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Assessment of biological organ age using molecular pathology in pre-transplant kidney biopsies.
Zhang, Roy; Trotter, Patrick B; McCaffrey, James; Fitzroy, Rory; Trivioli, Giorgio; Stewart, Benjamin J; Ferdinand, John R; Loudon, Kevin W; Riding, Alexandra; West, Jonathan; Ferro, Ashley; Clatworthy, Menna R.
Afiliação
  • Zhang R; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Trotter PB; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • McCaffrey J; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK; Department of Pathology, Cambridge University Hospitals NHS Foundation Trust, Cambridge, UK.
  • Fitzroy R; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Trivioli G; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Stewart BJ; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK; Cellular Genetics, Wellcome Sanger Institute, Hinxton, UK.
  • Ferdinand JR; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Loudon KW; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Riding A; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • West J; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Ferro A; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK.
  • Clatworthy MR; Molecular Immunity Unit, University of Cambridge Department of Medicine, Cambridge, UK; Cellular Genetics, Wellcome Sanger Institute, Hinxton, UK. Electronic address: mrc38@cam.ac.uk.
Kidney Int ; 2024 Apr 29.
Article em En | MEDLINE | ID: mdl-38692408
ABSTRACT
Organ shortage is a major challenge in kidney transplantation but the use of older donors, often with co-morbidities, is hampered by inconsistent outcomes. Methods of accurately stratifying marginal donor organs by clinical and histological assessment are lacking. To better understand organ variability, we profiled the transcriptomes of 271 kidneys from deceased donors at retrieval. Following correction for biopsy composition, we assessed molecular pathways that associated with delayed, and sub-optimal one-year graft function. Analysis of cortical biopsies identified an adaptive immune gene-rich module that significantly associated with increasing age and worse outcomes. Cellular deconvolution using human kidney reference single cell transcriptomes confirmed an increase in kidney-specific B and T cell signatures, as well as kidney macrophage, myofibroblast and fibroblast gene sets in this module. Surprisingly, innate immune pathway and neutrophil gene signature enrichment was associated with better outcomes. Thus, our work uncovers cellular molecular features of pathological organ ageing, identifiable at kidney retrieval, with translational potential.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article