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Updated: Jul 22, 2026

Pre-clinical Evaluation of Tyrosine Kinase Inhibitors for Treatment of Acute Leukemia
Published on: September 18, 2013
Treatment strategy and long-term results in paediatric patients treated in consecutive UK AML trials
B E S Gibson1, K Wheatley, I M Hann
1Royal Hospital for Sick Children, Glasgow, UK. brenda.gibson@yorkhill.scot.nhs.uk
Insights
Bone marrow transplants reduced relapse risk in childhood acute myeloid leukemia (AML) but did not improve survival. Further treatment blocks in AML 12 did not show a survival advantage over AML 10.
Area of Science:
- Pediatric Oncology
- Hematology
- Clinical Trials
Background:
- Acute myeloid leukemia (AML) is a significant childhood cancer.
- Previous studies investigated bone marrow transplantation (BMT) and chemotherapy intensification.
- Optimizing treatment for pediatric AML requires evaluating novel therapeutic strategies.
Purpose of the Study:
- To evaluate the role of allogeneic (allo-BMT) and autologous (A-BMT) bone marrow transplantation in pediatric AML.
- To assess the efficacy of risk-directed therapy and treatment intensification in pediatric AML.
- To compare outcomes between the Medical Research Council (MRC) AML 10 and AML 12 trials.
Main Methods:
- Analysis of 758 children with AML treated on MRC AML 10 and AML 12 trials (1988-2002).
- MRC AML 10: compared intensive chemotherapy with and without BMT.
- MRC AML 12: employed risk-directed therapy and randomized patients to four or five blocks of chemotherapy.
Main Results:
- Both allo-BMT and A-BMT significantly reduced relapse risk (RR) in MRC AML 10, but did not improve overall survival (OS).
- MRC AML 12 showed improved 5-year OS (66%), disease-free survival (DFS) (61%), event-free survival (EFS) (56%), and RR (35%) compared to MRC AML 10 (OS 58%, DFS 53%, EFS 49%, RR 42%).
- No survival advantage was observed for a fifth block of treatment in MRC AML 12.
- Improvements in supportive care and reduced deaths in remission contributed to better outcomes.
- Anthracycline-related cardiotoxicity remains a concern.
Conclusions:
- The role of allo-BMT in first complete remission (CR) for pediatric AML appears limited.
- Treatment intensification with an additional chemotherapy block did not improve survival.
- Further research is needed to reduce anthracycline toxicity while maintaining efficacy.
Abstract:
Between 1988 and 2002, 758 children with acute myeloid leukaemia (AML) were treated on Medical Research Council (MRC) AML 10 and AML 12. MRC AML 10 tested the role of bone marrow transplantation following four blocks of intensive chemotherapy and found that while both allogeneic bone marrow transplant (allo-BMT) and autologous bone marrow transplant (A-BMT) significantly reduced the relapse risk (RR), this did not translate into a significant improvement in overall survival (OS). A risk group stratification based on cytogenetics and response to the first course of chemotherapy derived from MRC AML 10 was used to deliver risk-directed therapy in MRC AML 12. Allo-BMT was limited to standard and poor risk patients and A-BMT was not employed. Instead, the benefit of an additional block of treatment was tested by randomising children to receive either four or five blocks of treatment in total. While the results of MRC AML 12 remain immature, there appears to be no survival advantage for a fifth course of treatment. The 5 year OS, disease-free survival (DFS), event-free survival (EFS) and RR in MRC AML 12 are 66, 61, 56 and 35%, respectively; at present superior to MRC AML 10, which had a 5-year OS, DFS, EFS and RR of 58, 53, 49 and 42%, respectively. MRC AML trials employ a short course of triple intrathecal chemotherapy alone for CNS-directed treatment and CNS relapse is uncommon. Improvements in supportive care have contributed to improved outcomes and the number of deaths in remission fell between trials. Anthracycline-related cardiotoxicity remains a concern and the current MRC AML 15 trial tests the feasibility of reducing anthracycline dosage without compromising outcome by comparing standard MRC anthracycline-based consolidation with high-dose ara-C. MRC studies suggest that the role of allo-BMT is limited in 1st CR and that there may be a ceiling of benefit from current or conventional chemotherapy.
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