17395
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
As the impact of targeted next-generation sequencing (TNGS) on daily diagnosis has not been evaluated, we performed TNGS (46 genes) on lymphomas of unclear subtype following expert haematopathological review. The potential impact on patient care and modifications of final diagnosis were divided into major and minor changes according to the European Society of Medical Oncology (ESMO) guidelines. Among 229 patients [19 primary central nervous system lymphomas (PCNSL), 48 large B-cell lymphomas (LBCLs), 89 small BCLs (SBCLs), seven Hodgkin lymphomas (HL), 66 T-cell lymphomas], the overall concordance rate of histological and TNGS diagnosis was 89 center dot 5%. TNGS confirmed the histological diagnosis in 144 cases (62 center dot 9%), changed the diagnosis in 24 cases (10 center dot 5%) and did not help to clarify diagnosis in 61 cases (26 center dot 7%). Modifications to the final diagnosis had a clinical impact on patient care in 8 center dot 3% of cases. Diagnostic modifications occurred in all types of lymphoma except in PCNSL and HL; the modification rate was 14 center dot 6% in SBCL and 12 center dot 5% in LBCL. While comparing informative and uninformative cases, no differences were found in terms of DNA amplification, quality or depth of sequencing and biopsy type. The present study highlights that TNGS may directly contribute to a more accurate diagnosis in difficult-to-diagnose lymphomas, thus improving the clinical management in routine practice.
引用
收藏
页码:1110 / 1122
页数:13
相关论文
共 50 条
  • [21] Application of extensively targeted next-generation sequencing for the diagnosis of primary immunodeficiencies
    Kojima, Daiei
    Wang, Xinan
    Muramatsu, Hideki
    Okuno, Yusuke
    Nishio, Nobuhiro
    Hama, Asahito
    Tsuge, Ikuya
    Takahashi, Yoshiyuki
    Kojima, Seiji
    JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2016, 138 (01) : 303 - 305
  • [22] MOLECULAR DIAGNOSIS OF ABNORMALITIES OF HDL CHOLESTEROL BY TARGETED NEXT-GENERATION SEQUENCING
    Sadananda, S.
    Foo, J. N.
    Toh, M. T.
    Francis, G.
    Frohlich, J.
    Khor, C. C.
    Brunham, L.
    ATHEROSCLEROSIS, 2015, 241 (01) : E117 - E117
  • [23] Experience with the targeted next-generation sequencing in the diagnosis of hereditary hypophosphatemic rickets
    Turan, Ihsan
    Erdem, Sevcan
    Kotan, Leman Damla
    Dilek, Semine Ozdemir
    Tastan, Mehmet
    Gurbuz, Fatih
    Bisgin, Atil
    Bayazit, Aysun Karabay
    Topaloglu, Ali Kemal
    Yuksel, Bilgin
    JOURNAL OF PEDIATRIC ENDOCRINOLOGY & METABOLISM, 2021, 34 (05): : 639 - 648
  • [24] Molecular Diagnosis of Infantile Mitochondrial Disease with Targeted Next-Generation Sequencing
    Calvo, Sarah E.
    Compton, Alison G.
    Hershman, Steven G.
    Lim, Sze Chern
    Lieber, Daniel S.
    Tucker, Elena J.
    Laskowski, Adrienne
    Garone, Caterina
    Liu, Shangtao
    Jaffe, David B.
    Christodoulou, John
    Fletcher, Janice M.
    Bruno, Damien L.
    Goldblatt, Jack
    DiMauro, Salvatore
    Thorburn, David R.
    Mootha, Vamsi K.
    SCIENCE TRANSLATIONAL MEDICINE, 2012, 4 (118)
  • [25] Targeted Next-Generation Sequencing of Cell-Free DNA in Diffuse Large B-Cell Lymphoma
    Zhang, Wei
    Xiao, Min
    Zhou, Jianfeng
    Young, Ken H.
    BLOOD, 2018, 132
  • [26] Characterization of Prognostic Molecular Markers in Lymphoma by Multiplex Targeted Next Generation Sequencing
    Chastain, E. C.
    Hussaini, M.
    Pfeifer, E.
    Duncavage, E.
    MODERN PATHOLOGY, 2014, 27 : 341A - 341A
  • [27] Characterization of Prognostic Molecular Markers in Lymphoma by Multiplex Targeted Next Generation Sequencing
    Chastain, E. C.
    Hussaini, M.
    Pfeifer, E.
    Duncavage, E.
    LABORATORY INVESTIGATION, 2014, 94 : 341A - 341A
  • [28] Genomic Mutation Landscape of Primary Breast Lymphoma: Next-Generation Sequencing Analysis
    Zhang, Wenqi
    Huang, Chen
    Liu, Jingjing
    Wu, Lili
    Zhang, Huichao
    Wu, Xiaolin
    Wang, Lianjing
    Li, Weijing
    Liu, Wei
    Liu, Lihong
    DISEASE MARKERS, 2022, 2022
  • [29] Targeted Next-Generation Sequencing from Fine Needle Aspirates
    Karnes, H. E.
    Duncavage, E. J.
    Bernadt, C. T.
    LABORATORY INVESTIGATION, 2013, 93 : 95A - 95A
  • [30] Blocking of targeted microRNAs from next-generation sequencing libraries
    Roberts, Brian S.
    Hardigan, Andrew A.
    Kirby, Marie K.
    Fitz-Gerald, Meredith B.
    Wilcox, C. Mel
    Kimberly, Robert P.
    Myers, Richard M.
    NUCLEIC ACIDS RESEARCH, 2015, 43 (21)