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Diagnosis and Phenotype Characterisation Using Genomics in Patients With Inherited Bone Marrow Failure (IBMDx Study)

Diagnosis, Discovery and Novel Phenotype Characterisation Using Multimodal Genomics in Patients With Inherited Bone Marrow Failure and Related Disorders (IBMDx Study)

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05196789
Acronym
IBMDx
Enrollment
350
Registered
2022-01-19
Start date
2022-03-18
Completion date
2025-12-31
Last updated
2024-11-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hematologic Diseases, Inherited BMF Syndrome, Inherited Platelet Disorder

Keywords

bone marrow failure syndrome, whole genome sequencing, hematological diseases, pancytopenia

Brief summary

This project seeks to perform whole genome sequence (WGS) and whole transcriptome sequence (WTS) analysis on 350 patients with suspected inherited bone marrow failure syndromes and related disorder (IBMFS-RD) in order to increase the genomic diagnostic rate in IBMFS.

Detailed description

IBMFS-RD are a heterogeneous group of rare diseases resulting in significant morbidity and early mortality. These syndromes are individually and collectively rare (affecting \<1 per 10,000 people) and a significant proportion are unexplained by mutations in known genes. Whilst rare, these familial conditions are also likely underdiagnosed due to their relatively recent description and also due to lack of accessible genomic testing. For patients with clinically suspected IBMFS-RD, receiving a genomic diagnosis is critical to: * Establish a precise and reliable diagnosis (including distinguishing a monogenic aetiology from more common acquired or autoimmune causes of bone marrow failure which have dramatically different treatments (e.g. immunosuppression) * Inform prognosis, clinical course, optimal treatment choice and screening for non-haematological organ dysfunction * Optimise allogeneic haematopoietic stem cell transplant (HSCT) chemotherapy conditioning and minimise regimen-related toxicity * Inform risk-benefit analysis of performing allogeneic HSCT to potentially prioritise other therapies (including novel gene therapy strategies) * Avoiding the catastrophe of HSCT donation from occult genetically affected relatives * Provide counselling (including stem cell donor counselling) and offer genetic testing for potentially affected family members * Provide accurate reproductive counselling and reproductive options to affected individuals This study aims to provide WGS and WTS to a national cohort of patients with IBMFS-RD to determine diagnostic rate, health economic impact, health implementation challenges and other exploratory endpoints.

Interventions

DIAGNOSTIC_TESTwhole genome and transcriptome sequencing

To perform whole genome/transcriptome analysis of patients in a cohort of up to 350 Australian patients with IBMFS-RD

Sponsors

National Health and Medical Research Council, Australia
CollaboratorOTHER
University of Melbourne
CollaboratorOTHER
Peter MacCallum Cancer Centre, Australia
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
3 Months to No maximum
Healthy volunteers
No

Inclusion criteria

1. age ≥ 3 months 2. able to give informed consent (or parent/guardian able to give informed consent) 3. a clinicopathological diagnosis (or differential diagnosis) of inherited bone marrow failure syndrome or related disorder (IBMFS-RD) as per the study team

Exclusion criteria

1. A clinicopathological diagnosis of an acquired bone marrow failure syndrome (including acquired aplastic anaemia and hypoplastic myelodysplastic syndrome) as per the study team 2. Existing definitive genomic diagnosis for patient's haematological phenotype

Design outcomes

Primary

MeasureTime frameDescription
Definitive IBMFS-RD diagnosis3-12 months post baselineIBMFS-RD diagnosis - An initial analysis of a panel of \ 100 genes of established relevance to IBMFS-RD phenotype will be performed on all patients. If no molecular diagnosis is made from the panel of genes, further analysis on the genomic data will be performed using the best practice analytical tools and techniques. All results will be communicated to patients.

Secondary

MeasureTime frameDescription
Develop a whole transcriptome gene expression classifier4 yearsTo develop a whole transcriptome gene expression classifier to aid diagnosis of IBMFS-RD.
Cost-effectiveness of genomic testing in patients with suspected IBMFS-RD4 yearsThe cost-effectiveness of genomic testing is assessed by the differences in costs and quality of life associated with genomic testings compared with standard of care. Costs being considered include direct medical costs incurred within the health system arising from utilisation of hospital services and drug dispensing. Quality of life is assessed by EORTC-QLQ-C30 version 3 and CHU9D questionnaires for adult and paediatric patients respectively.
Budget-impact of genomic testing in patients with suspected IBMFS-RD4 yearsEvaluation of budget-impact of genomic testing includes examining the financial and operational sustainability as well as scalability of offering genomic testing beyond the trial period.
Health implementation analyses regarding the acceptability of genomic testing4 yearsThe acceptability of comprehensive and centralised genomic testing in IBMFS-RD to patients is measured by a patient acceptability questionnaire which assesses patients' view and understanding of genomic testing.
Populate Registry4 yearsTo populate the Aplastic Anaemia and Other Bone Marrow Failure Syndromes Registry (AAR, Monash University) with consenting patients with IBMFS-RD to facilitate long-term follow up.

Countries

Australia

Contacts

Primary ContactKelsey Man, PhD
kelsey.man@petermac.org61 3 8559 5000
Backup ContactPiers Blombery, MBBS(Hons)
piers.blombery@petermac.org

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 5, 2026