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In vivo Evaluation of Mucociliary Clearance in Mice
Published on: December 18, 2020
Mucociliary Clearance Scans Show Infants Undergoing Congenital Cardiac Surgery Have Poor Airway Clearance Function
Phillip S Adams1, Timothy E Corcoran2, Jiuann-Huey Lin2
1Division of Pediatric Anesthesiology, Department of Anesthesiology and Perioperative Medicine, University of Pittsburgh School of Medicine, Pittsburgh, PA, United States.
Insights
Infants undergoing heart surgery experience impaired airway clearance, especially after surgery. Poorer clearance is linked to prematurity and mechanical ventilation, suggesting potential for targeted interventions.
Area of Science:
- Pediatric Cardiology
- Respiratory Physiology
- Critical Care Medicine
Background:
- Infants undergoing congenital cardiac surgery with cardiopulmonary bypass face significant risks of respiratory complications.
- Impaired mucociliary clearance (MCC) is a potential contributor to pulmonary morbidity in these vulnerable patients.
- This study aimed to quantify airway clearance in infants post-cardiac surgery and identify associated clinical factors.
Purpose of the Study:
- To measure airway clearance function in infants undergoing congenital cardiac surgery.
- To investigate correlations between airway clearance and clinical variables that may impair this function.
- To assess the impact of perioperative factors on mucociliary clearance.
Main Methods:
- Airway clearance was assessed using inhaled nebulized Technetium 99m sulfur colloid over 30 minutes.
- Measurements were taken bedside using a portable gamma camera, administered via nasal cannula or endotracheal tube.
- Patient and perioperative variables were analyzed in relation to the measured MCC.
Main Results:
- Of 57 enrolled infants, 42 had analyzable MCC data (pre-operative, immediate post-operative, and later post-operative periods).
- Pre-operative MCC inversely correlated with the duration of mechanical ventilation and non-invasive positive pressure ventilation.
- Immediate post-operative MCC was significantly lower (3%) compared to pre-operative (21%) and later post-operative (18%) periods.
Conclusions:
- This study demonstrates impaired mucociliary clearance in infants following congenital cardiac surgery, with the lowest function observed in the immediate post-operative phase.
- Worse MCC was significantly associated with prematurity, endotracheal intubation, and higher fraction of inspired oxygen (FiO2).
- These findings highlight the potential utility of MCC scans for clinical decision-making and suggest further investigation into airway clearance interventions for improving respiratory outcomes.
Abstract:
Background: Infants undergoing congenital cardiac surgery with cardiopulmonary bypass are at high risk for respiratory complications. As impaired airway mucociliary clearance (MCC) can potentially contribute to pulmonary morbidity, our study objective was to measure airway clearance in infants undergoing congenital cardiac surgery and examine correlation with clinical covariables that may impair airway clearance function. Materials and Methods: Airway clearance in infants was measured over 30 min using inhaled nebulized Technetium 99m sulfur colloid administered either via a nasal cannula or the endotracheal tube in intubated infants. This was conducted bedside with a portable gamma camera. No difficulty was encountered in positioning the gamma camera over the patient, and neither the camera nor the MCC scan interfered with routine medical care or caused any adverse events. Patient and perioperative variables were examined relative to the MCC measurements. Results: We prospectively enrolled 57 infants undergoing congenital cardiac surgery and conducted a single MCC scan per patient. MCC data from 42 patients were analyzable, including five pre-operative, 15 (40.5%) in the immediate post-operative period (days 1-2), and 22 (59.5%) were later post-operative (≥3 days). Pre-operative MCC was inversely proportional to days requiring post-operative mechanical ventilation (p = 0.006) and non-invasive positive pressure ventilation (p = 0.017). MCC was higher at later post-operative days (p = 0.002) with immediate post-operative MCC being lower (3%; 0-13%) than either pre-operative (21%; 4-25%) (p = 0.091) or later post-operative MCC (18%; 0-29%) (p = 0.054). Among the infants with low post-operative MCC, significantly more were pre-mature [5/19 (26%) vs. 0/18 (0%); p = 0.046], were intubated [14/19 (75%) vs. only 7/18 (39%); p = 0.033] and were receiving higher FiO2 (40%, 27-47% vs. 26%, 21-37%; p = 0.015). Conclusions: This is the first study to show that infants undergoing congenital cardiac surgery have impaired MCC. MCC appeared lowest in the immediate post-operative period. Worse MCC was associated with pre-maturity, mechanical ventilation, or receiving higher FiO2. These findings suggest MCC scans should be further explored for informing clinical decision making to improve post-surgical respiratory outcomes. The possible therapeutic benefit of airway clearance maneuvers for infants with poor MCC function should also be investigated.
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