Multisystem Langerhans cell histiocytosis is the severe form of this rare histiocytosis, in which the abnormal cells involve several organs at once, most dangerously the liver, spleen and bone marrow of infants. It is treated with a year of vinblastine and prednisone, with stronger drugs or BRAF-targeted tablets for children who do not respond quickly; survival is now high but late effects remain.
Multisystem Langerhans cell histiocytosis involves two or more organ systems, typically skin, bone, lymph nodes, pituitary, lungs and, in the highest-risk children, the liver, spleen and haematopoietic system. Risk-organ involvement, defined by hepatomegaly with liver dysfunction, splenomegaly or cytopenias, and a poor response to the first six weeks of therapy are the two strongest predictors of death; the mortality of risk-organ-positive disease has fallen from more than half in the 1980s to a small minority in the era of standardised protocols and salvage therapy. BRAF V600E is present in most multisystem cases, and the mutant clone can be traced to haematopoietic progenitors in the marrow, which explains why high-risk disease behaves like a systemic myeloid neoplasm; circulating BRAF V600E DNA tracks disease burden and predicts relapse.
The Histiocyte Society trials built the standard. LCH-I and LCH-II established vinblastine and prednisone as the backbone; LCH-III (Blood 2013), which randomised 376 patients, showed that adding methotrexate did not help but that extending treatment from six to twelve months roughly halved reactivation, and that children who respond by week six do well. For children with risk-organ disease who do not respond, cytarabine and cladribine (LCH-S-2005) or, in the most refractory, the intensive cladribine-cytarabine regimen followed by reduced-intensity allogeneic transplantation are salvage options, and the ongoing LCH-IV trial tests longer and intensified therapy. BRAF inhibitors changed refractory disease: vemurafenib and dabrafenib produce rapid responses in BRAF V600E-mutant children, including infants with risk-organ disease, though the disease returns when they stop, and cobimetinib is approved for adults with histiocytic neoplasms; combining targeted agents with chemotherapy to achieve durable remissions is the current trial question. Survivors face diabetes insipidus and anterior pituitary deficiency in a substantial minority, neurodegenerative disease years later, sclerosing cholangitis, hearing loss and orthopaedic problems, so structured long-term follow-up is standard.
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.
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), Relapsed and refractory acute lymphoblastic leukaemia in children, Acute myeloid leukaemia in children, Erdheim-Chester disease, Rosai-Dorfman-Destombes disease, Single-system Langerhans cell histiocytosis (bone, skin or one other organ), 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
Nothing recorded yet.
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Also on OnCo: Symptoms and red flags · Early detection roadmap.
Biopsy with BRAF testing; blood count, liver tests, coagulation, abdominal ultrasound, skeletal survey or whole-body MRI, pituitary assessment.
Vinblastine and prednisone induction for six to twelve weeks, then continuation to twelve months in total (LCH-III); mercaptopurine added for risk-organ disease in some protocols.
Switch to cytarabine or cladribine; intensive cladribine-cytarabine for refractory risk-organ disease; BRAF inhibitor (vemurafenib, dabrafenib) for BRAF V600E-mutant disease; reduced-intensity allogeneic transplantation in selected cases.
Repeat vinblastine-prednisone or cytarabine; targeted therapy for repeated reactivation; enrolment in LCH-IV.
Endocrine, neurological, hearing, hepatic and orthopaedic surveillance for late effects through a survivorship programme.
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Vemurafenib rescues children with refractory BRAF-mutant multisystem LCH, but it controls rather than cures, and how to stop it safely is an open question.
Children with multisystem LCH receive a year of vinblastine and prednisone, and those in whom the disease does not respond quickly are switched early to salvage therapy.
LCH is a MAPK-pathway-driven neoplasm; BRAF testing is now routine and BRAF and MEK inhibitors are used for refractory disease.
Query for this cancer: (TITLE:"Multisystem Langerhans cell histiocytosis" OR ABSTRACT:"Multisystem Langerhans cell histiocytosis" OR TITLE:"with or without risk-organ involvement" OR ABSTRACT:"with or without risk-organ involvement" OR TITLE:"Multisystem LCH" OR ABSTRACT:"Multisystem LCH" OR TITLE:"MS-LCH" OR ABSTRACT:"MS-LCH" OR TITLE:"Risk-organ-positive LCH" OR ABSTRACT:"Risk-organ-positive LCH" OR TITLE:"Letterer-Siwe disease obsolete" OR ABSTRACT:"Letterer-Siwe disease obsolete") AND (treatment OR therapy OR trial OR survival OR diagnosis). Results are unfiltered search hits about Multisystem Langerhans cell histiocytosis (with or without risk-organ involvement), not a curated reading list.
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Bleeding that does not stop by itself, bleeding from more than one site, or new bruising in several places or one large area.
Fainting, near-fainting, or an irregular or racing heartbeat; several kinase inhibitors prolong the QT interval and the labels require ECG and electrolyte monitoring.
Dabrafenib: take on an empty stomach. Trametinib: take on an empty stomach; both cause pyrexia.
Severe photosensitivity: sun protection.
Known QT prolongation. Avoid other QT-prolonging drugs where possible; check ECG and correct potassium and magnesium before and during treatment.
Several lymphoma treatments knock out the part of the immune system that keeps a particular lung infection, Pneumocystis, at bay. A low-dose antibiotic three times a week prevents it, and a separate tablet prevents shingles.
See all on the product pages:CladribineDabrafenib + trametinibVemurafenibVinblastine·Printable cards in the navigator
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