Increased pulmonary blood flow does not alter surfactant protein gene expression in lambs within the first week of life

Author:

Lee Jae W.,Ovadia Boaz,Azakie Anthony,Salas Sonia,Goerke Jon,Fineman Jeffrey R.,Gutierrez Jorge A.

Abstract

Neonates and infants with congenital heart disease with increased pulmonary blood flow suffer morbidity from poor oxygenation and decreased lung compliance. In a previous experiment involving 4-wk-old lambs with pulmonary hypertension secondary to increased pulmonary blood flow following an in utero placement of an aortopulmonary vascular graft, we found a decrease in surfactant protein (SP)-A gene expression as well as a decrease in SP-A and SP-B protein contents. To determine the timing of these changes, the objective of the present study was to characterize the effect of increased pulmonary blood flow and pulmonary hypertension on SP-A, -B, and -C gene expressions and protein contents within the first week of life. Of eight fetal lambs that underwent the in utero placement of the shunt, there was no difference in the expression of SP-A, -B, and -C mRNA levels or SP-A and -B protein contents compared with age-matched controls. The results showed that, in this model of congenital heart disease with pulmonary hypertension and increased pulmonary blood flow, the effect of the shunt on SP gene expression and protein content was not apparent within the first week of life.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Influence of the type of congenital heart defects on epithelial lining fluid composition in infants undergoing cardiac surgery with cardiopulmonary bypass;Pediatric Research;2018-02-07

2. Pulmonary Collectins in Diagnosis and Prevention of Lung Diseases;Animal Lectins: Form, Function and Clinical Applications;2012

3. Pulmonary Vascular Disease Related to Hemodynamic Stress in the Pulmonary Circulation;Comprehensive Physiology;2010-11

4. Asthma;Murray and Nadel's Textbook of Respiratory Medicine;2010

5. Nitric oxide decreases surfactant protein gene expression in primary cultures of type II pneumocytes;American Journal of Physiology-Lung Cellular and Molecular Physiology;2005-05

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