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The effect of cisatracurium and rocuronium on lung function in anesthetized children
Charles I Yang1, Gavin F Fine, Edmund H Jooste
1From the *Department of Anesthesiology, University of Pittsburgh School of Medicine, Children's Hospital of Pittsburgh of UPMC, Pittsburgh, Pennsylvania; †Department of Anesthesiology, Duke Children's Hospital, Duke University Medical Center, Durham, North Carolina; and ‡Department of Pediatrics, University of Pittsburgh School of Medicine Division of Pulmonology, Children's Hospital of Pittsburgh, Pittsburgh, Pennsylvania.
Insights
Cisatracurium and rocuronium, used in pediatric anesthesia, can cause mild airway constriction. While generally not clinically significant, rocuronium showed a higher potential for noticeable decreases in lung function in some patients.
Area of Science:
- Anesthesiology
- Pediatric Pulmonology
- Pharmacology
Background:
- Neuromuscular blocking drugs (NMBDs) are associated with intraoperative bronchoconstriction.
- The effects of cisatracurium and rocuronium on pediatric lung mechanics require further investigation.
Purpose of the Study:
- To examine the effects of cisatracurium and rocuronium on lung mechanics in pediatric patients.
- To test the hypothesis that these NMBDs induce bronchoconstriction.
Main Methods:
- Pulmonary function tests (forced vital capacity and maximum expiratory flow rate at 10% of FVC) were conducted before and after NMBD administration and albuterol treatment in pediatric subjects.
- Data were analyzed using Shapiro-Wilk, paired t, and Wilcoxon rank sum tests.
Main Results:
- Both cisatracurium and rocuronium significantly decreased maximum expiratory flow rate at 10% of FVC.
- Rocuronium also caused small but significant decreases in forced vital capacity.
- Albuterol administration improved lung function in both groups.
Conclusions:
- Clinically relevant doses of cisatracurium and rocuronium cause mild constriction of smaller airways in pediatric patients.
- While generally not clinically significant, rocuronium demonstrated a potential for more pronounced effects in a subset of patients.
Background:
Neuromuscular blocking drugs have been implicated in intraoperative bronchoconstrictive episodes. We examined the effects of clinically relevant doses of cisatracurium and rocuronium on the lung mechanics of pediatric subjects. We hypothesized that cisatracurium and rocuronium would have bronchoconstrictive effects.
Methods:
We studied ASA physical status I and II pediatric subjects having elective dental or urological procedures, requiring general anesthesia with endotracheal intubations with either cisatracurium or rocuronium. Pulmonary function tests were performed before and after neuromuscular blocking drug dosing and again after albuterol administration. Using forced deflation and passive deflation techniques, forced vital capacity (FVC) and maximum expiratory flow rate at 10% (MEF10) of FVC were obtained. Fractional changes from the baseline were used to compare subjects. Changes in MEF10 of >30% were considered clinically significant. A Shapiro-Wilk test, paired t test, and Wilcoxon rank sum test were used to analyze the data.
Results:
Twenty-five subjects (median age = 5.25 years; range = 9 months-9.9 years) were studied; 12 subjects received cisatracurium and 13 subjects received rocuronium. Data are shown as mean proportional change ± SD or, in the case of not normally distributed, median proportional change (first, third quartile) with P values. In the cisatracurium group, there were no differences between baseline and postneuromuscular blocker administration in the fractional change from the baselines of FVC (1.00 ± 0.04, P = 0.5), but there was a significant decrease in MEF10 (0.80 ± 0.18, P = 0.002). In the rocuronium group, there were small yet significant decreases of FVC (0.99 [first quartile 0.97, third quartile 1], P = 0.02) and significant decreases in MEF10 (0.78 ± 0.26, P = 0.008). After administration of albuterol in the cisatracurium group, FVC increased slightly but significantly from baseline values (1.02 ± 0.02, P = 0.005). MEF10 increased significantly beyond baseline values (1.24 ± 0.43, P =0.04). In the rocuronium group, there were also significant differences between baseline and postalbuterol administration from the baseline value of FVC (1.02 ± 0.02, P = 0.004) and MEF10 (1.23 ± 0.29, P = 0.01).
Conclusions:
At clinically relevant doses, both cisatracurium and rocuronium caused changes in lung function, indicating constriction of smaller airways. In general, these changes were mild and not clinically detectable. However, in the rocuronium group, 3 of 13 patients showed more noticeable decreases in MEF10 (≤50%), demonstrating the potential for significant broncho-bronchiolar constriction in susceptible patients.
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