Molecular diagnosis of kidney transplant failure based on urine

Antje Wiesener1, Karl X Knaup2, Maike Büttner-Herold3

  • 1Institute of Human Genetics, University Hospital Erlangen, Friedrich-Alexander-University Erlangen-Nürnberg, Erlangen, Germany.

Insights

This study identified a novel mutation in the OFD1 gene causing oral-facial-digital syndrome in kidney transplant donors. Despite the donor

Area of Science:

  • Nephrology
  • Genetics
  • Transplantation

Background:

  • Organ shortage necessitates using extended criteria donor organs.
  • Increasing transplanted organ lifespan requires accurate diagnosis and management of detrimental influences.
  • Chronic kidney transplant failure necessitates identifying underlying causes, including rare genetic disorders.

Purpose of the Study:

  • To investigate the cause of chronic decline in kidney transplant function over a decade.
  • To identify the genetic basis of oral-facial-digital syndrome in a donor and its impact on kidney allografts.
  • To assess the long-term outcome of kidney transplantation from a donor with a rare genetic ciliopathy.

Main Methods:

  • Clinical evaluation of kidney transplant recipients with declining function.
  • Review of donor allocation documents mentioning oral-facial-digital syndrome.
  • Molecular diagnosis via culturing donor tubular cells from recipient urine.
  • Next-generation panel sequencing of donor DNA from urinary cells.

Main Results:

  • A kidney transplant recipient experienced a decade-long decline in function with multiple cysts.
  • Exclusion of common causes of chronic transplant failure.
  • Identification of a novel truncating mutation in the OFD1 gene in donor tubular cells, confirming oral-facial-digital syndrome.
  • The identified mutation explained the kidney transplant pathology and was present in a second kidney allograft.
  • Successful transplantation in 5 recipients from this donor, despite the genetic condition.

Conclusions:

  • Oral-facial-digital syndrome, caused by OFD1 mutations, can affect kidney allografts.
  • Molecular diagnosis can be achieved years post-transplantation using recipient urine.
  • Extended criteria donation from individuals with rare genetic diseases can lead to successful long-term transplant outcomes.
  • Accurate diagnosis of donor conditions is crucial for managing transplanted organ health.

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