Article Synopsis

  • Certain substances during pregnancy can disrupt brain development in offspring, leading to long-term cognitive issues.
  • Researchers tested adenosine type 2A receptor (A2AR) antagonists, including caffeine, on pregnant mice and found delayed development of GABA neurons in their offspring's brains.
  • Offspring exposed to these antagonists showed increased seizure susceptibility, loss of GABA neurons, and cognitive deficits as adults, highlighting potential risks of caffeine and similar substances during pregnancy.

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Article Abstract

Consumption of certain substances during pregnancy can interfere with brain development, leading to deleterious long-term neurological and cognitive impairments in offspring. To test whether modulators of adenosine receptors affect neural development, we exposed mouse dams to a subtype-selective adenosine type 2A receptor (A2AR) antagonist or to caffeine, a naturally occurring adenosine receptor antagonist, during pregnancy and lactation. We observed delayed migration and insertion of γ-aminobutyric acid (GABA) neurons into the hippocampal circuitry during the first postnatal week in offspring of dams treated with the A2AR antagonist or caffeine. This was associated with increased neuronal network excitability and increased susceptibility to seizures in response to a seizure-inducing agent. Adult offspring of mouse dams exposed to A2AR antagonists during pregnancy and lactation displayed loss of hippocampal GABA neurons and some cognitive deficits. These results demonstrate that exposure to A2AR antagonists including caffeine during pregnancy and lactation in rodents may have adverse effects on the neural development of their offspring.

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http://dx.doi.org/10.1126/scitranslmed.3006258DOI Listing

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