A neoplasm with FIP1L1-PDGFRA fusion presenting as pediatric T-cell lymphoblastic leukemia/lymphoma without eosinophilia

被引:7
作者
Oberley, Matthew J. [1 ]
Denton, Christopher [2 ]
Ji, Jianling [1 ]
Hiemenz, Matthew [1 ]
Bhojwani, Deepa [2 ]
Ostrow, Dejerianne [1 ]
Wu, Samuel [1 ]
Gaynon, Paul [2 ]
Raca, Gordana [1 ]
机构
[1] Childrens Hosp Los Angeles, Dept Pathol & Lab Med, Los Angeles, CA 90027 USA
[2] Childrens Hosp Los Angeles, Childrens Ctr Canc & Blood Dis, Los Angeles, CA 90027 USA
关键词
FIP1L1-PDGFRA; T-lymphoblastic leukemia/lymphoma; chromosomal microarray; oncology panel; pediatric cancer testing; GASTROINTESTINAL STROMAL TUMORS; IDIOPATHIC HYPEREOSINOPHILIC SYNDROME; MYELOID NEOPLASMS; ACUTE-LEUKEMIA; PDGFRA; CHILDHOOD; IMATINIB; GENE; REARRANGEMENT; SORAFENIB;
D O I
10.1016/j.cancergen.2017.07.007
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The 2016 World Health Organization (2016 WHO) classification of hematopoietic malignancies classifies neoplasms with a fusion between the FIP1L1 and PDGFRA genes in 4q12 into a group called "myeloid and lymphoid neoplasms with eosinophilia and abnormalities of PDGFRA, PDGFRB or FGFR1 or with PCM1-JAK2'. Neoplasms characterized by this fusion are pluripotent stem cell disorders that can show both myeloid and lymphoid differentiation. They typically occur in adult patients and most are characterized by eosinophilia. We describe identification of a FIP1L1-PDGFRA fusion in a 13-year-old boy who presented with T-lymphoblastic leukemia/lymphoma without eosinophilia. Detection of FIP1L1-PDGFRA driven neoplasms at diagnosis is usually critical for proper treatment, since almost all reported cases responded to tyrosine kinase inhibitors. However, our patient's leukemia was refractory to standard chemotherapy, and did not show a meaningful response to tyrosine kinase inhibitor therapy. Testing for a FIP1L1-PDGFRA rearrangement is at present limited to patients with idiopathic hypereosinophilia, and we hypothesize that this abnormality may be under-diagnosed in children with acute leukemias.
引用
收藏
页码:91 / 99
页数:9
相关论文
共 28 条
[1]   INTERSTITIAL 9Q-DELETION IN T-LYMPHOID MYELOID BIPHENOTYPIC LEUKEMIA [J].
AKASHI, K ;
SHIBUYA, T ;
HARADA, M ;
OOGAMI, A ;
TESHIMA, T ;
TAKAMATSU, Y ;
KIKUCHI, M ;
NIHO, Y .
BRITISH JOURNAL OF HAEMATOLOGY, 1992, 80 (02) :172-177
[2]  
[Anonymous], J CLIN ONCOL S
[3]   The 2016 revision to the World Health Organization classification of myeloid neoplasms and acute leukemia [J].
Arber, Daniel A. ;
Orazi, Attilio ;
Hasserjian, Robert ;
Thiele, Jurgen ;
Borowitz, Michael J. ;
Le Beau, Michelle M. ;
Bloomfield, Clara D. ;
Cazzola, Mario ;
Vardiman, James W. .
BLOOD, 2016, 127 (20) :2391-2405
[4]   Myeloid and lymphoid neoplasms with eosinophilia and abnormalities of PDGFRA, PDGFRB or FGFR1 [J].
Bain, Barbara J. .
HAEMATOLOGICA-THE HEMATOLOGY JOURNAL, 2010, 95 (05) :696-698
[5]   Gastrointestinal stromal tumours: ESMO Clinical Practice Guidelines for diagnosis, treatment and follow-up [J].
Casali, Paolo G. ;
Blay, Jean-Yves ;
Bertuzzi, Alexia ;
Bielack, Stefan ;
Bjerkehagen, Bodil ;
Bonvalot, Sylvie ;
Boukovinas, Ioannis ;
Bruzzi, Paolo ;
Dei Tos, Angelo Paolo ;
Dileo, Palma ;
Eriksson, Mikael ;
Fedenko, Alexander ;
Ferrari, Andrea ;
Ferrari, Stefano ;
Gelderblom, Hans ;
Grimer, Robert ;
Gronchi, Alessandro ;
Haas, Rick ;
Hall, Kirsten Sundby ;
Hohenberger, Peter ;
Issels, Rolf ;
Joensuu, Heikki ;
Judson, Ian ;
Le Cesne, Axel ;
Litiere, Saskia ;
Martin-Broto, Javier ;
Merimsky, Ofer ;
Montemurro, Michael ;
Morosi, Carlo ;
Picci, Piero ;
Ray-Coquard, Isabelle ;
Reichardt, Peter ;
Rutkowski, Piotr ;
Schlemmer, Marcus ;
Stacchiotti, Silvia ;
Torri, Valter ;
Trama, Annalisa ;
Van Coevorden, Frits ;
Van der Graaf, Winette ;
Vanel, Daniel ;
Wardelmann, Eva .
ANNALS OF ONCOLOGY, 2014, 25 :21-26
[6]   Clinical significance of HOX11L2 expression linked to t(5;14)(q35;q32), of HOX11 expression, and of SIL-TAL fusion in childhood T-cell malignancies:: results of EORTC studies 58881 and 58951 [J].
Cavé, H ;
Suciu, S ;
Preudhomme, C ;
Poppe, B ;
Robert, A ;
Uyttebroeck, A ;
Malet, M ;
Boutard, P ;
Benoit, Y ;
Mauvieux, L ;
Lutz, P ;
Méchinaud, F ;
Grardel, N ;
Mazingue, F ;
Dupont, M ;
Margueritte, G ;
Pages, MP ;
Bertrand, Y ;
Plouvier, E ;
Brunie, G ;
Bastard, C ;
Plantaz, D ;
Velde, IV ;
Hagemeijer, A ;
Speleman, F ;
Lessard, M ;
Otten, J ;
Vilmer, E ;
Dastugue, N .
BLOOD, 2004, 103 (02) :442-450
[7]   A tyrosine kinase created by fusion of the PDGFRA and FIP1L1 genes as a therapeutic target of imatinib in idiopathic hypereosinophilic syndrome [J].
Cools, J ;
DeAngelo, DJ ;
Gotlib, J ;
Stover, EH ;
Legare, RD ;
Cortes, J ;
Kutok, J ;
Clark, J ;
Galinsky, I ;
Griffin, JD ;
Cross, NCP ;
Tefferi, A ;
Malone, J ;
Alam, R ;
Schrier, SL ;
Schmid, J ;
Rose, M ;
Vandenberghe, P ;
Verhoef, G ;
Boogaerts, M ;
Wlodarska, I ;
Kantarjian, H ;
Marynen, P ;
Coutre, SE ;
Stone, R ;
Gilliland, DG .
NEW ENGLAND JOURNAL OF MEDICINE, 2003, 348 (13) :1201-1214
[8]   Biology of gastrointestinal stromal tumors [J].
Corless, CL ;
Fletcher, JA ;
Heinrich, MC .
JOURNAL OF CLINICAL ONCOLOGY, 2004, 22 (18) :3813-3825
[9]   Clinical features and outcome of SIL/TAL1-positive T-cell acute lymphoblastic leukemia in children and adolescents: a 10-year experience of the AIEOP group [J].
D'Angio, Mariella ;
Valsecchi, Maria G. ;
Testi, Anna M. ;
Conter, Valentino ;
Nunes, Vittorio ;
Parasole, Rosanna ;
Colombini, Antonella ;
Santoro, Nicola ;
Varotto, Stefania ;
Caniglia, Maurizio ;
Silvestri, Daniela ;
Consarino, Caterina ;
Levati, Laura ;
Magrin, Elisa ;
Locatelli, Franco ;
Basso, Giuseppe ;
Foa, Robin ;
Biondi, Andrea ;
Cazzaniga, Gianni .
HAEMATOLOGICA, 2015, 100 (01) :E10-E13
[10]   FIP1L1-PDGFRα-Positive Hypereosinophilic Syndrome in Childhood: A Case Report and Review of Literature [J].
Farruggia, Piero ;
Giugliano, Emilia ;
Russo, Delia ;
Trizzino, Angela ;
Lorenzatti, Roberta ;
Santoro, Alessandra ;
D'Angelo, Paolo .
JOURNAL OF PEDIATRIC HEMATOLOGY ONCOLOGY, 2014, 36 (01) :E28-E30