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Published on: May 4, 2020
Surfactant maturation is not delayed in human fetuses with diaphragmatic hernia
Olivier Boucherat1, Alexandra Benachi, Bernadette Chailley-Heu
1Institut national de la santé et de la recherche médicale (INSERM), Unité 841-Institut Mondor de Recherche Biomédicale, Créteil, France.
Insights
Congenital diaphragmatic hernia (CDH) does not affect surfactant levels in human fetuses. This study found no evidence of surfactant deficiency in CDH lungs, questioning the need for surfactant therapy in affected infants.
Area of Science:
- Neonatal Medicine
- Pulmonary Biology
- Developmental Biology
Background:
- Congenital diaphragmatic hernia (CDH) is associated with significant neonatal mortality and morbidity, often linked to pulmonary hypoplasia and persistent pulmonary hypertension.
- Surfactant deficiency has been suspected as a contributing factor in CDH pathophysiology, but data in human fetuses are contradictory.
- Previous studies lacked chronological data on surfactant content in late-term pregnancy, hindering understanding of CDH-related lung maturity.
Purpose of the Study:
- To investigate and compare surfactant content and maturation factors in human fetuses with CDH versus controls.
- To assess the impact of CDH on key components of pulmonary surfactant and related regulatory factors.
- To evaluate the relevance of animal models by comparing findings in human fetuses with those in sheep models of CDH.
Main Methods:
- Quantified disaturated phosphatidylcholine and surfactant proteins in human fetal lungs with and without CDH.
- Measured levels of thyroid transcription factor 1, keratinocyte growth factor (KGF), leptin, and neuregulin 1 beta 1 (NRG1-beta1).
- Compared findings with those from a sheep model of surgical diaphragmatic hernia and evaluated the effects of tracheal occlusion.
Main Results:
- Surfactant components (disaturated phosphatidylcholine, surfactant proteins) and thyroid transcription factor 1 were similar in CDH and control fetuses at comparable gestational ages.
- KGF expression remained unchanged in CDH fetuses, unlike a slight decrease in controls; leptin and NRG1-beta1 increased similarly in both groups.
- In contrast to human findings, the sheep CDH model showed decreased KGF and neuregulin expression, partially or fully restored by tracheal occlusion.
Conclusions:
- Congenital diaphragmatic hernia (CDH) does not impair surfactant storage or alter developmental patterns of surfactant components in human fetuses.
- Lung surfactant amounts in CDH fetuses appear appropriate for lung size, suggesting surfactant deficiency is not a primary issue.
- These findings do not support the routine use of surfactant therapy for infants with CDH and raise questions about the direct applicability of CDH animal models to human lung biochemistry.
Background:
Pulmonary hypoplasia and persistent pulmonary hypertension account for significant mortality and morbidity in neonates with congenital diaphragmatic hernia (CDH). Global lung immaturity and studies in animal models suggest the presence of surfactant deficiency that may further complicate the pathophysiology of CDH. However, data about surfactant status in human fetuses with CDH at birth are contradictory. The lack of a chronological study of surfactant content in late pregnancy has been a significant limitation. The appropriateness of administering surfactant supplements to neonates with CDH is therefore a debated question.
Methods And Findings:
We investigated surfactant content in human fetuses with CDH compared to age-matched fetuses with nonpulmonary diseases used as controls. Concentrations of disaturated phosphatidylcholine and surfactant proteins were found to be similar at a given stage of pregnancy, with both components showing a similar pattern of increase with progressing pregnancy in fetuses with CDH and in control fetuses. Thyroid transcription factor 1, a critical regulator of surfactant protein transcription, similarly displayed no difference in abundance. Finally, we examined the expression of three glucocorticoid-regulated diffusible mediators involved in lung epithelial maturation, namely: keratinocyte growth factor (KGF), leptin, and neuregulin 1 beta 1 (NRG1-beta1). KGF expression decreased slightly with time in control fetuses, but remained unchanged in fetuses with CDH. Leptin and NRG1-beta1 similarly increased in late pregnancy in control and CDH lungs. These maturation factors were also determined in the sheep fetus with surgical diaphragmatic hernia, in which surfactant deficiency has been reported previously. In contrast to the findings in humans, surgical diaphragmatic hernia in the sheep fetus was associated with decreased KGF and neuregulin expression. Fetoscopic endoluminal tracheal occlusion performed in the sheep model to correct lung hypoplasia increased leptin expression, partially restored KGF expression, and fully restored neuregulin expression.
Conclusions:
Our results indicate that CDH does not impair surfactant storage in human fetuses. CDH lungs exhibited no trend toward a decrease in contents, or a delay in developmental changes for any of the studied surfactant components and surfactant maturation factors. Surfactant amounts are likely to be appropriate to lung size. These findings therefore do not support the use of surfactant therapy for infants with CDH. Moreover, they raise the question of the relevance of CDH animal models to explore lung biochemical maturity.
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