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Published on: January 27, 2019
Cisapride decreases gastroesophageal reflux in preterm infants
R L Ariagno1, M A Kikkert, M Mirmiran
1Department of Pediatrics, Stanford University, Palo Alto, California 94304-1510, USA. rla@stanford.edu
Insights
Cisapride effectively treats gastroesophageal reflux (GER) and reflux-associated apnea in preterm infants, significantly reducing reflux index and apnea events. Some infants required higher doses, while a few experienced cardiac side effects.
Area of Science:
- Neonatal Medicine
- Pediatric Gastroenterology
- Pharmacology
Background:
- Gastroesophageal reflux (GER) is common in preterm infants, potentially causing apnea and feeding intolerance.
- Cisapride is used for GER in older children, but its efficacy and safety in preterm infants were not well-established.
- Previous diagnosis and treatment of GER in preterm infants often relied on clinical judgment and empirical dosing.
Purpose of the Study:
- To prospectively evaluate the efficacy of cisapride in treating GER and reflux-associated apnea (RAAP) in preterm infants.
- To establish a systematic approach for diagnosing and treating GER in this vulnerable population.
- To assess the safety of cisapride, particularly concerning cardiac effects like prolonged QTc interval.
Main Methods:
- A 1-year prospective study involving 24 preterm infants (24-36 weeks gestational age) with suspected GER.
- 24-hour esophageal pH monitoring and polysomnography were performed before and after cisapride treatment (0.09-0.25 mg/kg every 6 hours).
- Parameters assessed included reflux index (RI), number/duration of reflux episodes, and apnea events (central, obstructive, mixed), with cardiac monitoring for QTc prolongation.
Main Results:
- Cisapride significantly reduced the reflux index (RI) from 16.6 to 9.1 and the number of prolonged reflux episodes.
- 67% of infants responded to the minimum effective dose (0.09 mg/kg/day); 33% required a dose increase for improvement.
- A significant decrease in reflux-associated apnea (RAAP) was observed, though apnea indexes showed minimal changes in many infants; 3 infants discontinued cisapride due to QTc prolongation.
Conclusions:
- Cisapride is effective in reducing GER and RAAP in preterm infants, with most responding to standard or increased doses.
- Systematic pH monitoring and treatment adjustments improve care and potentially reduce toxicity risks.
- Close cardiac monitoring is essential due to the risk of QTc prolongation with cisapride use in preterm infants.
Objective:
Gastrointestinal prokinetic agents, such as cisapride, are commonly used in pediatric practice to improve gastric emptying, to decrease emesis, to improve lower esophageal sphincter tone, and to improve irritability and feeding aversion associated with gastroesophageal reflux (GER). Although cisapride seems to be effective in infants from 2 months to 14 years old, data for younger and preterm infants are not available. Whether reflux is a significant cause of reflex apnea or feeding intolerance in the preterm infant is controversial. The objective of this 1-year prospective study, started in 1998, was to determine the efficacy of cisapride for treatment of reflux and reflux-associated apnea (RAAP) in preterm infants. Before this study, the diagnosis of reflux was often made clinically and the effect of therapy on reflux or the decision to increase the dose of cisapride was made empirically. The clinical bias was that persistent apnea, not responding to caffeine, was caused by GER. We reasoned that a systematic approach to the diagnosis and treatment of reflux would improve the care of preterm infants and reduce the risk of toxicity, especially if an increased dose of cisapride showed no improvement in reflux or apnea.
Study Design:
Twenty-four preterm infants (24-36 weeks' gestational age) had clinical apnea/pH studies when they were referred by the attending neonatologist for suspected GER. These infants were born at 28.8 +/- 3.1 weeks with birth weight of 1169 +/- 387 g (range: 631-2263 g). Each infant was studied before and 8 days after starting cisapride treatment. Cisapride dose was 0.09 to 0.25 mg/kg every 6 hours enterally. Treatment decisions regarding dose of cisapride were the responsibility of the attending neonatologist. The pH was recorded continuously for 24 hours at 0.25 Hz and was analyzed using EsopHogram software. A single sensor pH catheter was inserted to ~2 cm above the esophageal gastric junction. GER was defined as a drop in esophageal pH below 4.0 for a least 5 seconds, or pathologic GER was defined as a reflux index (RI) >2 standard deviation (SD) from the mean based on published norms for term infants. The following parameters were calculated from the pH recording: number of reflux events per 24 hours, duration of the longest episode, number of episodes >5 minutes per 24 hours, and RI, ie, percentage of time with pH <4.0. Each study had a combined time-lapse video recording and multichannel digital recording. Recorded parameters were: continuous pulse oximetry, electrocardiogram, respiratory effort (piezo sensor), and airflow (temperature sensor at nostrils and mouth). The recording was scored for central apneas of 10 to 14 seconds and >/=15 seconds (prolonged) and >/=10 seconds for obstructive and mixed apneas. RAAP was scored when an apnea (irrespective of the type) occurred within 1 minute of a GER event. Baseline, after cisapride, and follow-up electrocardiograms were performed because of concern about prolonged QTc and cardiac arrhythmias. The infants were 35.6 +/- 4.5 weeks postconceptional age when first studied. Twelve infants (mean birth weight: 1821 +/- 749 g; gestational age: 32 +/- 2 weeks; postconceptional age: 35.6 +/- 2.6 weeks) were identified retrospectively as controls because their baseline GER parameters were within the normal range using Vandenplas' criteria.
Results:
Overall, cisapride treatment significantly improved the RI from 16.6 +/- 15.2 to 9.1 +/- 8.4 SD. The number of reflux episodes >/=5 minutes was reduced from 7.1 +/- 5.8 to 4.3 +/- 4.4 SD. No significant effect was seen on the total number of refluxes (/24 hours). Eight infants (33%) had no decrease in the RI after a week of treatment. Three of these infants improved after cisapride dose was increased from 0.09 to 0.25 mg/kg/dose every 6 hours. Although 0.09 mg/kg/day is the minimum effective dose, 67% of our infants did respond to this low dose. Cisapride was discontinued in 3 infants because of prolonged QTc >/=0.450 seconds (0.473 in 1 and 0.470 in 2). More data about the effect of cisapride on QTc interval are reported in Pediatrics in a separate article. Only 1 infant showed no improvement with increased dose. Caffeine treatment had no effect on the baseline or follow-up GER values. Although apnea indexes for central and obstructive apnea were similar before and after cisapride, mixed apnea was less during treatment. There was a significant decrease (0.32 +/- 0.40 to 0.12 +/- 0.17/hour) in RAAP when the one infant who had increased reflux on increased dose of cisapride was excluded as an outlier. The statistical difference, before and after cisapride, for the group is significant with the outlier omitted. The clinical significance is unclear because ~50% of the infants had minimal changes in their apnea indexes. Furthermore, ~40% of infants did not have RAAP. (ABSTRACT TRUNCATED)
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