Risk Factors That Increase the Chance of Developing Primary Graft Dysfunction After Lung Transplantation
NCT00552357
Cardiovascular Diseases, Lung Transplantation
Philadelphia, Pennsylvania, United States
View Trial DetailsNCT Number: NCT05837663
Demonstrate the relationship between dd-cfDNA levels and HLA antibodies in blood transplant recipient and Demonstrate the Molecular Microscope® (MMDx) Diagnostic System results in indication and protocol biopsies from lung transplants.
Interested in participating?
Request Info18 year and older
All sexes
Observational
The Alfred Hospital, Monash University, Melbourne, Australia
The current standard for assessment of rejection in lung transplants is a transbronchial biopsy (TBB) interpreted by histology according to International Society of Heart and Lung Transplantation (ISHLT) guidelines. This has considerable error rates, many due to the high disagreement among pathologists. There is a need for new methods of assessing TBBs. Furthermore, by analyzing different types of biopsies (TBBs and endobronchial - 3BMBs), we hope to improve the safety of the biopsy procedure, while maintaining its accuracy. The emergence of blood donor-derived cell-free DNA (dd-cfDNA) measurement offers a new opportunity for screening for rejection. To address the unmet need for precision and accuracy, the Alberta Transplant Applied Genomics Centre (ATAGC, University of Alberta) has developed a new diagnostic system - the Molecular Microscope® Diagnostic System (MMDx), which uses microarrays to define the genome-wide gene expression and interpret lung transplant rejection and injury ((chronic lung allograft dysfunction (CLAD) related changes)). Now a new screening test is being introduced: the monitoring of dd-cfDNA released in the blood by the heart during rejection. The Natera Inc dd-cfDNA Prospera® test is based on the massively multiplex polymerase chain reaction that targets 13,392 single nucleotide polymorphisms and targeted sequences are quantified by Next Generation Sequencing. The Prospera® test has been done on kidney transplant recipients and detected "active rejection" and differentiated it from borderline rejection and no rejection. However, Prospera® test was not examined (the dd-cfDNA results) in lung transplant recipients. dd-cf-DNA test for lung transplants must now be calibrated against MMDx that is based on global gene expression, the new standard for biopsy interpretation. The present study will calibrate centrally measured (Natera Inc) dd-cfDNA levels obtained at the time of an indication or protocol biopsy against the MMDx measurements of T cell-mediated rejection (TCMR), antibody-mediated rejection (ABMR-like) and tissue injury. The present study will compare dd-cfDNA and MMDx in 600 prospectively collected TBBs and 3BMBs for clinical indications and protocol, and accompanying 1800 blood samples, to calibrate the dd-cfDNA (Natera Inc.) levels against the MMDx biopsy diagnoses of TCMR, ABMR-like (and its stages), and injury, as well as central assessment of Human Leukocyte Antibody (HLA) antibody (One Lambda), interpreted centrally as donor specific antibody (DSA) based on the tissue typing results. This study is an extension of the INTERLUNG ClinicalTrials.gov identifier: NCT02812290.
Currently the study accrued 141 paired TBBs and 3BMBs, 182 TBBs, 267 corresponding blood samples for dd-cfDNA test and 159 for DSA test.
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Adult, Older adult
Exclusion criteria
Patients will be excluded from the study if they decline participation Are unable to give informed consent. Recipients of multiple organs, cancer patients and pregnant women
Time frame: 18 months
Set dd-cfDNA test cut-off values against the probability of T cell-mediated rejection in the biopsy (TBB and 3BMB) as reported by MMDx. Calibration of dd-cfDNA test cut-off values against the probability of T cell-mediated rejection in the biopsy as reported by MMDx.
Time frame: 18 months
Set dd-cfDNA test cut-off values against the probability of antibody-mediated rejection in the biopsy (TBB and 3BMB) as reported by MMDx.
Time frame: 18 months
Set dd-cfDNA test cut-off values against the probability of acute and chronic lung injury in the biopsy (TBB and 3BMB)as reported by MMDx.
Time frame: 6 months
Report new dd-cfDNA test cut-off values for rejection
Time frame: 6 months
Report new DD-cfDNA test cut-off values for lung injury
Time frame: 6 months
Record and compare the DSA status (positive or negative) based on centralized and local HLA antibody to histology diagnoses..
Time frame: 6 months
Calculate the sensitivity and specificity of dd-cfDNA for MMDx and histology diagnoses.
Time frame: 6 months
Determine if dd-cfDNA test will avoid need for indication biopsy when transplant function deteriorates - yes or no. This will be based on the consensus between participating clinicians.
Time frame: 6 months
Determine the values for dd-cfDNA for grades of response to treatment: no change, partial response, complete resolution.
Contact information is provided by the study sponsor or research team.
Konrad S Famulski, PhD DSc
CONTACT
Robert Polakowski, PhD
CONTACT
University of Alberta
Other
Trifecta-Lung cfDNA-MMDx Study: Comparing the Dd-cfDNA Test to MMDx Microarray Test and Central HLA Antibody Test
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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