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Updated: Jul 24, 2025

Modeling Chemotherapy Resistant Leukemia In Vitro
Published on: February 9, 2016
Therapy of childhood acute lymphoblastic leukemia in resource-poor geospaces
Moisés M Gallardo-Pérez1,2, Robert Peter Gale3, Oscar A Reyes-Cisneros1,4
1Centro de Hematología y Medicina Interna, Clínica Ruiz, Puebla, Puebla, Mexico.
Insights
This study adapted a leukemia treatment protocol for outpatient care in low-resource settings, achieving good outcomes and significantly reducing costs for pediatric acute lymphoblastic leukemia (ALL) patients.
Area of Science:
- Pediatric Oncology
- Hematology
- Global Health
Background:
- Treating childhood acute lymphoblastic leukemia (ALL) in resource-limited areas presents significant challenges in balancing safety, efficacy, availability, and cost.
- Existing protocols often require extensive hospital infrastructure, limiting accessibility in low-income regions.
Purpose of the Study:
- To adapt the St. Jude Total XI protocol for outpatient delivery in resource-limited settings for children with ALL.
- To evaluate the safety, efficacy, and cost-effectiveness of this modified outpatient protocol.
Main Methods:
- Modified the St. Jude Total XI protocol for outpatient care, including weekly chemotherapy, delayed intrathecal treatment, prophylactic antibiotics/antimycotics, generic drugs, and no CNS radiation.
- Collected data from 104 children aged ≤12 years treated in an outpatient setting.
- Analyzed hematological remission, event-free survival (EFS), cumulative incidence of relapse (CIR), and treatment costs.
Main Results:
- 88 out of 104 children achieved complete remission.
- Median EFS was 87 months overall, with variations based on risk stratification.
- The 5-year CIR was 28%, and survival exceeded 5 years for most patients.
- Treatment costs were substantially lower ($28,500 USD) compared to high-income countries (~$150,000 USD).
Conclusions:
- An outpatient modification of the St. Jude Total XI protocol provides good outcomes for childhood ALL in resource-limited settings.
- This adapted protocol demonstrates significant cost savings with manageable hospitalizations and adverse events.
- The model is applicable to other resource-poor regions facing similar challenges in pediatric cancer treatment.
Abstract:
The therapy of children with acute lymphoblastic leukemia (ALL) in limited resource geospaces is challenging and must balance safety, efficacy, availability, and affordability. We modified the control arm of the St. Jude Total XI protocol for outpatient delivery including once-weekly daunorubicin and vincristine in initial therapy, postponing intrathecal chemotherapy until day 22, prophylactic oral antibiotics/antimycotics, use of generic drugs, and no central nervous system (CNS) radiation. Data were interrogated from 104 consecutive children ≤12 years (median, 6 years [interquartile range (IQR), 3, 9 years]. All therapies were given in an outpatient setting in 72 children. Median follow-up is 56 months (IQR 20, 126 months). A total of 88 children achieved a hematological complete remission. Median event-free survival (EFS) is 87 months [95% confidence interval (CI), 39, 60], 7.6 years in low-risk children (3.4, 8 years) whereas 2.5 years (1, 10 years) in high-risk children. The 5-year cumulative incidence of relapse (CIR) is 28% (18, 35%), 26% (14, 37%) in low-risk children and 35% (14, 52%) in high-risk children. Median survival for all subjects is not reached but must exceed 5 years. A total of 36 children relapsed at a median of 12 months (5, 23 months). Outcomes were comparable to those reported in the control arm of the Total Therapy XI study, but inferior to current treatment protocols in high-income countries. The average cost of the first 2 years of therapy was $28,500 USD compared with an average cost of approximately $150,000 USD in the US, an 80% saving. In conclusion, using an outpatient-based modification of the St. Jude Total XI protocol, we obtained good results with relatively few hospitalizations or adverse events and at a substantial saving. This model can be applied in other resource-poor geospaces.
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