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Diagnosis of Hirschsprung's Disease by Immunostaining Rectal Suction Biopsies for Calretinin, S100 Protein and Protein Gene Product 9.5
Published on: April 26, 2019
Hirschsprung-like disease is exacerbated by reduced de novo GMP synthesis
Insights
Mycophenolate, a drug inhibiting nucleotide synthesis, impairs enteric nervous system development, causing Hirschsprung-like pathology in mice. This finding suggests some Hirschsprung disease cases may be preventable by avoiding such medications.
Area of Science:
- Developmental biology
- Neuroscience
- Pharmacology
Background:
- Hirschsprung disease (HSCR) is a birth defect caused by failed enteric nervous system (ENS) colonization of the bowel.
- Genetic factors explain some HSCR variability, but nongenetic influences are suspected.
Purpose of the Study:
- To investigate the role of nongenetic factors in ENS development and HSCR.
- To identify drugs that disrupt ENS formation.
Main Methods:
- Drug screening in zebrafish identified mycophenolate as an ENS disruptor.
- Mycophenolate treatment in mice and cultured cells assessed effects on ENS precursor proliferation, migration, and survival.
- Mouse models of HSCR were used to evaluate mycophenolate's impact on disease penetrance and severity.
Main Results:
- Mycophenolate impaired ENS precursor proliferation, delayed migration, and caused aganglionosis in mice.
- In HSCR mouse models, mycophenolate exacerbated pathology.
- Mycophenolate reduced ENS precursor migration, proliferation, and survival in vitro.
- Reduced proliferation, not migration, was identified as the primary cause of mycophenolate-induced defects.
Conclusions:
- De novo guanine nucleotide biosynthesis is critical for ENS development.
- Mycophenolate is the first identified drug causing major ENS malformations and Hirschsprung-like pathology in mammals.
- Some Hirschsprung disease cases may be preventable by avoiding specific medications during pregnancy.
Abstract:
Hirschsprung disease (HSCR) is a partially penetrant oligogenic birth defect that occurs when enteric nervous system (ENS) precursors fail to colonize the distal bowel during early pregnancy. Genetic defects underlie HSCR, but much of the variability in the occurrence and severity of the birth defect remain unexplained. We hypothesized that nongenetic factors might contribute to disease development. Here we found that mycophenolate, an inhibitor of de novo guanine nucleotide biosynthesis, and 8 other drugs identified in a zebrafish screen impaired ENS development. In mice, mycophenolate treatment selectively impaired ENS precursor proliferation, delayed precursor migration, and induced bowel aganglionosis. In 2 different mouse models of HSCR, addition of mycophenolate increased the penetrance and severity of Hirschsprung-like pathology. Mycophenolate treatment also reduced ENS precursor migration as well as lamellipodia formation, proliferation, and survival in cultured enteric neural crest–derived cells. Using X-inactivation mosaicism for the purine salvage gene Hprt, we found that reduced ENS precursor proliferation most likely causes mycophenolate-induced migration defects and aganglionosis. To the best of our knowledge, mycophenolate is the first medicine identified that causes major ENS malformations and Hirschsprung-like pathology in a mammalian model. These studies demonstrate a critical role for de novo guanine nucleotide biosynthesis in ENS development and suggest that some cases of HSCR may be preventable.
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