Related Experiment Video
Updated: Aug 10, 2026

Construction of Vapor Chambers Used to Expose Mice to Alcohol During the Equivalent of all Three Trimesters of Human Development
Published on: July 13, 2014
Developmental toxicity of cysteamine in the rat: effects on embryo-fetal development
D A Beckman1, J J Mullin, F K Assadi
1Division of Developmental Biology, Nemours Research Programs, Alfred I. duPont Hospital for Children, Wilmington, Delaware 19899, USA. djbeck@voicenet.com
Insights
Cysteamine treatment for cystinosis in pregnant rats showed dose-dependent developmental toxicity. High doses caused fetal death, growth retardation, and birth defects like cleft palate, indicating risks during pregnancy.
Area of Science:
- Pharmacology
- Developmental Toxicology
- Pediatric Nephrology
Background:
- Cystinosis treatment involves cysteamine, improving lifespan and reducing complications.
- Potential benefits of cysteamine for pregnant women with cystinosis and their fetuses are being explored.
- Assessing cysteamine's reproductive and developmental safety is crucial for affected children and potential fetal treatment.
Purpose of the Study:
- To evaluate the developmental safety of in utero exposure to cysteamine in a rat model.
- To determine dose-dependent effects of cysteamine on fetal development, including survival, growth, and structural abnormalities.
Main Methods:
- Pregnant rats received oral cysteamine (as phosphocysteamine) from day 6.5 to 18.5 postconception.
- Doses administered were 0, 37.5, 75, 100, and 150 mg/kg/day.
- Fetuses were assessed on day 20.5 for survival, growth parameters, and external/skeletal malformations.
Main Results:
- Cysteamine induced dose-dependent developmental toxicity in rat fetuses.
- A no observed adverse effect level (NOAEL) was determined to be 75 mg/kg/day.
- Malformations (cleft palate, kyphosis), intrauterine growth retardation, and fetal death occurred at doses of 100-150 mg/kg/day without maternal toxicity.
Conclusions:
- Cysteamine exhibits developmental toxicity in rats, with specific malformations and growth issues at higher doses.
- The findings suggest a potential risk for fetal development at therapeutic doses, warranting caution.
- Further research is needed to understand the mechanisms underlying cysteamine's developmental toxicity.
Abstract:
The reproductive and developmental safety of cysteamine has become an important issue to children with cystinosis because renal transplants and treatment with cysteamine reduce the complications associated with cystinosis and increase the lifespan of the affected children. In addition, there is the potential to decrease the severity or the incidence of renal Fanconi syndrome with administration of cysteamine to pregnant women carrying fetuses with cystinosis, and to ease significantly the burden of this disease throughout their lives. If cysteamine increases significantly the risk of fetal death, growth retardation or birth defects at doses used to treat women with cystinosis, treatment of the affected female should cease during pregnancy and would not be considered for fetal treatment. The goal of this study was to assess the developmental safety of exposure in utero to cysteamine in the rat. Pregnant rats were given cysteamine (as phosphocysteamine) from day 6.5 through day 18.5 postconception and fetuses were assessed for survival, growth, and structural abnormalities on day 20.5. Cysteamine was administered orally in doses of 0, 37.5, 75, 100, or 150 mg/kg/day. Cysteamine produced dose-dependent developmental toxicity with an apparent no adverse effect observed level of 75 mg/kg/day. Specific malformations were associated with this effect (cleft palate, kyphosis), as well as intrauterine growth retardation and fetal death at 100-150 mg/kg/day, without signs of maternal toxicity. Investigations continue into the mechanism for the developmental toxicity of cysteamine.
Related Concept Videos
Meiosis vs. Mitosis
Before the start of mitosis and meiosis I, the cell synthesizes DNA, resulting in two homologous copies of each chromosome. DNA synthesis is...
Teratogenicity

