Evidence map›Paper›PMID 42731994›Full record

ArticlePediatric research2026

Alterations of endothelial cell bioenergetics in congenital diaphragmatic hernia.

Brian F Emrick, Irina Zhevlakova, Michael Novotny, Lori Mavrakis, Anny Mulya, Darrell L Cass, Eiichi Miyasaka, Tatiana V Byzova, Kewal Asosingh, Serpil C Erzurum and 1 more

Abstract read
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Article in Pediatric research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.

0numbers the graph read from it
0cells of the map it votes in
1citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

1 citing paper in PubMed.

  1. Article
4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

11 authors.

Brian F EmrickCleveland Clinic Research, Department of Genomic Sciences and Systems Biology, Cleveland, OH, USA.
Irina ZhevlakovaCleveland Clinic Research, Department of Genomic Sciences and Systems Biology, Cleveland, OH, USA.
Michael NovotnyCleveland Clinic Research, Department of Inflammation and Immunity, Cleveland, OH, USA.
Lori MavrakisCleveland Clinic Research, Department of Inflammation and Immunity, Cleveland, OH, USA.
Anny MulyaCleveland Clinic Research, Department of Inflammation and Immunity, Cleveland, OH, USA.
Darrell L CassCleveland Clinic Children's Hospital, Division of Pediatric Surgery, Cleveland, OH, USA.
Eiichi MiyasakaDepartment of Pediatric Surgery, University Hospitals Rainbow Babies and Children's Hospital, Cleveland, OH, USA.
Tatiana V ByzovaCleveland Clinic Research, Department of Genomic Sciences and Systems Biology, Cleveland, OH, USA.
Kewal AsosinghCleveland Clinic Research, Department of Inflammation and Immunity, Cleveland, OH, USA.
Serpil C ErzurumCleveland Clinic Research, Department of Inflammation and Immunity, Cleveland, OH, USA.
Jason O RobertsonCleveland Clinic Research, Department of Genomic Sciences and Systems Biology, Cleveland, OH, USA. robertj4@ccf.org.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundPulmonary vascular development in congenital diaphragmatic hernia (CDH) is characterized by impaired angiogenesis and pathologic remodeling that contribute to pulmonary hypertension/hypoplasia. Mitochondria regulate endothelial energy, redox balance, and angiogenic signaling, suggesting a role in CDH vascular disease.

methodsEndothelial cells (ECs) were isolated from umbilical veins of healthy and CDH newborns. Mitochondrial bioenergetics and glycolytic acidification were assessed by extracellular flux. Oxidative stress, mitochondrial membrane potential, and mitochondrial mass were measured by flow cytometry, while mitochondrial DNA copy number (mtDNA-CN) and morphology were evaluated by qPCR and microscopy.

resultsCDH ECs exhibited increased maximal respiratory capacity with elevated proton leak and reduced ATP coupling efficiency. Basal glycolytic activity was elevated. These changes were accompanied by increased mitochondrial superoxide and cellular reactive oxygen species and by severity-associated loss of membrane potential. Despite reduced MitoTracker Green, mtDNA-CN was unchanged, and confocal imaging revealed a highly branched, peripherally distributed network.

conclusionsThese data define a distinct endothelial mitochondrial phenotype marked by metabolic activation, bioenergetic inefficiency, and oxidative stress, with concurrent upregulation of glycolysis and oxidative phosphorylation rather than a glycolytic shift. Structural remodeling with preserved mitochondrial content further indicates qualitative changes. Collectively, these findings link mitochondrial dysfunction to vascular pathology in CDH. IMPACT: Defines a distinct mitochondrial state in CDH endothelium, characterized by metabolic activation with inefficient oxidative phosphorylation, redox imbalance, and structural reorganization in primary human cells. Demonstrates that mitochondrial alterations in CDH occur without changes in mitochondrial content, supporting a model of qualitative remodeling. Provides rare human, cell-based data in CDH, addressing a major gap in a field largely reliant on animal models and indirect measures. Links mitochondrial alterations to clinical severity, supporting relevance to disease burden and heterogeneity. Establishes a framework for mitochondrial involvement in CDH vascular disease, with potential implications for future biomarker development and therapeutic targeting.

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.