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RecruitingNCT05811910Updated Apr 13, 2023

Genetic Polymorphisms in Drug Induced Neuropathy in Children With ALL

An observational study in Acute Lymphocytic Leukemia, sponsored by IRCCS Burlo Garofolo. Recruiting at 1 site in Italy. Open to participants aged 1 Year to 17 Years. Per ClinicalTrials.gov, last updated 2023-04-13.

Sponsored by IRCCS Burlo Garofolo · Observational

From the registry’s dates

  • Primary completion was expected by Dec 2023, 2 years 9 months ago, but the record still lists the study as recruiting.
  • Started Mar 2021; still recruiting 5 years 6 months later.
Study type
Observational
Model
Other
Time perspective
Cross-sectional
Enrollment
290
Ages
1 Year to 17 Years
Sex
All
01

Study summary

Therapeutic success in childhood ALL reaches an outstanding success that currently relies upon risk stratification of patients with appropriate modulation of chemotherapy intensity based on underlying blasts' biological and molecular characteristics, and depth of initial treatment response. ALL polychemotherapeutic approaches share similar therapeutic scheme, with more intensive and toxic earlier phases (about 6 months) followed by a prolonged immunosuppressive regimen for maintenance (about 18 months). Protocols comprise glucocorticoids, antimetabolites, asparaginase, alkylating agents, antimitotic drugs antibiotics and, in case of Philadelphia positive ALL, anti-tyrosine kinase inhibitors combined together at different dosages and timing according to the patient's class of risk. ALL chemotherapeutic agents can damage nearly all organs. Some adverse reactions are extensions of the drugs' desired pharmacological effects on bone marrow and affect almost all children. Other adverse effects occur unpredictably in a smaller fraction of patients who, for unknown reasons, are more susceptible. Concerns about chemotherapy-related toxicities generated a significant need of finding predictive markers for the a priori identification of at-risk patients. Pharmacogenomics markers can be useful tools in clinics for tailoring therapy intensity on patients' genetic profile and in basic research for better understanding mechanistic and regulatory pathways of the biological functions associated with ALL treatment toxicities. Several genome wide association studies explored the landscape of ALL treatment-associated toxicities, discovering the contribution of important variants. Among these, TPMT single nucleotide polymorphisms (SNPs) have a well-recognized role in thiopurine-induced myelotoxicity. SNP rs924607 (C>T) in the promoter region of the gene encoding for the centrosomal protein 72 (CEP72) was associated with increased risk and severity of vincristine-related peripheral neuropathy. The aim of this study is to perform a GWAS in ALL children to provide insight into genetic loci affecting the occurrence of severe (grade III-V) vincristine-related peripheral neuropathy during induction therapy in the AIEOP protocols.

Read the detailed description

Acute lymphoblastic leukemia (ALL) is the most common haematological cancer in children. Therapeutic success in childhood ALL reaches an outstanding success (5-years survival of about 85-90%), that currently relies upon risk stratification of patients with appropriate modulation of chemotherapy intensity based on underlying blasts' biological and molecular characteristics, and depth of initial treatment response. Although with some difference, worldwide ALL polychemotherapeutic approaches share the same therapeutic scheme, with more intensive and toxic earlier phases (to induce and consolidate remission, about 6 months), followed by a prolonged immunosuppressive regimen for maintenance (about 18 months). In particular, protocols comprise mostly glucocorticoids, antimetabolites, asparaginase, alkylating agents, antimitotic drugs antibiotics and, in case of Philadelphia positive ALL, anti-tyrosine kinase inhibitors combined together at different dosages and timing according to the patient's class of risk. ALL chemotherapeutic agents can damage nearly all organs. Some adverse reactions such as the hematological toxicities and their consequences (such as infections) are extensions of the drugs' desired pharmacological effects on bone marrow, and affect almost all children. Other adverse effects occur unpredictably in a smaller fraction of patients who, for unknown reasons, are more susceptible. High dose antimetabolites and DNA damaging drugs may cause a direct injury in healthy proliferating tissues, resulting in mucositis (about 40% of ALL patients). Corticosteroids may cause bone toxicities (such as osteoporosis, 5-70%), endocrinopathies (such as insulin resistance, hyperglycemia and prediabetes, 10-20%) and central nervous system toxicities (10-15%). Vincristine treatment is associated to peripheral motor or sensory neuropathy development (5-15%).8 Methotrexate crystals can precipitate in kidneys, inducing nephrotoxicity (about 3%).9 Asparaginase can lead to hypersensitivity reactions (30-70%) and pancreatitis (2-18%). Additional acute toxicities such as venous thromboembolism are rarer but still might contribute to the incidence of treatment related deaths. Concerns about chemotherapy-related toxicities have generated a significant need of finding predictive markers for the a priori identification of at-risk patients. In particular, pharmacogenomics markers can be useful tools both in clinics for tailoring therapy intensity on patients' genetic profile and in basic research for better understanding the mechanistic and regulatory pathways of the biological functions associated with ALL treatment toxicities. Several genome wide association studies (GWAS) -performed mainly by US/Canadian Children's Oncology Group (COG) ALL protocols- had explored and investigated the landscape of ALL treatment-associated toxicities, discovering the contribution of important variants. Among these, TPMT single nucleotide polymorphisms (SNPs) have a well-recognized role in thiopurine-induced myelotoxicity ad genotype-based guidelines are already available. SNP rs924607 (C>T) in the promoter region of the gene encoding for the centrosomal protein 72 (CEP72) was found to be associated with increased risk and severity of vincristine-related peripheral neuropathy. To author's knowledge, this is the only variant whose clinical validation is currently ongoing in a perspective clinical trial (Saint Jude Children Research Hospital (SJCRH) Total Therapy XVII, NCT03117751). The aim of this study is to perform a GWAS in ALL children to provide insight into genetic loci affecting the occurrence of severe (grade III-V) vincristine-related peripheral neuropathy during induction therapy in the AIEOP protocols

02

Conditions studied

  • Acute Lymphocytic Leukemia

Keywords

  • Acute lymphoblastic leukemia
  • GWAS
  • Toxicities
03

In context

Leukemia

5,441 studies on the registry are indexed under Leukemia; 636 are open to participants now.

This study's planned enrollment of 290 is above the median of 120 across 744 observational studies indexed under Leukemia.

Browse Leukemia studies →

Lead sponsor

IRCCS Burlo Garofolo is the lead sponsor of 87 studies on the registry; 32 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
1 Year to 17 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Non-probability sample

Study population

Children aged 1-17 years with ALL

Inclusion criteria

  • Age >=1 year and \<18 years old
  • Newly diagnosed acute lymphoblastic leukemia (ALL)
  • No Ph+ (BCR/ABL or t(9;22)-positive) ALL
  • More than 4 weeks since prior steroids
  • Written informed consent

Exclusion criteria

Exclusion Criteria:

  • Secondary ALL
  • Prior disease that would preclude treatment with chemotherapy
  • Evidence of pregnancy or lactation period
  • Participation in another clinical study
05

Study design

Observational model
Other
Time perspective
Cross-sectional
Enrollment
290 participants (estimated)
Patient registry
No
Biospecimen retention
Samples with dna
06

What researchers measure

Primary outcomes

  1. To identify genetic loci affecting the occurrence of severe (grade III-V) vincristine-related peripheral neuropathy during induction therapy in the AIEOP-BFM protocols

    Toxicities will be assessed by clinicians using the National Cancer Institute Common Terminology Criteria for Adverse Events and graded as mild (grade I), moderate (grade II), serious/disabling (grade III), life-threatening (grade IV) or lethal (grade V). DNA will be genotyped by the lnfinium Omni2.5 BeadChip (Illumina) for a total number of markers of -2000000 SNP

    Time frame: At the end of the 2 year study period

07

Study locations

1 of 1 sites recruiting
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Apr 13, 2023, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT05811910
Lead sponsor
IRCCS Burlo Garofolo
Responsible party
Sponsor
First posted
Apr 13, 2023
Start date
Mar 30, 2021
Primary completion
Dec 31, 2023 (estimated)
Completion
Dec 31, 2023 (estimated)
Last update
Apr 13, 2023

Study contacts

Marco Rabusin, MD
Contact
marco.rabusin@burlo.trieste.it
+39 0403785111
Marco Rabusin, MD
study director · IRCCS materno infantile Burlo Garofolo

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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