Bone Marrow Cell Gene Transfer in Individuals With Fanconi Anemia

June 21, 2017 updated by: David Williams, Boston Children's Hospital

Gene Transfer From Patients With Fanconi Anemia, Genotype A: A Pilot Study

Fanconi anemia (FA) is a disease that affects an individual's bone marrow. It is caused by a defective gene in the bone marrow cells that produce various types of blood cells. Individuals with FA may experience fatigue, bleeding, and increased infections. The purpose of this study is to evaluate the safety and effectiveness of a gene transfer procedure in generating new, healthy cells in individuals with FA.

Study Overview

Status

Completed

Conditions

Intervention / Treatment

Detailed Description

FA is a rare, inherited disease that is caused by a gene defect and that primarily affects an individual's bone marrow, resulting in decreased production of blood cells. The lack of white blood cells affects an individual's ability to fight infections, the lack of platelets may result in bleeding, and the lack of red blood cells usually leads to anemia. FA is typically diagnosed in childhood, and there is a high fatality rate. Bone marrow transplants are one common treatment for FA. However, there are many risks associated with transplantation, including rejection of the transplanted cells and graft-versus-host disease, a serious side effect in which donor cells attack the recipient's tissues. This study will use an experimental gene transfer procedure performed in a laboratory to insert a new FA gene into the participant's bone marrow cells. The gene-corrected bone marrow cells will then be re-infused into the participant and participants will be observed for successful gene transfer. The purpose of this study is to evaluate the safety and effectiveness of the FA gene transfer procedure and to determine the ability of the gene-corrected cells at generating new, healthy blood cells in individuals with FA.

This study will enroll individuals with FA. Participants will be required to have the initial bone marrow transfer procedure performed at Cincinnati Children's Hospital, but will be allowed to see their own doctor for the majority of study visits. Participants will first attend a screening visit, which will include a physical exam, blood draw for laboratory testing, and a bone marrow biopsy. Bone marrow cells will be collected from eligible participants and sent to a laboratory for the FA gene transfer procedure. Several days later, the gene-corrected cells will be re-infused back into the participants via an intravenous catheter. Side effects will be closely monitored for 12 hours following the procedure and participants may be required to spend an overnight in the hospital. Following discharge from the hospital, participants will be required to stay in the Cincinnati area for 3 days to undergo daily evaluations and physical examinations. Participants will continue to be followed very closely for the first year after cell re-infusion. Study visits will be held weekly for the first 3 weeks, and then every 3 months for the remainder of the year. Visits will include physical examinations, blood collection, and liver function testing. Bone marrow testing will occur at Months 3, 6, and 12. Follow-up visits will occur yearly for up to 15 years and will include blood collection, a physical exam, and review of medical history.

Study Type

Interventional

Enrollment (Actual)

3

Phase

  • Phase 1

Contacts and Locations

This section provides the contact details for those conducting the study, and information on where this study is being conducted.

Study Locations

    • Ohio
      • Cincinnati, Ohio, United States, 45229
        • Cincinnati Children's Hospital Medical Center

Participation Criteria

Researchers look for people who fit a certain description, called eligibility criteria. Some examples of these criteria are a person's general health condition or prior treatments.

Eligibility Criteria

Ages Eligible for Study

2 years to 31 years (Child, Adult)

Accepts Healthy Volunteers

No

Genders Eligible for Study

All

Description

Inclusion Criteria:

  • FA, as determined by a positive test for increased sensitivity to chromosomal breakage with mitomycin C or diepoxybutane
  • FA complementation group A, as determined by somatic cell hybrids or molecular characterization; transduction of peripheral blood or bone marrow cells with the complementation group of specific retrovirus used in this study must demonstrate correction of mitomycin C sensitivity or cell cycle arrest
  • Weighs at least 7.5 kg
  • Normal cytogenetics on bone marrow within 3 months of study entry
  • A minimum of 2 x 10(6) CD34+ cells/kg after CD34+ selection of the harvested bone marrow or mobilized peripheral blood product must be available to proceed with thaw (if cryopreserved) and transduction
  • Human leukocyte antigen (HLA) typing with initial donor limited search results that indicate a potentially acceptable matched unrelated donor in the National Marrow Donor Program database

Exclusion Criteria:

  • Cancer
  • Clonal cytogenetic abnormality on bone marrow or peripheral blood karyotype within 3 months of study entry
  • Myelodysplastic syndrome based on the FAB classification including:

    1. Refractory anemia with ringed sideroblasts (RARS)
    2. Refractory anemia with excess blasts (RAEB)
    3. RAEB in transformation (RAEB-T)
    4. Chronic myelomonocytic leukemia (CMML) (myelodysplastic changes in greater than two cell lines, refractory anemia alone, or aplastic anemia with dysplastic changes are permitted)
  • Positive baseline screening result for both of the following:

    1. Detection of Fanconi A proviral sequences by polymerase chain reaction (PCR) analysis
    2. Detection of replication competent retrovirus by repeat testing by PCR of gibbon ape leukemia virus (GALV) envelope sequence or a positive S+L- assay
  • Pregnant or breastfeeding; women of childbearing potential who are enrolled will be advised that the drug may cause birth defects and will be required to use an acceptable form of contraception
  • Concurrent enrollment in any other study using an investigational agent, excluding androgens and thyroxine
  • Physical or emotional status that would prevent informed consent, protocol compliance, or adequate follow-up with participant or legal guardian
  • Participants for whom an acceptable HLA identical matched sibling donor (HLA A, B, DRB1; 6/6 match) has been identified (HLA typing of normal siblings must be documented)

Study Plan

This section provides details of the study plan, including how the study is designed and what the study is measuring.

How is the study designed?

Design Details

  • Primary Purpose: Treatment
  • Allocation: N/A
  • Interventional Model: Single Group Assignment
  • Masking: None (Open Label)

Arms and Interventions

Participant Group / Arm
Intervention / Treatment
Experimental: Single arm
This study will use an experimental gene transfer procedure performed in a laboratory to insert a new FA gene into the participant's bone marrow cells. The gene-corrected bone marrow cells will then be re-infused into the participant and participants will be observed for successful gene transfer

What is the study measuring?

Primary Outcome Measures

Outcome Measure
Time Frame
Safety of gene transfer methods
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer
Short-term and long-term engraftment of gene-corrected autologous hematopoietic cells (all measured at Year 1)
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer

Secondary Outcome Measures

Outcome Measure
Time Frame
Frequency and function of the integrated recombinant Fanconi vector
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer
Efficiency of engraftment of multilineage gene corrected clones
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer
Lineage contribution and longevity of molecularly distinguishable gene marked clones
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer
Development of myelodysplastic syndrome or overt leukemia (all measured at Year 1)
Time Frame: 3months, 6 months and yearly up to 15 years post gene transfer
3months, 6 months and yearly up to 15 years post gene transfer

Collaborators and Investigators

This is where you will find people and organizations involved with this study.

Investigators

  • Principal Investigator: Franklin O. Smith, MD, Children's Hospital Medical Center, Cincinnati

Publications and helpful links

The person responsible for entering information about the study voluntarily provides these publications. These may be about anything related to the study.

Study record dates

These dates track the progress of study record and summary results submissions to ClinicalTrials.gov. Study records and reported results are reviewed by the National Library of Medicine (NLM) to make sure they meet specific quality control standards before being posted on the public website.

Study Major Dates

Study Start

August 1, 2004

Primary Completion (Actual)

October 1, 2007

Study Completion (Actual)

October 1, 2007

Study Registration Dates

First Submitted

January 4, 2006

First Submitted That Met QC Criteria

January 4, 2006

First Posted (Estimate)

January 9, 2006

Study Record Updates

Last Update Posted (Actual)

June 23, 2017

Last Update Submitted That Met QC Criteria

June 21, 2017

Last Verified

June 1, 2017

More Information

Terms related to this study

Plan for Individual participant data (IPD)

Plan to Share Individual Participant Data (IPD)?

No

This information was retrieved directly from the website clinicaltrials.gov without any changes. If you have any requests to change, remove or update your study details, please contact register@clinicaltrials.gov. As soon as a change is implemented on clinicaltrials.gov, this will be updated automatically on our website as well.

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