Molecular and Clinical Analysis of Bone Marrow Failure: A Secondary Research Study
Public ClinicalTrials.gov record NCT07102849. Field values are reproduced from the official study page; the official ClinicalTrials.gov record remains the source of truth for eligibility, enrollment, and contact information.
Data is sourced from official ClinicalTrials.gov public API records. Always review the official ClinicalTrials.gov record for the latest information.
Official title
In-Depth Molecular Characterization in Marrow Failure Syndromes to Understand Clonal Dynamics and Expansion
Brief summary
Reproduced verbatim from the official ClinicalTrials.gov record. Not medical advice.
STUDY DESCRIPTION: Bone marrow failure can result from immune mediated attack on stem cells or from inherited genetic defects such as telomere biology disorders or Fanconi anemia. Aplastic anemia (AA), a prototype of bone marrow failure syndromes (BMFS), can be acquired or inherited. Acquired BMFS have common immune mediated pathophysiology, and include AA, lower risk myelodysplastic syndrome (MDS, particularly hypoMDS), VEXAS, large granular lymphocytosis (LGL), paroxysmal nocturnal hemoglobinuria (PNH), pure red cell aplasia (PRCA), or cytopenia of undetermined origin. Clonality is frequent in patients with BMFS. Patients with acquired AA are known to have somatic mutations in phosphatidylinositol glycan class A (PIGA), BCL6 corepressor (BCOR) and HLA genes, which are all related to the immune mediated pathophysiology and good predictors of treatment and overall outcomes. Others such as ASXL1, RUNX1, and splicing factor mutations and/or chromosome 7 aneuploidy are associated with secondary myeloid neoplasms in these patients. Somatic mutations in STAT, DNMT3A and TET2 are prevalent in many other BMFS, such as LGL and VEXAS. Except for acquired AA, the clonal dynamics and trajectories, and cooccurrence of these aberrations in other BMFS are poorly understood. How these clonal events interact with epigenetic and proteomic changes are also unknown. In addition, the role of novel genetic defects in marrow failure is poorly characterized, such as mutations associated with inborn errors of immunity or complement pathways. Our aim is to elucidate this further using multi-omics, bulk/single cell DNA and RNA techniques as well as understand the epigenetics using ATAC-seq, and proteomics. The translation work will be correlated with clinical outcomes and laboratory parameters of patients with the particular BMFS cohort being investigated. OBJECTIVES: Primary Objective: To characterize the molecular aberrations in BMFS and to understand how clonality, epigenetics, and proteomics contribute to hematopoiesis over the course of disease using high resolution multi-omics characterization of hematopoietic stem and progenitor cells (HSPC), immune cells and other cellular composition in peripheral blood and bone marrow samples. Secondary Objectives: * To correlate the molecular findings with disease presentation and clinical outcomes (response to treatment, clonal evolution to secondary myeloid neoplasm, survival) * To correlate molecular findings with clinical laboratory data, cytokine, chemokine, soluble receptor levels and growth factors * To correlate findings with peripheral or marrow flow cytometry phenotyping * To correlate findings on this study with already performed germline or somatic mutational data * To compare the genomic, epigenomic and proteomic findings with healthy age matched controls
Study identification
- NCT ID
- NCT07102849
- Recruitment status
- Enrolling by invitation
- Study type
- Observational
- Phase
- Not listed
- Enrollment
- 1,400 participants
Conditions and interventions
Conditions
Interventions
Not listed
Eligibility (public fields only)
- Age range
- 2 Years to 120 Years
- Sex
- All
- Healthy volunteers
- Healthy volunteers not accepted
This page does not interpret eligibility. Detailed inclusion and exclusion criteria are on the official ClinicalTrials.gov record.
Study timeline
- Start date
- Sep 8, 2025
- Primary completion
- Jul 10, 2030
- Completion
- Jul 10, 2030
- Last update posted
- Dec 21, 2025
2025 – 2030
United States locations
- U.S. sites
- 1
- U.S. states
- 1
- U.S. cities
- 1
| Facility | City | State | ZIP | Site status |
|---|---|---|---|---|
| National Institutes of Health Clinical Center | Bethesda | Maryland | 20892 | — |
Site contact phone numbers, emails, and investigator names are intentionally not displayed here. Open the official ClinicalTrials.gov record for site contact information.
About this trial record page
- What this page shows
- Public field values for ClinicalTrials.gov record NCT07102849, including study identification, conditions, interventions, eligibility (age, sex, healthy volunteer), timeline, and U.S. site list.
- What this page does not do
- No medical advice, eligibility judgments, treatment recommendations, study quality scoring, or AI-generated medical summaries. No site contact phone numbers, emails, or investigator names.
- Where the data comes from
- Sourced from the official ClinicalTrials.gov public API. The official record is the source of truth.
- Last refresh
- Last update posted Dec 21, 2025 · Synced Sep 5, 2026
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Open the official record
The complete protocol, eligibility criteria, and contact information for NCT07102849 live on ClinicalTrials.gov.