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Identification of Molecular Markers of Delayed Graft Function Based on the Regulation of Biological Ageing
Authors:Dagmara McGuinness  Johannes Leierer  Olivier Shapter  Suhaib Mohammed  Marc Gingell-Littlejohn  David B Kingsmore  Ann-Margaret Little  Julia Kerschbaum  Stefan Schneeberger  Manuel Maglione  Silvio Nadalin  Sylvia Wagner  Alfred K?nigsrainer  Emma Aitken  Henry Whalen  Marc Clancy  Alex McConnachie  Christian Koppelstaetter  Karen S Stevenson  Paul G Shiels
Abstract:IntroductionDelayed graft function is a prevalent clinical problem in renal transplantation for which there is no objective system to predict occurrence in advance. It can result in a significant increase in the necessity for hospitalisation post-transplant and is a significant risk factor for other post-transplant complications.MethodologyThe importance of microRNAs (miRNAs), a specific subclass of small RNA, have been clearly demonstrated to influence many pathways in health and disease. To investigate the influence of miRNAs on renal allograft performance post-transplant, the expression of a panel of miRNAs in pre-transplant renal biopsies was measured using qPCR. Expression was then related to clinical parameters and outcomes in two independent renal transplant cohorts.ResultsHere we demonstrate, in two independent cohorts of pre-implantation human renal allograft biopsies, that a novel pre-transplant renal performance scoring system (GRPSS), can determine the occurrence of DGF with a high sensitivity (>90%) and specificity (>60%) for donor allografts pre-transplant, using just three senescence associated microRNAs combined with donor age and type of organ donation.ConclusionThese results demonstrate a relationship between pre-transplant microRNA expression levels, cellular biological ageing pathways and clinical outcomes for renal transplantation. They provide for a simple, rapid quantitative molecular pre-transplant assay to determine post-transplant allograft function and scope for future intervention. Furthermore, these results demonstrate the involvement of senescence pathways in ischaemic injury during the organ transplantation process and an indication of accelerated bio-ageing as a consequence of both warm and cold ischaemia.
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