Critical periods of vulnerability for the developing nervous system: evidence from humans and animal models.
Критические периоды уязвимости развивающейся нервной системы: данные, полученные у человека и на животных моделях.
2000-06-01
SCID: 54.1/ktuc958g
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age-related functional declinecritical developmental periodsdevelopmental neurotoxicityenvironmental neurotoxicantsneural development
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Abstract (AI)
Vulnerable periods during the development of the nervous system are sensitive to environmental insults because they are dependent on the temporal and regional emergence of critical developmental processes (i.e., proliferation, migration, differentiation, synaptogenesis, myelination, and apoptosis). Evidence from numerous sources demonstrates that neural development extends from the embryonic period through adolescence. In general, the sequence of events is comparable among species, although the time scales are considerably different. Developmental exposure of animals or humans to numerous agents (e.g., X-ray irradiation, methylazoxymethanol, ethanol, lead, methyl mercury, or chlorpyrifos) demonstrates that interference with one or more of these developmental processes can lead to developmental neurotoxicity. Different behavioral domains (e.g., sensory, motor, and various cognitive functions) are subserved by different brain areas. Although there are important differences between the rodent and human brain, analogous structures can be identified. Moreover, the ontogeny of specific behaviors can be used to draw inferences regarding the maturation of specific brain structures or neural circuits in rodents and primates, including humans. Furthermore, various clinical disorders in humans (e.g., schizophrenia, dyslexia, epilepsy, and autism) may also be the result of interference with normal ontogeny of developmental processes in the nervous system. Of critical concern is the possibility that developmental exposure to neurotoxicants may result in an acceleration of age-related decline in function. This concern is compounded by the fact that developmental neurotoxicity that results in small effects can have a profound societal impact when amortized across the entire population and across the life span of humans.
Key Findings
1
Cross-species similarities in developmental sequences and behavior provide a basis for using animal models to infer maturation of human brain structures and circuits.
2
Developmental exposure to agents including radiation, ethanol, lead, methyl mercury, and chlorpyrifos can interfere with neural development and cause neurotoxicity.
3
Neural development extends from embryonic stages through adolescence, creating multiple periods when environmental insults can disrupt critical processes.
4
Small developmental neurotoxic effects may produce substantial societal consequences across populations and lifespans, potentially accelerating age-related functional decline.
5
Vulnerability depends on the timing and regional emergence of proliferation, migration, differentiation, synaptogenesis, myelination, and apoptosis.
Research Object
Developing nervous system (human and animal models) during vulnerable developmental periods
Research Subject
Vulnerable developmental periods and the effects of environmental insults and neurotoxicant exposure on neural development and later function
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2000-06-01
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