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"Gentle" cardio-respiratory management in congenital diaphragmatic hernia: Time for a precision-medicine approach?
Anna Foth1, David Tingay2, Florian Kipfmueller1
1Department of Neonatology and Pediatric Intensive Care Medicine, University Medical Center Mannheim, Heidelberg University, Mannheim, Germany.
Insights
Congenital diaphragmatic hernia (CDH) management is complex. Tailoring treatments to distinct hemodynamic phenotypes using precision medicine and gentle cardiopulmonary support can improve infant outcomes.
Area of Science:
- Neonatal Intensive Care Medicine
- Pediatric Cardiology
- Pulmonary Hypertension Research
Background:
- Congenital diaphragmatic hernia (CDH) presents significant neonatal intensive care challenges.
- Outcomes are influenced by pulmonary hypoplasia, vascular remodeling, and ventricular dysfunction.
- Current treatments may not address CDH's complex physiology, leading to high mortality.
Purpose of the Study:
- To outline distinct hemodynamic phenotypes in CDH.
- To propose phenotype-specific treatment strategies.
- To highlight the role of precision medicine in optimizing CDH care.
Main Methods:
- Phenotyping based on biventricular function and pulmonary hypertension.
- Review of emerging evidence on hemodynamic profiles.
- Integration of multimodal monitoring (echocardiography, ultrasound, EIT, biomarkers).
Main Results:
- Identified three hemodynamic phenotypes: preserved function, pre-capillary PH, and post-capillary PH with LV dysfunction.
- Each phenotype requires distinct ventilatory and pharmacologic approaches.
- Lung-protective strategies and gentle cardiopulmonary support are crucial.
Conclusions:
- A precision medicine approach is essential for CDH management.
- Multimodal monitoring enables tailored interventions.
- Optimizing hemodynamic balance and minimizing iatrogenic injury improve survival and long-term outcomes in CDH.
Abstract:
Congenital diaphragmatic hernia (CDH) remains one of the most challenging conditions to manage in neonatal intensive care, with outcomes determined by the complex interplay between pulmonary hypoplasia, pulmonary vascular remodeling, and ventricular dysfunction. Traditional treatment strategies, including high-frequency ventilation, inhaled nitric oxide, and vasopressor use, fail to account for the dynamic heterogeneity of CDH physiology and may contribute to persistently high mortality. Emerging evidence delineates three principal hemodynamic phenotypes: (1) preserved biventricular function with mild/no pulmonary hypertension (PH), (2) pre-capillary PH with or without right ventricular dysfunction, and (3) post-capillary PH with primary left ventricular (LV) dysfunction. Each phenotype demands distinct ventilatory and pharmacologic strategies, ranging from cautious respiratory support to targeted pulmonary vasodilators, inodilators, or LV-directed therapies. Ventilation in CDH is further complicated by profound lung inhomogeneity, the "baby lung" phenomenon, and susceptibility to ventilator-induced lung injury. Advances in lung-protective strategies, including low driving pressure, permissive hypercapnia, synchrony-enhancing modes, and real-time functional monitoring with echocardiography, lung ultrasound, electrical impedance tomography, and use of circulating biomarkers enable tailored interventions. A precision medicine approach, grounded in multimodal monitoring and gentle cardiopulmonary support, holds promise to optimize hemodynamic balance, reduce iatrogenic injury, and improve survival and long-term outcomes in infants with CDH.
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