Lung transplant biopsy bites.
ProcedureIn the second phase of the study, two biopsy bites from the same patient will be collected to assess tissue sampling variability.
NCT Number: NCT02812290
Objective: To evaluate the potential impact of molecular phenotyping of transbronchial biopsies in lung transplant recipients with allograft dysfunction, and the potential for developing a safer endobronchial mucosal biopsy format.
Interested in participating?
Request Info18 year and older
All sexes
Observational
The Alfred Hospital, Monash University, Melbourne, Australia
The current standard for biopsy-based diagnoses of dysfunction of lung transplants is the International Society of Heart and Lung Transplantation (ISHLT) classification applied to transbronchial biopsies, which represents an arbitrary international consensus. Recent data-driven approaches using molecular and conventional technologies indicate that this system produces frequently incorrect diagnoses with potential harm to patients due to inappropriate treatment. especially in relationship to the correct diagnosis of chronic lung allograft dysfunction is a pressing need. To address this unmet need and improve diagnostics in the area of organ transplantation, the Alberta Transplant Applied Genomics Centre (ATAGC, University of Alberta) has developed a new diagnostic system - the Molecular Microscope® Diagnostic System (MMDx) that interprets biopsies in terms of their molecular phenotype. The MMDx, developed first in kidney transplant biopsies with thoroughly established phenotypes, will now be adapted to lung transplant transbronchial biopsies (TBBs). Microarray analysis of lung allograft biopsy specimens will be compared to conventional allograft phenotyping, including clinical, physiologic, radiographic and histological assessment. The present study will use the MMDx™ system to assess and report TBBs, and validate and refine this system in 300 unselected prospectively collected lung TBBs. A subset of the study will examine the third bifurcation mucosal endobronchial biopsies (3BMBs) paired with TBBs from 50 patients to see if the safer 3BMBs can substitute for the TBB to be used by MMDx™. Due to a considerable interest and support from participating Centers, the study is further extended and collected 1032 TBBs and 602 3BMBs from 849 patients. This this is the extension of the INTERLUNG study - INTERLUNGEX.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
In the second phase of the study, two biopsy bites from the same patient will be collected to assess tissue sampling variability.
Time frame: two years
Molecular classifier predicts antibody mediated and T cell mediated rejection, and chronic allograft dysfunction.
Time frame: two years
Compare MMDx readings to standard-of-care TBB histology and clinical diagnosis of CLAD.
Time frame: two years
Molecular classifier predicts antibody mediated and T cell mediated rejection, and chronic allograft dysfunction.
Time frame: two years
Compare MMDx-3BMB readings to MMDx-TBB readings and clinical diagnosis of CLAD
Time frame: two years
Predict and monitor response to anti-rejection treatment.
Contact information is provided by the study sponsor or research team.
Konrad S Famulski, PhD
CONTACT
Robert Polakowski, PhD
CONTACT
University of Alberta
Other
Multi-Centric Observational Study to Analyze the Diagnostic Molecular Features in the Clinical Setting of Lung Allograft Biopsies
Acronym: INTERLUNG
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