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Acute Lung Injury after Instillation of Human Breast Milk into Rabbits' LungsEffects of pH and Gastric Juice

 

作者: Brendan O'Hare,   Christopher Chin,   Jerrold Lerman,   Junko Endo,  

 

期刊: Anesthesiology  (OVID Available online 1999)
卷期: Volume 90, issue 4  

页码: 1112-1118

 

ISSN:0003-3022

 

年代: 1999

 

出版商: OVID

 

关键词: Aspiration;blood;compliance;chemiluminescence;neutrophils;phagocyte.

 

数据来源: OVID

 

摘要:

BackgroundThe authors compared the lung injury in rabbits that occurred after tracheal instillation of human breast milk (HBM) acidified to pH 1.8 with hydrochloric acid (HCl), HBM at its native pH (7.0), and HBM acidified with gastric juice to pH 1.8 and 3.0.MethodsThe alveolar‐to‐arterial oxygen tension gradient and dynamic compliance were recorded before and hourly for 4 h after intratracheal instillation of 0.8 ml/kg HBM acidified with HCl (pH 1.8), HBM at its native pH (7.0), HBM acidified with gastric juice (pH 1.8 or 3.0), or 5% dextrose solution acidified with gastric juice (pH 1.8) as a control in 30 adult rabbits. The circulating neutrophil count and phagocyte oxidant activity were determined before and 1 and 4 h after instillation.ResultsThe alveolar‐to‐arterial oxygen tension gradient increased and dynamic compliance decreased significantly in all groups after instillation of HBM compared with baseline values and those in the control group. The severity of the lung injury after instillation of HBM at all pH values (1.8, 3.0, and 7.0) and after acidification with gastric juice or HCl was similar. The circulating neutrophil count increased steadily for 4 h after instillation (P < 0.013), whereas spontaneous phagocyte oxidant burst activity peaked at 1 h (P < 0.007) and returned to baseline by 4 h after instillation.ConclusionsThe severity of the lung injury after tracheal instillation of 0.8 ml/kg HBM in rabbits is similar at pH values between 1.8 and 7.0 after acidification with HCl or gastric juice. Tracheal instillation of HBM increases the circulating neutrophil count and phagocyte oxidant burst activity.

 

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