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Published on: November 20, 2015
Reflex cardiorespiratory events from esophageal origin are heightened by preterm birth
Stéphanie Nault1, Nathalie Samson1, Charlène Nadeau1
1Neonatal Respiratory Research Unit, Departments of Pediatrics and Pharmacology-Physiology, Université de Sherbrooke, Quebec, Canada; and.
Insights
Gastroesophageal refluxes trigger cardiorespiratory events in preterm infants. Esophageal stimulation in preterm lambs caused heightened cardiorespiratory inhibition, partly mediated by C-fibers.
Area of Science:
- Neonatology
- Cardiorespiratory Physiology
- Gastroenterology
Background:
- Gastroesophageal refluxes' role in preterm infant cardiorespiratory events is debated.
- Esophageal receptor stimulation can trigger cardiorespiratory reflexes in term newborns, but this is less understood in preterm infants.
Purpose of the Study:
- To characterize cardiorespiratory reflexes from esophageal receptors in newborn lambs.
- To investigate if preterm birth amplifies reflex cardiorespiratory inhibition.
- To determine the involvement of C-fibers in these reflexes.
Main Methods:
- Polysomnography in full-term and preterm lambs (n=8 and n=10).
- Esophageal stimulations (balloon inflation, HCl injection) of upper and/or lower esophagus.
- C-fiber blockade using capsaicin in full-term lambs.
Main Results:
- Esophageal stimulation elicited inhibitory cardiorespiratory reflexes, laryngeal closure, swallowing, coughing, increased blood pressure, and arousal.
- Preterm birth significantly heightened cardiorespiratory inhibition.
- Simultaneous upper and lower esophageal stimulation caused the most pronounced inhibition.
- C-fiber blockade reduced the cardiorespiratory inhibition.
Conclusions:
- Esophageal stimulation induces inhibitory cardiorespiratory reflexes partly mediated by C-fibers.
- These reflexes are more pronounced in preterm lambs.
- Further research is needed for clinical relevance in conditions like neonatal infection.
Abstract:
The involvement of gastroesophageal refluxes in cardiorespiratory events of preterm infants remains controversial. While a few studies in full-term newborn animals have shown that stimulation of esophageal receptors leads to cardiorespiratory reflexes, the latter remain largely unknown, especially after premature birth. The present study aimed to 1) characterize the cardiorespiratory reflexes originating from esophageal receptors in newborn lambs and 2) test the hypotheses that preterm birth enhances reflex cardiorespiratory inhibition and that C-fibers are involved in these reflexes. Eight full-term lambs and 10 lambs born 14 days prematurely were studied. Following surgical instrumentation, a 6-h polysomnography was performed without sedation to record electrocardiogram, respiratory movements, arterial pressure, laryngeal constrictor muscle activity, state of alertness, and hemoglobin oxygen saturation. Five esophageal stimulations of the upper and/or lower esophagus, including rapid balloon inflation and/or HCl injection, were performed in random order. A second recording was performed in full-term lambs 24 h later, after C-fiber blockade by capsaicin. Results confirmed that esophageal stimulations induced inhibitory cardiorespiratory reflexes combined with protective mechanisms, including laryngeal closure, swallowing, coughing, increased arterial pressure, and arousal. Preterm birth heightened cardiorespiratory inhibition. The strongest cardiorespiratory inhibition was observed following simultaneous stimulation of the lower and upper esophagus. Finally, cardiorespiratory inhibition was decreased after C-fiber blockade. In conclusion, esophageal stimulation induces inhibitory cardiorespiratory reflexes, which are partly mediated by C-fibers and more pronounced in preterm lambs. Clinical relevance of these findings requires further studies, especially in conditions associated with increased cardiorespiratory events, e.g., neonatal infection.NEW & NOTEWORTHY Preterm birth heightens the cardiorespiratory events triggered by esophageal stimulation. The most extensive cardiorespiratory events are induced by simultaneous stimulation of the proximal and distal esophagus.
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