{"id":605556,"date":"2024-06-03T20:00:00","date_gmt":"2024-06-04T00:00:00","guid":{"rendered":"https:\/\/platohealth.ai\/prognostic-factors-impacting-post-transplant-outcomes-in-adult-t-cell-acute-lymphoblastic-leukemia-a-registry-based-study-by-the-ebmt-acute-leukemia-working-party-bone-marrow-transplantation\/"},"modified":"2024-06-04T11:48:57","modified_gmt":"2024-06-04T15:48:57","slug":"prognostic-factors-impacting-post-transplant-outcomes-in-adult-t-cell-acute-lymphoblastic-leukemia-a-registry-based-study-by-the-ebmt-acute-leukemia-working-party-bone-marrow-transplantation","status":"publish","type":"post","link":"https:\/\/platohealth.ai\/prognostic-factors-impacting-post-transplant-outcomes-in-adult-t-cell-acute-lymphoblastic-leukemia-a-registry-based-study-by-the-ebmt-acute-leukemia-working-party-bone-marrow-transplantation\/","title":{"rendered":"Prognostic factors impacting post-transplant outcomes in adult T-cell acute lymphoblastic leukemia: a registry-based study by the EBMT acute leukemia working party – Bone Marrow Transplantation","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"
<\/div>\n
  • \n

    Raetz EA, Teachey DT. T-cell acute lymphoblastic leukemia. Hematol Am Soc Hematol Educ Program. 2016;2016:580\u20138.<\/p>\n

    Article<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Chiaretti S, Zini G, Bassan R. Diagnosis and subclassification of acute lymphoblastic leukemia. Mediterr J Hematol Infect Dis. 2014;6:e2014073.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Westbrook CA. Molecular subsets and prognostic factors in acute lymphoblastic leukemia. Leukemia 1997;11:S8\u201310.<\/p>\n

    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Novel immunotherapies for adult patients with B-lineage acute lymphoblastic leukemia – PubMed [Internet]. [cited 2023 May 27]. Available from: https:\/\/pubmed.ncbi.nlm.nih.gov\/28821272\/<\/a><\/p>\n<\/li>\n

  • \n

    Trinquand A, Tanguy-Schmidt A, Ben Abdelali R, Lambert J, Beldjord K, Lenglin\u00e9 E, et al. Toward a NOTCH1\/FBXW7\/RAS\/PTEN-based oncogenetic risk classification of adult T-cell acute lymphoblastic leukemia: a Group for Research in Adult Acute Lymphoblastic Leukemia study. J Clin Oncol J Am Soc Clin Oncol. 2013;31:4333\u201342.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Bond J, Graux C, Lhermitte L, Lara D, Cluzeau T, Leguay T, et al. Early response-based therapy stratification improves survival in adult early thymic precursor acute lymphoblastic leukemia: a group for research on adult acute lymphoblastic leukemia study. J Clin Oncol Off J Am Soc Clin Oncol. 2017;35:2683\u201391.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Short NJ, Kantarjian H, Jabbour E. Optimizing the treatment of acute lymphoblastic leukemia in younger and older adults: new drugs and evolving paradigms. Leukemia 2021;35:3044\u201358.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Soci\u00e9 G, Stone JV, Wingard JR, Weisdorf D, Henslee-Downey PJ, Bredeson C, et al. Long- term survival and late deaths after allogeneic bone marrow transplantation. Late Effects Working Committee of the International Bone Marrow Transplant Registry. N Engl J Med. 1999;341:14\u201321.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Bazarbachi A, Boumendil A, Finel H, Castagna L, Dominietto A, Blaise D, et al. Influence of donor type, stem cell source and conditioning on outcomes after haploidentical transplant for lymphoma – a LWP-EBMT study. Br J Haematol. 2020;188:745\u201356.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    El-Cheikh J, El Dika I, Massoud R, Charafeddine M, Mahfouz R, Kharfan-Dabaja MA, et al. Hyper-CVAD compared with BFM-like chemotherapy for the treatment of adult acute lymphoblastic leukemia. a retrospective single-center analysis. Clin Lymphoma Myeloma Leuk. 2017;17:179\u201385.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Uzunel M, Mattsson J, Jaksch M, Remberger M, Ringd\u00e9n O. The significance of graft- versus-host disease and pretransplantation minimal residual disease status to outcome after allogeneic stem cell transplantation in patients with acute lymphoblastic leukemia. Blood. 2001;98:1982\u20134.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Champlin R, Gale RP. Acute lymphoblastic leukemia: recent advances in biology and therapy. Blood. 1989;73:2051\u201366.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Lee S, Kim D-W, Cho B, Kim Y-J, Kim Y-L, Hwang J-Y, et al. Risk factors for adults with Philadelphia-chromosome-positive acute lymphoblastic leukaemia in remission treated with allogeneic bone marrow transplantation: the potential of real-time quantitative reverse- transcription polymerase chain reaction. Br J Haematol. 2003;120:145\u201353.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Hefazi M, Litzow MR. Recent advances in the biology and treatment of B-cell acute lymphoblastic leukemia. Blood Lymphat Cancer Targets Ther. 2018;8:47\u201361.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Fracchiolla NS, Scium\u00e8 M, Papayannidis C, Vitale A, Chiaretti S, Annunziata M, et al. Blinatumomab and inotuzumab ozogamicin sequential use for the treatment of relapsed\/refractory acute lymphoblastic leukemia: a real-life campus all study. Cancers. 2023;15:4623.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Malczewska M, Ko\u015bmider K, Bednarz K, Ostapi\u0144ska K, Lejman M, Zawitkowska J. Recent advances in treatment options for childhood acute lymphoblastic leukemia. Cancers 2022;14:2021.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Leong S, Inglott S, Papaleonidopoulou F, Orfinada K, Ancliff P, Bartram J, et al. CD1a is rarely expressed in pediatric or adult relapsed\/refractory T-ALL: implications for immunotherapy. Blood Adv. 2020;4:4665\u20138.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Sun W, Huang X. Role of allogeneic haematopoietic stem cell transplantation in the treatment of adult acute lymphoblastic leukaemia in the era of immunotherapy. Chin Med J (Engl). 2022;135:890\u2013900.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Corv\u00f2 R, Lamparelli T, Bruno B, Barra S, Van Lint MT, Vitale V, et al. Low-dose fractionated total body irradiation (TBI) adversely affects prognosis of patients with leukemia receiving an HLA-matched allogeneic bone marrow transplant from an unrelated donor (UD- BMT). Bone Marrow Transpl. 2002;30:717\u201323.<\/p>\n

    Article<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Giebel S, Miszczyk L, Slosarek K, Moukhtari L, Ciceri F, Esteve J, et al. Extreme heterogeneity of myeloablative total body irradiation techniques in clinical practice: a survey of the Acute Leukemia Working Party of the European Group for Blood and Marrow Transplantation. Cancer. 2014;120:2760\u20135.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Belkacemi Y, Labopin M, Giebel S, Loganadane G, Miszczyk L, Michallet M, et al. Single-dose daily fractionation is not inferior to twice-a-day fractionated total-body irradiation before allogeneic stem cell transplantation for acute leukemia: a useful practice simplification resulting from the SARASIN study. Int J Radiat Oncol Biol Phys. 2018;102:515\u201326.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Gao RW, Weisdorf DJ, DeFor TE, Ehler E, Dusenbery KE. Influence of total body irradiation dose rate on idiopathic pneumonia syndrome in acute leukemia patients undergoing allogeneic hematopoietic cell transplantation. Int J Radiat Oncol Biol Phys. 2019;103:180\u20139.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Nagler A, Dholaria B, Labopin M, Savani BN, Angelucci E, Koc Y, et al. Bone marrow versus mobilized peripheral blood stem cell graft in T-cell-replete haploidentical transplantation in acute lymphoblastic leukemia. Leukemia. 2020;34:2766\u201375.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Baron F, Mohty M, Blaise D, Soci\u00e9 G, Labopin M, Esteve J, et al. Anti-thymocyte globulin as graft-versus-host disease prevention in the setting of allogeneic peripheral blood stem cell transplantation: a review from the Acute Leukemia Working Party of the European Society for Blood and Marrow Transplantation. Haematologica. 2017;102:224\u201334.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Li S-Q, Fan Q-Z, Xu L-P, Wang Y, Zhang X-H, Chen H, et al. Different effects of pre- transplantation measurable residual disease on outcomes according to transplant modality in patients with philadelphia chromosome positive ALL. Front Oncol. 2020;10:320.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Giebel S, Labopin M, Czerw T, Soci\u00e9 G, Blaise D, Ghavamzadeh A, et al. Impact of anti- thymocyte globulin on results of allogeneic peripheral blood stem cell transplantation for patients with Philadelphia-positive acute lymphoblastic leukaemia: an analysis by the Acute Leukemia Working Party of the EBMT. Eur J Cancer. 2019;106:212\u20139.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Czerw T, Labopin M, Giebel S, Soci\u00e9 G, Volin L, Fegueux N, et al. Anti-thymocyte globulin improves survival free from relapse and graft-versus-host disease after allogeneic peripheral blood stem cell transplantation in patients with Philadelphia-negative acute lymphoblastic leukemia: An analysis by the Acute Leukemia Working Party of the EBMT. Cancer. 2018;124:2523\u201333.<\/p>\n

    Article<\/a> 
    \n
    CAS<\/a> 
    \n
    PubMed<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n

  • \n

    Giebel S, Labopin M, Soci\u00e9 G, Beelen D, Browne P, Volin L, et al. Improving results of allogeneic hematopoietic cell transplantation for adults with acute lymphoblastic leukemia in first complete remission: an analysis from the Acute Leukemia Working Party of the European Society for Blood and Marrow Transplantation. Haematologica. 2017;102:139\u201349.<\/p>\n

    Article<\/a> 
    \n
    PubMed<\/a> 
    \n
    PubMed Central<\/a> 
    \n

    \n Google Scholar<\/a> \n <\/p>\n<\/li>\n