Clinical trial · Interventional
Pentoxifylline In Pediatric Acute Lymphoblastic Leukemia During Induction
SAFETY AND EFFICACY OF PENTOXIFYLLINE VERSUS PLACEBO ADMINISTERED AS APOPTOSIS INDUCTOR DURING REMISSION INDUCTION PHASE OF PEDIATRIC PATIENTS WITH ACUTE LYMPHOBLASTIC LEUKEMIA
- Source
- ClinicalTrials.gov
- Retrieved
- Sep 8, 2026
- Layer
- normalized (units and labels harmonized; values unchanged)
- Run
- ING-CLINICALTRIALS-20260908-000001
Summary
Brief summary (as posted)
Recent advances in acute lymphoblastic leukemia treatment are based on a cytotoxic drug combination. Measurement of minimal residual disease in bone marrow samples at day 14 of treatment is the most powerful early predictive indicator of further relapse, and it can be applied practically to all patients with acute lymphoblastic leukemia. Even more so, it has been observed that patients who present negative minimal residual disease in bone marrow samples at day 7 during induction have a better prognosis than those achieving this at day 14. Relapse represents the main cause of treatment failure that related in the extreme with resistance to apoptosis, defining the latter as the principal mechanism of programmed cell death; it is also related with the induction of leukemic cells to senescent arrest. Pentoxifylline is a methyl-xanthine byproduct considered an unspecific inhibitor of phosphodiesterase. It inhibits nuclear factor-kappa-beta activation by different mechanisms and stimulates apoptosis induced by different drugs; thus, it can optimize the antineoplastic effect of actual treatments in order to increase the apoptosis of leukemic cells. This effect might improve the prognosis of these patients. Evaluate the safety and effect of Pentoxifylline together with antineoplastic drugs in order to study increased apoptosis and decreased senescence during the remission induction phase in pediatric patients with newly diagnosed acute lymphoblastic leukemia. To achieve this propose, we will divide patients in two groups, who will receive pentoxifylline or placebo depending on the group, in addition to conventional treatment according to the protocol standard chemotherapy schema for pediatric patients with acute lymphoblastic leukemia at our institution during the remission induction phase. In addition, we will test whether the study group exerts an impact on reaching remission earlier as compared with the control group.
Conditions
Conditions (1)
Free-text conditions as registered, with the CancerIndex entity they were reconciled to and the match type.
| Condition (as posted) | Mapped entity | Match | Confidence |
|---|---|---|---|
| Acute Lymphoblastic Leukemia | Acute Lymphoblastic Leukemia | ONTOLOGY_EXACT | 0.98 |
Interventions
Interventions (2)
| Intervention | Type | Mapped drug | Match |
|---|---|---|---|
| Pentoxifylline Plus Chemotherapy | Drug | — | UNRESOLVED |
| Placebo Plus Chemotherapy | Drug | — | UNRESOLVED |
Design
Arms and outcomes
Arms (2)
- type
- EXPERIMENTAL
- label
- Pentoxifylline Plus Chemotherapy
- description
- Pentoxifylline: 10-20 milligrams per kilogram, doses daily by oral, for 30 days. Chemotherapy: Prednisone, Vincristine, Daunorubicin, L-asparaginase, Cyclophosphamide, Cytarabine, 6-Mercaptopurine, Methotrexate, Hydrocortisone and Cytarabine
- interventionNames
- Drug: Pentoxifylline Plus Chemotherapy
- type
- PLACEBO_COMPARATOR
- label
- Placebo Plus Chemotherapy
- description
- Placebo: double blind period, one doses daily for 30 days. Chemotherapy: Prednisone, Vincristine, Daunorubicin, L-asparaginase, Cyclophosphamide, Cytarabine, 6-Mercaptopurine, Methotrexate, Hydrocortisone and Cytarabine
- interventionNames
- Drug: Placebo Plus Chemotherapy
Primary outcomes (1)
- measure
Eligibility
Eligibility (as posted)
- Sex
- All
- Minimum age
- 1 Year
- Maximum age
- 18 Years
Show eligibility criteria text
Inclusion Criteria: * Pediatric and teenaged patients of both genders ≤18 years of age with newly diagnosed acute lymphoblastic leukemia in accordance with French-American-British criteria and under immunophenotypical classification and paired within the risk-classification group. * Patients with ≥20 kg of weight at the time of treatment assignment. * Patients who are able to swallow the medicine * Patients agreeing to enter the protocol by the signing of informed consent by the parent * Patients who could give their assent to enter the protocol * The parent or guardian must be able to read. Exclusion Criteria: * Patients with treatment adherence of ≥80 percent * Patients or their parents who decide to abandon the study or who withdraw consent for participation * Patients who present grade III or higher adverse event. * Patients previously treated with chemotherapy and/or radiotherapy * History of peptic acid disease or gastrointestinal bleeding * Known pentoxifylline intolerance and general intolerance to xanthine, caffeine or theophylline * Patients in treatment with anticoagulants, Cimetidine, Ciprofloxacin, or Theophylline * Patients with Down syndrome * Patients with several bleeding or extensive retinal hemorrhage, several cardiac arrhythmias (paroxysmal supraventricular tachycardia, congenital atrioventricular block, arrhythmias associated with congenital heart disease, digital poisoning, and patients after cardiac surgery, hypoxia, hypercapnia, and electrolyte disturbances) * Patients with hypotension * Several liver failures * Bleeding diathesis (for bleeding disorders or anticoagulant medication)
References
Publications (15)
- RESULTMakishima H, Visconte V, Sakaguchi H, Jankowska AM, Abu Kar S, Jerez A, Przychodzen B, Bupathi M, Guinta K, Afable MG, Sekeres MA, Padgett RA, Tiu RV, Maciejewski JP. Mutations in the spliceosome machinery, a novel and ubiquitous pathway in leukemogenesis. Blood. 2012 Apr 5;119(14):3203-10. doi: 10.1182/blood-2011-12-399774. Epub 2012 Feb 9. PMID 22323480
- RESULTDores GM, Devesa SS, Curtis RE, Linet MS, Morton LM. Acute leukemia incidence and patient survival among children and adults in the United States, 2001-2007. Blood. 2012 Jan 5;119(1):34-43. doi: 10.1182/blood-2011-04-347872. Epub 2011 Nov 15. PMID 22086414
- RESULTPerez-Saldivar ML, Fajardo-Gutierrez A, Bernaldez-Rios R, Martinez-Avalos A, Medina-Sanson A, Espinosa-Hernandez L, Flores-Chapa Jde D, Amador-Sanchez R, Penaloza-Gonzalez JG, Alvarez-Rodriguez FJ, Bolea-Murga V, Flores-Lujano J, Rodriguez-Zepeda Mdel C, Rivera-Luna R, Dorantes-Acosta EM, Jimenez-Hernandez E, Alvarado-Ibarra M, Velazquez-Avina MM, Torres-Nava JR, Duarte-Rodriguez DA, Paredes-Aguilera R, Del Campo-Martinez Mde L, Cardenas-Cardos R, Alamilla-Galicia PH, Bekker-Mendez VC, Ortega-Alvarez MC, Mejia-Arangure JM. Childhood acute leukemias are frequent in Mexico City: descriptive epidemiology. BMC Cancer. 2011 Aug 17;11:355. doi: 10.1186/1471-2407-11-355. PMID 21846410
- RESULTBelson M, Kingsley B, Holmes A. Risk factors for acute leukemia in children: a review. Environ Health Perspect. 2007 Jan;115(1):138-45. doi: 10.1289/ehp.9023. PMID 17366834
- RESULTPui CH, Robison LL, Look AT. Acute lymphoblastic leukaemia. Lancet. 2008 Mar 22;371(9617):1030-43. doi: 10.1016/S0140-6736(08)60457-2. PMID 18358930
- RESULTPui CH, Carroll WL, Meshinchi S, Arceci RJ. Biology, risk stratification, and therapy of pediatric acute leukemias: an update. J Clin Oncol. 2011 Feb 10;29(5):551-65. doi: 10.1200/JCO.2010.30.7405. Epub 2011 Jan 10. PMID 21220611