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Updated: Jul 20, 2026

A Mouse Model of Intestinal Partial Obstruction
Published on: March 5, 2018
Enteric neuropathology of congenital intestinal obstruction: A case report
Giovanni Di Nardo1, Vincenzo Stanghellini, Salvatore Cucchiara
1Department of Pediatrics, Pediatric Gastroenterology Unit, University of Rome La Sapienza, Rome, Italy.
Insights
Congenital small bowel obstruction in a child caused progressive enteric nervous system (ENS) damage, mimicking pseudo-obstruction. Surgical correction led to recovery, suggesting adaptive ENS changes in response to chronic obstruction.
Area of Science:
- Gastroenterology
- Neurology
- Pediatric Surgery
Background:
- Chronic intestinal mechanical sub-occlusion is suspected to damage the enteric nervous system (ENS).
- Human data on ENS changes due to congenital intestinal obstruction are limited.
Observation:
- A pediatric case of congenital duodeno-jejunal obstruction with malrotation presented with vomiting, distension, and constipation.
- Histopathology revealed initial hyperganglionosis followed by enteric degenerative neuropathy and reduced interstitial cells of Cajal in obstructed loops.
Findings:
- Congenital partial small bowel obstruction induced progressive enteric degenerative neuropathy in a child.
- The observed ENS changes mirrored those in animal models and intestinal pseudo-obstruction.
Implications:
- This case highlights that congenital mechanical bowel obstruction can lead to adaptive ENS changes in humans.
- Understanding these changes is crucial for diagnosing and managing functional bowel disorders.
Abstract:
Experimental evidence indicates that chronic mechanical sub-occlusion of the intestine may damage the enteric nervous system (ENS), although data in humans are lacking. We here describe the first case of enteric degenerative neuropathy related to a congenital obstruction of the gut. A 3-year and 9-mo old girl began to complain of vomiting, abdominal distension, constipation with air-fluid levels at plane abdominal radiology. Her subsequent medical history was characterized by 3 operations: the first showed dilated duodeno-jejunal loops in the absence of occlusive lesions; the second (2 years later) was performed to obtain full-thickness biopsies of the dilated intestinal loops and revealed hyperganglionosis at histopathology; the third (9 years after the hyperganglionosis was identified) disclosed a Ladd's band which was removed and the associated gut malrotation was corrected. Repeated intraoperative full-thickness biopsies showed enteric degenerative neuropathy along with reduced interstitial cells of Cajal network in dilated loops above the obstruction and a normal neuromuscular layer below the Ladd's band. One year after the latest surgery the patient tolerated oral feeding and did well, suggesting that congenital (partial) mechanical obstruction of the small bowel in humans can evoke progressive adaptive changes of the ENS which are similar to those found in animal models of intestinal mechanical occlusion. Such ENS changes mimic neuronal abnormalities observed in intestinal pseudo-obstruction.
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