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Published on: July 18, 2016
Changes in respiratory mechanics in response to crystalloid infusions in extremely premature infants
Arvind Sehgal1,2, Bishal Gauli1
1Monash Newborn, Monash Children's Hospital, Melbourne, Victoria, Australia.
Insights
Normal saline boluses in extremely premature infants can worsen respiratory mechanics, leading to reduced pulmonary compliance and increased respiratory severity. Clinicians should carefully reconsider routine saline use in this vulnerable population.
Area of Science:
- Neonatal Physiology
- Pediatric Critical Care Medicine
- Respiratory Medicine
Background:
- Extremely premature infants face high risks of respiratory distress and circulatory issues.
- Normal saline boluses are frequently used to manage hypotension in preterm infants.
- Crystalloids like normal saline may leak into lung interstitium, potentially impairing ventilation.
Purpose of the Study:
- To analyze the impact of normal saline boluses on ventilator mechanics in extremely premature infants.
- To investigate the association between saline administration and pulmonary function in this cohort.
Main Methods:
- Retrospective analysis of ventilator mechanics data from 16 extremely premature infants (mean gestational age 25.2 weeks).
- Data collected 30 minutes pre-bolus, during the 60-minute saline infusion (10 mL/kg), and 30 minutes post-bolus.
- Ventilator parameters including pulmonary compliance and peak inspiratory pressure were analyzed.
Main Results:
- No significant increase in mean blood pressure was observed post-saline bolus.
- A significant reduction in pulmonary compliance (mL/cmH2O/kg) was noted (P = 0.003).
- Peak inspiratory pressure increased significantly (P < 0.0001), leading to a higher respiratory severity score.
Conclusions:
- Normal saline infusion therapy was associated with adverse pulmonary mechanics in extremely premature infants.
- Potential mechanisms include fluid translocation into the lungs and immature cardiac function.
- Judicious use and reconsideration of routine saline boluses in premature infants are warranted.
Abstract:
Extremely premature infants are at a higher risk of developing respiratory distress syndrome and circulatory impairments in the first few weeks of life. Administration of normal saline boluses to manage hypotension is a common practice in preterm infants. As a crystalloid, a substantial proportion might leak into the interstitium; most consequently the lungs in the preterm cohorts, putatively affecting ventilation. We downloaded and analyzed ventilator mechanics data in infants managed by conventional mechanical ventilation and administered normal saline bolus for clinical reasons. Data were downloaded for 30 min prebolus, 60 min during the bolus followed by 30 min postbolus. Sixteen infants (mean gestational age 25.2 ± 1 wk and birth weight 620 ± 60 g) were administered 10 mL/kg normal saline over 60 min. The most common clinical indication for saline was hypotension. No significant increase was noted in mean blood pressure after the saline bolus. A significant reduction in pulmonary compliance (mL/cmH2O/kg) was noted (0.43 ± 0.07 vs. 0.38 ± 0.07 vs. 0.33 ± 0.07, P = 0.003, ANOVA). This was accompanied by an elevation in the required peak inspiratory pressure to deliver set volume-guarantee (19 ± 2 vs. 22 ± 2 vs. 22 ± 3 mmHg, P < 0.0001, ANOVA), resulting in a higher respiratory severity score. Normal saline infusion therapy was associated with adverse pulmonary mechanics. Relevant pathophysiologic mechanisms might include translocation of fluid across pulmonary capillaries affected by low vascular tone and heightened permeability in extremes of prematurity, back-pressure effects from raised left atrial volume due to immature left-ventricular myocardium; complemented by the effect of cytokine release from positive pressure ventilation.NEW & NOTEWORTHY Administration of saline boluses is common in premature infants although hypovolemia is an uncommon underlying cause of hypotension. This crystalloid can redistribute into pulmonary interstitial space. In the presence of an immature myocardium and diastolic dysfunction, excess fluid can also be "edemagenic." This study on extremely premature infants (25 wk gestation) noted adverse influence on respiratory physiology after saline infusion. Clinicians need to choose judiciously and reconsider routine use of saline boluses in premature infants.
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