Linking etiologies in humans and animal models: Studies of autism

Связь этиологий у человека и животных-моделей: исследования аутизма
Patricia M. Rodier, Jennifer L. Ingram, Barbara Tisdale, Victoria Croog
1997-03-01

animal modelautismcranial nerve motor nucleithalidomide exposurevalproic acid
Thalidomide has been shown to lead to a high rate of autism when exposure occurs during the 20th to 24th d of gestation. Both the critical period and the neurological deficits of the autistic cases indicate that they have sustained injuries to the cranial nerve motor nuclei. To determine whether such lesions characterize other cases of autism, the brain stem of an autistic case was compared to that of a control. The autopsy case showed abnormalities predicted by the thalidomide cases and evidence of shortening of the brain stem, a defect that could have occurred only during neural tube closure. To test whether animals can be similarly injured but remain viable, rats were treated with 350 mg/kg of valproic acid on day 11.5, 12, or 12.5 of gestation. Neuron counts showed reductions of cell numbers in the cranial nerve motor nuclei. Rats with motor neuron deficits also had cerebellar anomalies like those reported in studies of autistic cases, supporting the idea that these animals may be a useful model of the developmental injury that initiates autism.
1
An autistic human autopsy case showed predicted cranial nerve abnormalities and brain-stem shortening, indicating injury during neural tube closure.
2
Prenatal thalidomide exposure during gestational days 20–24 is associated with a high rate of autism and cranial nerve motor-nucleus injuries.
3
Rats with motor-neuron deficits also developed cerebellar anomalies resembling those reported in autistic individuals.
4
The findings support prenatal valproic-acid-treated rats as a model of developmental brain injury potentially initiating autism.
5
Valproic acid exposure in rats on gestational days 11.5–12.5 reduced neuron numbers in cranial nerve motor nuclei.

Autism-associated developmental injury of the brain stem and cranial nerve motor nuclei in humans and prenatal valproic-acid-exposed rats

Etiological and neuroanatomical similarities between human autism and prenatal animal-model injury, including cranial motor-neuron loss, brain-stem shortening, and cerebellar anomalies

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1997-03-01
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Patricia M. Rodier
Jennifer L. Ingram
Barbara Tisdale
Victoria Croog
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