When childhood leukaemia comes back, chemotherapy alone cures fewer than half. Three immune treatments changed this: blinatumomab, which links the child's T-cells to leukaemia cells and beat chemotherapy in two trials; tisagenlecleucel, the first approved CAR T-cell therapy, which put over eight in ten pretreated children into remission; and the antibody-drug conjugate inotuzumab ozogamicin.
Relapse is classified by time from diagnosis, site and response. Early relapse, within 18 months of diagnosis or within six months of finishing treatment, is much harder to cure than late relapse; isolated extramedullary relapse in the central nervous system or testis does better than marrow relapse; and residual disease after the first reinduction block sorts children into those who can be cured with chemotherapy alone and those who need transplant. T-cell ALL relapse carries the worst prognosis. The UK ALLR3 trial in 2010 showed that mitoxantrone in reinduction beat idarubicin, three-year progression-free survival 64.6 percent against 35.9 percent, and mitoxantrone-based reinduction with allogeneic transplant for high-risk relapse became the international standard.
Blinatumomab, a CD19 and CD3 bispecific T-cell engager, was tested against chemotherapy in two randomised trials of first relapse published together in 2021. In COG AALL1331, children with high- and intermediate-risk relapse given blinatumomab instead of two chemotherapy blocks before transplant had two-year disease-free survival of 54.4 percent against 39.0 percent and overall survival of 71.3 percent against 58.4 percent, with more reaching transplant in remission and fewer deaths from infection. In the European IntReALL trial, high-risk first relapse treated with one blinatumomab cycle instead of a third consolidation block had events in 31 percent against 57 percent and residual-disease remission in 90 percent against 54 percent. Tisagenlecleucel, an autologous CD19 CAR T-cell product, produced an overall remission rate of 81 percent within three months in 75 children and young adults with second or later relapse or refractory disease in ELIANA, with event-free survival of 50 percent and overall survival of 76 percent at twelve months; it was approved in August 2017, the first CAR T-cell therapy for any cancer, and long-term follow-up shows durable remissions in a substantial minority without transplant. Inotuzumab ozogamicin, a CD22 antibody-drug conjugate, gave complete remissions in most children in the ITCC-059 and COG AALL1621 studies and was approved for children from the age of one in March 2024.
Sequencing is now the question: antigen loss (CD19-negative relapse after blinatumomab or CAR T-cells, CD22 loss after inotuzumab), lineage switch in KMT2A-rearranged disease and T-cell exhaustion each shape the next choice, and whether to consolidate a CAR T-cell remission with transplant depends on prior therapy and residual disease by next-generation sequencing. Trials are testing blinatumomab and CAR T-cells earlier, in low-risk first relapse and in first-line high-risk therapy, dual CD19 and CD22 CAR T-cells, allogeneic off-the-shelf CAR T-cells, and menin inhibitors for KMT2A-rearranged relapse. Relapsed T-ALL still depends on nelarabine and transplant, with CD7 CAR T-cells and venetoclax combinations in early trials, and access to CAR T-cells outside a handful of countries is the widest gap of all.
Averages across everyone diagnosed, often years ago. A median is the middle of a group: half the people counted lived longer than the figure shown, and some lived far longer. Your stage, subtype, age, fitness and the treatment you receive matter more than the average, and the numbers are improving quickly.
Leukaemias, myeloma and MDS live in the marrow and blood; lymphomas grow in lymph nodes and spleen. The node stations are the disease map, not a route of spread, and staging counts them.
In lymphoma the node stations are the disease itself; staging (Ann Arbor / Lugano) counts how many regions and sides of the diaphragm are involved.
Same organ: High-grade B-cell lymphoma with MYC and BCL2 rearrangements (double-hit lymphoma), Mediastinal grey zone lymphoma, Primary effusion lymphoma, Plasmablastic lymphoma, T-cell/histiocyte-rich large B-cell lymphoma, EBV-positive diffuse large B-cell lymphoma, Primary large B-cell lymphoma of the testis, Gastric MALT lymphoma, Ocular adnexal MALT lymphoma, Extranodal NK/T-cell lymphoma, Adult T-cell leukaemia/lymphoma, ALK-positive anaplastic large cell lymphoma, ALK-negative anaplastic large cell lymphoma, Breast implant-associated anaplastic large cell lymphoma, Primary cutaneous anaplastic large cell lymphoma, Lymphomatoid papulosis, Mycosis fungoides, Enteropathy-associated T-cell lymphoma, Monomorphic epitheliotropic intestinal T-cell lymphoma, Extranodal marginal zone lymphoma of mucosa-associated lymphoid tissue (MALT lymphoma), Splenic marginal zone lymphoma, Nodal marginal zone lymphoma, Primary cutaneous marginal zone lymphoma, Primary cutaneous follicle centre lymphoma, Sezary syndrome, Nodal T-follicular helper cell lymphoma, angioimmunoblastic type (angioimmunoblastic T-cell lymphoma), Hepatosplenic T-cell lymphoma, Intravascular large B-cell lymphoma, Lymphomatoid granulomatosis, T-cell prolymphocytic leukaemia, Splenic B-cell lymphoma/leukaemia with prominent nucleoli (formerly B-cell prolymphocytic leukaemia and hairy cell leukaemia variant), T-cell large granular lymphocytic leukaemia, Mixed-phenotype acute leukaemia, Myeloid leukaemia of Down syndrome, Burkitt leukaemia, Marginal zone lymphoma, Cutaneous T-cell lymphoma (mycosis fungoides and Sezary syndrome), Primary mediastinal (thymic) large B-cell lymphoma, Leukaemia (all types), Acute myeloid leukaemia, Acute lymphoblastic leukaemia, Chronic lymphocytic leukaemia, Chronic myeloid leukaemia (CML), Diffuse large B-cell lymphoma, Follicular lymphoma, Hodgkin lymphoma, Mantle cell lymphoma, Multiple myeloma, Non-Hodgkin lymphoma (all types), Myelodysplastic syndromes / neoplasms (MDS), Myeloproliferative neoplasms (PV, ET, myelofibrosis), Polycythaemia vera (PV), Essential thrombocythaemia (ET), Waldenström macroglobulinaemia, Hairy cell leukaemia, Peripheral T-cell lymphomas (including cutaneous T-cell lymphoma), Blastic plasmacytoid dendritic cell neoplasm (BPDCN), Burkitt lymphoma, HIV-associated (AIDS-related) lymphomas, Chronic myelomonocytic leukaemia and MDS/MPN overlap neoplasms, Systemic mastocytosis, Erdheim-Chester disease, Rosai-Dorfman disease and other histiocytic neoplasms, Langerhans cell histiocytosis (LCH), Post-transplant lymphoproliferative disorder (PTLD), FLT3-mutated acute myeloid leukaemia, IDH1- and IDH2-mutated acute myeloid leukaemia, NPM1-mutated and KMT2A-rearranged acute myeloid leukaemia, Secondary and therapy-related acute myeloid leukaemia, Acute promyelocytic leukaemia, Acute myeloid leukaemia in older or unfit patients, Smouldering multiple myeloma, Newly diagnosed multiple myeloma, transplant-eligible, Newly diagnosed multiple myeloma, transplant-ineligible, Relapsed or refractory multiple myeloma, Plasma cell leukaemia, Lower-risk myelodysplastic syndromes, Higher-risk myelodysplastic syndromes, Chronic lymphocytic leukaemia, first treatment, Relapsed or refractory chronic lymphocytic leukaemia, Richter transformation of chronic lymphocytic leukaemia, Chronic myeloid leukaemia, chronic phase, Chronic myeloid leukaemia, accelerated and blast phase, Primary myelofibrosis, Standard-risk B-cell acute lymphoblastic leukaemia in children, High-risk acute lymphoblastic leukaemia in children (high-risk B-ALL and T-ALL), Philadelphia chromosome-positive acute lymphoblastic leukaemia in children (Ph-positive ALL), Philadelphia chromosome-like acute lymphoblastic leukaemia (Ph-like or BCR::ABL1-like ALL), Infant acute lymphoblastic leukaemia (KMT2A-rearranged, under one year), Acute myeloid leukaemia in children, Erdheim-Chester disease, Rosai-Dorfman-Destombes disease, Single-system Langerhans cell histiocytosis (bone, skin or one other organ), Multisystem Langerhans cell histiocytosis (with or without risk-organ involvement), Indolent and smouldering systemic mastocytosis, Advanced systemic mastocytosis (aggressive SM, SM with an associated haematological neoplasm, mast cell leukaemia), Early-stage classical Hodgkin lymphoma (stage I to II), Advanced-stage classical Hodgkin lymphoma (stage III to IV), Nodular lymphocyte-predominant Hodgkin lymphoma (nodular lymphocyte-predominant B-cell lymphoma), Relapsed and refractory classical Hodgkin lymphoma
Mitoxantrone-based reinduction (UKALLR3) with vincristine, dexamethasone, asparaginase and intrathecal therapy; MRD after the block sets the path.
Blinatumomab in place of chemotherapy blocks (AALL1331, IntReALL), then allogeneic transplant in MRD-negative remission.
Tisagenlecleucel (ELIANA) or inotuzumab ozogamicin, with transplant after inotuzumab and after CAR T-cells in selected children.
Nelarabine with cyclophosphamide and etoposide, then allogeneic transplant; venetoclax combinations and CD7 CAR T-cells in trials.
Revumenib (approved from the age of one) alone or in trials with chemotherapy, as a bridge to transplant.
Country and place are remembered in this browser only. A postcode is sent to OpenStreetMap's Nominatim service to find coordinates when you press the button; nothing else leaves your device.
Blinatumomab belongs in the treatment of low-risk marrow relapse in children; isolated extramedullary relapse needs new approaches.
Blinatumomab consolidation is a safer bridge to transplant for children with higher-risk relapsed B-ALL and improved survival; it is the basis for using blinatumomab in place of chemotherapy blocks after relapse.
ELIANA turned CAR-T from a single-centre experiment into a licensed product and created the regulatory and logistical template every later cell therapy has followed. For children with refractory leukaemia it offers a chance of durable remission without transplant. The trial also exposed the gaps: manufacturing failures, patients dying while waiting, and roughly half relapsing within a few years.
Mitoxantrone-based reinduction became the reference treatment for relapsed childhood ALL and the control arm of later international relapse trials.
Query for this cancer: (TITLE:"Relapsed and refractory acute lymphoblastic leukaemia in children" OR ABSTRACT:"Relapsed and refractory acute lymphoblastic leukaemia in children" OR TITLE:"Relapsed childhood ALL" OR ABSTRACT:"Relapsed childhood ALL" OR TITLE:"Refractory paediatric B-ALL" OR ABSTRACT:"Refractory paediatric B-ALL" OR TITLE:"Second-line childhood ALL" OR ABSTRACT:"Second-line childhood ALL") AND (treatment OR therapy OR trial OR survival OR diagnosis). Results are unfiltered search hits about Relapsed and refractory acute lymphoblastic leukaemia in children, not a curated reading list.
The targets of this cancer's medicines and the ones linked to it directly.
Cases by country, the UK and NHS pathway and other country lenses, the expert centres with trials on record, and the centres named on this cancer's subtypes.
One section per setting: the options named, what each is for, the trials behind them, the recorded trade-offs and the questions to ask.
Bleeding that does not stop by itself, bleeding from more than one site, or new bruising in several places or one large area.
Fever of 38 C or higher, chills, low blood pressure, fast heartbeat or breathlessness, especially after a step-up dose. Boxed warning on teclistamab, epcoritamab, glofitamab, tarlatamab and blinatumomab.
Fever of 38 C or higher is grade 1 CRS; fever with low blood pressure, fast heartbeat, breathlessness or low oxygen is grade 2 or higher. The labels carry a boxed warning and say to report fever immediately.
Fever, cough or breathlessness, rapid weight gain or swelling, bone pain, low blood pressure or reduced urine; the labels say to start steroids and monitor at the first suspicion, and the syndrome has been fatal.
Nausea, vomiting, muscle cramps, palpitations, seizures, confusion or passing much less urine in the first days of a new dose; the label requires hydration, anti-hyperuricaemic drugs and blood tests around each ramp-up step.
Temperature of 38 C or higher, or feeling shivery and unwell even without a fever. Antibody-drug conjugates suppress the bone marrow, and several carry a boxed warning for severe neutropenia.
See all on the product pages:BlinatumomabCyclophosphamideEtoposideInotuzumab ozogamicinMethotrexateMitoxantroneNelarabineRevumenibTisagenlecleucelVenetoclaxVincristine·Printable cards in the navigator
Newly diagnosed? Read the first 60 days with Relapsed and refractory acute lymphoblastic leukaemia in children, then print the one-page appointment sheet with room for the answers.
Print this page for your appointment (your browser's print command). These prompts are for discussion; your clinical team knows your case.
Everything in development, the medicines held by this cancer's subtypes, the open problems and what is being done about them, the roadmaps, and what changed on this record.
Every connected record, the notes, the JSON, Markdown and RDF twins, and where the record came from and when it was checked.