Langerhans cell histiocytosis (LCH) is the most common histiocytic disorder in children, caused by excessive proliferation and accumulation of Langerhans cells (a type of immune cell) in various body tissues. The annual incidence is about 2.6-8.9 cases per million children.Clinical presentation varies widely. Mild (low-risk) cases may resolve spontaneously or cause minimal issues with excellent outcomes. Severe multisystem LCH involves multiple organs, particularly high-risk sites such as liver, spleen, or bone marrow, leading to poorer prognosis and potential life-threatening complications without appropriate treatment.Standard first-line therapy for many children is prednisone (a corticosteroid) plus vinblastine (chemotherapy). Trials like LCH-III show near-100% survival in low-risk disease, but long-term survival drops to \~80% in high-risk cases. Reactivation occurs in \~37% of low-risk patients post-treatment, and \~50% of children eventually develop resistance, resulting in progression or relapse. Treatment failure heightens risks of long-term sequelae, including growth retardation, endocrine dysfunction, and neurological damage, severely impacting quality of life. More than half of LCH cases harbor the BRAF V600E mutation, activating the MAPK pathway abnormally. This has driven development of targeted MAPK inhibitors (e.g., vemurafenib, dabrafenib, trametinib), which demonstrate strong efficacy and acceptable safety (mainly manageable skin rash) in relapsed/refractory pediatric cases, with no reported secondary malignancies to date. These agents provide rapid symptom relief and durable control, though monotherapy often fails to eradicate abnormal cells in multisystem disease, leading to relapse after discontinuation. No MAPK inhibitors were previously approved specifically for LCH. In 2025, luvometinib (developed by Fosun Pharma, China; a selective MEK1/2 inhibitor) received approval in China for adult LCH and histiocytic neoplasms. Adult studies showed \~83% objective response rate and \~74% progression-free at ≥12 months, with mostly mild side effects (skin issues, hypertriglyceridemia) and no discontinuations due to serious toxicity. Laboratory evidence indicates MAPK overactivation confers apoptosis resistance to LCH cells; combining MAPK inhibitors with chemotherapy may enhance cell killing and leverage chemotherapy-induced immune microenvironment changes for better clearance. Small studies and real-world data in refractory LCH support this: combination regimens yielded low relapse rates (especially with prolonged therapy), 100% responses in some pediatric cohorts with sustained remission and no added severe toxicity, and notably lower relapse (20% vs 75% with inhibitor alone) in our center's early experience with LCH-III backbone plus MAPK inhibitor. This multicenter randomized trial will enroll children with multisystem LCH, assigning them to modified standard LCH-III chemotherapy alone or the same regimen combined with luvometinib, to evaluate whether adding this targeted agent improves outcomes.
Lab studies show that when the MAPK pathway is overactive, it makes LCH cells harder to kill (more resistant to dying naturally). Combining an MAPK inhibitor with chemotherapy might make the abnormal cells easier to destroy. Chemotherapy also changes the immune environment in the body, which could help clear out the bad cells more completely. Several small studies and real-world experiences have already tested this idea in children and adults with hard-to-treat LCH: One study combined MAPK inhibitors with certain chemotherapy drugs and saw very few relapses, especially when treatment lasted longer. Another study using a similar approach achieved 100% response in a group of children (including some as first treatment), with most staying in remission afterward, and no extra serious side effects from the combination. A Chinese study using prednisone, another chemo drug, plus an MAPK inhibitor showed good results with low relapse after stopping. Early data from our own center found that children who got an MAPK inhibitor together with the standard LCH-III treatment had much lower relapse rates (only 20%) compared to those who got the inhibitor alone (75% relapse). Based on this growing evidence, this study plans to run a large, carefully designed trial at multiple hospitals. It will randomly assign children with multisystem LCH to receive either the improved (modified) version of the standard LCH-III chemotherapy alone, or the same chemotherapy combined with luvometinib. The goal is to compare how well each approach works and to learn more about whether adding this targeted drug to chemotherapy can improve treatment for children with this disease.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
120
Corticosteroid administered orally as part of the modified LCH-III regimen
Intravenous vinca alkaloid chemotherapy agent used in the modified LCH-III regimen
Oral purine analog antimetabolite used in the maintenance phase of therapy for multisystem LCH
Oral selective MEK1/2 inhibitor added to the experimental arm. Administered daily in combination with modified LCH-III chemotherapy for multisystem Langerhans cell histiocytosis.
West China Second Hospital, Sichuan University
Chengdu, China
RECRUITINGAffiliated Hospital of Guizhou Medical University
Guiyang, China
RECRUITINGAnhui Provincial Children's Hospital
Hefei, China
RECRUITINGThe Second Affiliated Hospital of Anhui Medical University
Hefei, China
RECRUITINGJiangxi Provincial Children's Hospital
Jiangxi, China
RECRUITINGKunming Children's Hospital
Kunming, China
RECRUITINGThe Second Affiliated Hospital of Guangxi Medical University
Nanning, China
RECRUITINGThe First Affiliated Hospital of Xinjiang Medical University
Ürümqi, China
RECRUITINGXi'an Children's Hospital
Xi'an, China
RECRUITINGXi'an Northwest Women's and Children's Hospital
Xi'an, China
RECRUITING...and 1 more locations
Event-Free survival rate
Event-free survival (EFS) is defined as the time from Day 1 to the first occurrence of any event, including disease reactivation , second primary malignancy, or death from any cause. Events will be assessed by clinical examination, imaging, and laboratory tests. The 2-year EFS rate will be estimated using the Kaplan-Meier method, reported as percentage with 95% confidence interval.
Time frame: From Day 1 until the date of first event or last follow-up, assessed up to 2 years.
Objective response rate
Objective response rate (ORR) is defined as the proportion of participants achieving NAD or ADB at the specified time points. Responses will be assessed by clinical evaluation, imaging, and risk organ function (if involved). ORR will be reported separately at 1 month and 3 months as percentage of participants with NAD or ADB (combined), with exact 95% confidence intervals.
Time frame: At 1 month and 3 months post-treatment
Overall survival rate
Overall survival (OS) is defined as Day 1 to death from any cause. Participants alive at last follow-up will be censored. The 2-year OS rate will be estimated using the Kaplan-Meier method and reported as percentage with 95% confidence interval.
Time frame: From Day1 until date of death from any cause or last follow-up, assessed up to 2 years.
Number of participants with treatment-related adverse events as assessed by CTCAE v5.0
Safety and tolerability of the combination regimen (luvometinib added to modified LCH-III chemotherapy: prednisone + Vincristine backbone) will be assessed by the number of participants experiencing treatment-related adverse events (TRAEs), and serious adverse events (SAEs). Events will be graded according to NCI Common Terminology Criteria for Adverse Events (CTCAE) version 5.0. Data will be summarized as: Incidence of any TRAE (percentage of participants) , Incidence by maximum grade (e.g., Grade 3-5) ,Incidence of specific events of interest (e.g., skin rash, hypertriglyceridemia, cytopenias) and Rate of treatment discontinuation due to toxicity
Time frame: From Day 1 until through study completion, an average of 2 years
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.