Fetal progenitor cell transplantation treats methylmalonic aciduria in a mouse model

Nicole E Buck1, Samuel D Pennell, Leonie R Wood

  • 1Metabolic Research, Murdoch Childrens Research Institute, The University of Melbourne, Department of Paediatrics, Royal Children's Hospital, Flemington Road, Parkville, VIC 3052, Australia. nicole.buck@mcri.edu.au

Insights

Fetal progenitor cell transplantation shows promise for treating methylmalonic aciduria, a rare metabolic disorder. A double dose of cells improved biochemical markers in a mouse model, indicating potential therapeutic benefits.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Genetics

Background:

  • Methylmalonic aciduria is a rare inborn error of organic acid metabolism.
  • Current treatments for methylmalonic aciduria are limited and focus on disease management.
  • Fetal progenitor cell transplantation is explored as a novel therapeutic strategy.

Purpose of the Study:

  • To investigate the efficacy of fetal progenitor cell transplantation in treating methylmalonic aciduria.
  • To establish a mouse model for studying methylmalonic aciduria treatment using cell transplantation.

Main Methods:

  • Fetal liver cells were isolated from healthy mouse fetuses.
  • Cells were intravenously transplanted into sub-lethally irradiated mice with methylmalonic aciduria.
  • Donor cell engraftment was assessed by PCR; disease correction was monitored via methylmalonic acid levels and weight changes.

Main Results:

  • A double dose of 5 million fetal liver cells, administered one week apart, proved more effective than a single dose.
  • Donor cell liver engraftment reached up to 5%.
  • Transplanted mice showed significant decreases in plasma methylmalonic acid (from 810 to 338 μmol/L) and blood C3 carnitine (from 20.5 to 5.3 μmol/L).

Conclusions:

  • Fetal progenitor cell transplantation demonstrates biochemical correction of methylmalonic aciduria in a mouse model.
  • Higher levels of donor cell engraftment may be necessary for more substantial disease correction.
  • This study presents promising results for cell transplantation as a treatment for this metabolic disorder.

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