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A Mouse Model of Intestinal Partial Obstruction
Published on: March 5, 2018
Clinical, manometric, genetic, and histologic associations in pediatric intestinal pseudo-obstruction: A case series
Sharon Wolfson1,2, Myra Butrviengpunt3, Naomi Tjaden1,2
1Division of Pediatric Gastroenterology, Hepatology and Nutrition, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania, USA.
Insights
Pediatric intestinal pseudo-obstruction (PIPO) is a rare motility disorder. This study links ACTG2 mutations to myopathic PIPO and reveals genetic diversity in neuropathic forms, aiding diagnosis and treatment.
Area of Science:
- Gastroenterology
- Pediatric Motility Disorders
- Clinical Genetics
Background:
- Pediatric intestinal pseudo-obstruction (PIPO) is a severe gastrointestinal motility disorder.
- It involves neuropathies, myopathies, and mesenchymopathies, presenting with symptoms like abdominal distension and vomiting.
- Accurate diagnosis relies on neuromuscular dysfunction measures, imaging, nutritional support dependence, and genetic testing.
Purpose of the Study:
- To characterize the clinical and genetic profiles of children diagnosed with PIPO.
- To classify PIPO subtypes using manometric data.
- To explore genotype-phenotype correlations for improved understanding and therapy.
Main Methods:
- Retrospective chart review at a pediatric tertiary care center.
- Inclusion criteria: PIPO diagnosis, completed antroduodenal manometry, and genetic evaluation.
- Analysis of clinical data, manometry results, and genetic findings.
Main Results:
- Nineteen children with PIPO were analyzed.
- Antroduodenal manometry classified 59% as neuropathic and 35% as myopathic.
- Pathogenic ACTG2 mutations were identified in all myopathic cases; neuropathic PIPO showed greater genetic heterogeneity.
- Histopathology findings were often nonspecific.
Conclusions:
- ACTG2 mutations are associated with a myopathic PIPO phenotype.
- Neuropathic PIPO exhibits significant genetic diversity.
- Enhanced phenotyping is crucial for improving PIPO diagnosis and treatment strategies.
Objectives:
Pediatric intestinal pseudo-obstruction (PIPO) is a severe bowel motility disorder characterized by impaired propulsion of gastrointestinal contents without mechanical obstruction. PIPO encompasses congenital and acquired disorders, including neuropathies, myopathies, and mesenchymopathies. PIPO presents with abdominal distension, bilious vomiting, and severe constipation. Diagnosis is based on objective measures of neuromuscular dysfunction, dilated bowel on imaging, parenteral and/or enteral nutrition dependence, and genetic or metabolic testing. Antroduodenal manometry permits objective assessment of proximal bowel neuromuscular function. Genetic testing is increasingly valuable although causes of PIPO often remain incompletely defined. Understanding genotype-phenotype correlations is essential for clarifying disease mechanisms and guiding therapies. This study aimed to characterize the clinical and genetic profiles of children with PIPO, utilizing manometric data for subtype classification.
Methods:
A retrospective chart review was conducted at a tertiary care pediatric medical center, with inclusion criteria of PIPO diagnosis, completed manometry testing, and genetic evaluation.
Results:
Nineteen children met inclusion criteria. Antroduodenal manometry classified 59% as neuropathic, 35% as myopathic, and one with mixed neuropathic and myopathic dysfunction. Genetic testing revealed pathogenic ACTG2 mutations in all myopathic cases, while neuropathic PIPO exhibited more genetic variability. Histopathology was inconsistent and often nonspecific. Therapeutic approaches focused on nutritional support and promotility agents, with surgical intervention more common in myopathic cases.
Conclusions:
This study highlights the association of ACTG2 mutations with a myopathic phenotype, and genetic diversity in neuropathic PIPO, emphasizing the need for further research to improve phenotyping to enhance diagnosis and treatment.
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