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Updated: May 18, 2026

A Mouse Model of in Utero Transplantation
Published on: January 27, 2011
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
Abstract:
Methylmalonic aciduria is a rare disorder caused by an inborn error of organic acid metabolism. Current treatment options are limited and generally focus on disease management. We aimed to investigate the use of fetal progenitor cells to treat this disorder using a mouse model with an intermediate form of methylmalonic aciduria. Fetal liver cells were isolated from healthy fetuses at embryonic day 15-17 and intravenously transplanted into sub-lethally irradiated mice. Liver donor cell engraftment was determined by PCR. Disease correction was monitored by urine and blood methylmalonic acid concentration and weight change. Initial studies indicated that pre-transplantation sub-lethal irradiation followed by transplantation with 5 million cells were suitable. We found that a double dose of 5 million cells (1 week apart) provided a more effective treatment. Donor cell liver engraftment of up to 5% was measured. Disease correction, as defined by a decrease in blood methylmalonic acid concentration, was effected in methylmalonic acid mice transplanted with a double dose of cells and who showed donor cell liver engraftment. Mean plasma methylmalonic acid concentration decreased from 810 ± 156 (sham transplanted) to 338 ± 157 μmol/L (double dose of 5 million cells) while mean blood C3 carnitine concentration decreased from 20.5 ± 4 (sham transplanted) to 5.3 ± 1.9 μmol/L (double dose of 5 million cells). In conclusion, higher levels of engraftment may be required for greater disease correction; however these studies show promising results for cell transplantation biochemical correction of a metabolic disorder.
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.

