• Pediatric research · Feb 2003

    Consequences of in utero caffeine exposure on respiratory output in normoxic and hypoxic conditions and related changes of Fos expression: a study on brainstem-spinal cord preparations isolated from newborn rats.

    • Laurence Bodineau, Florence Cayetanot, Fadoua Sådani-Makki, Véronique Bach, Françoise Gros, Aurélia Lebleu, Thibault Collin, and Alain Frugière.
    • Laboratoire Environnement Toxique Périnatal et Adaptations Physiologiques et Comportementales, EA 2088, Faculté de Médecine, 3 rue des Louvels, 80036 Amiens cedex 1, France. Laurence.Bodineau@sa.u-picardie.fr
    • Pediatr. Res. 2003 Feb 1; 53 (2): 266-73.

    AbstractSeveral aspects of the central regulation of respiratory control have been investigated on brainstem-spinal cord preparations isolated from newborn rats whose dam was given 0.02% caffeine in water as drinking fluid during the whole period of pregnancy. Analysis of the central respiratory drive estimated by the recording of C4 ventral root activity was correlated to Fos ponto-medullary expression. Under normoxic conditions, preparations obtained from the caffeine-treated group of animals displayed a higher respiratory frequency than observed in the control group (9.2 +/- 0.5 versus 7.2 +/- 0.6 burst/min). A parallel Fos detection tends to indicate that the changes of the respiratory rhythm may be due to a decrease in neuronal activity of medullary structures such as the ventrolateral subdivision of the solitary tract, the area postrema, and the nucleus raphe obscurus. Under hypoxic conditions, the preparations displayed a typical hypoxic respiratory depression associated with changes in the medullary Fos expression pattern. In addition, the hypoxic respiratory depression is clearly emphasized after in utero exposure to caffeine and coincides with an increased Fos expression in the area postrema and nucleus raphe obscurus, two structures in which it is not increased in the absence of caffeine. Taken together, these results support the idea that in utero caffeine exposure could affect central respiratory control.

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