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Updated: Feb 12, 2026

Tissue Engineering of the Intestine in a Murine Model
Published on: December 1, 2012
The Development of Newborn Porcine Models for Evaluation of Tissue-Engineered Small Intestine
Mitchell R Ladd1, Laura Y Martin1, Adam Werts1
11 Division of Pediatric Surgery, Department of Surgery, Johns Hopkins University School of Medicine , Baltimore, Maryland.
Insights
Researchers developed three piglet models to test artificial intestines for treating pediatric short bowel syndrome (SBS). A single operation with a de-functionalized intestinal loop showed the most promise for long-term evaluation.
Area of Science:
- Regenerative Medicine
- Pediatric Surgery
- Gastroenterology
Background:
- Short bowel syndrome (SBS) presents significant challenges in pediatric patients, with limited therapeutic options.
- Tissue-engineered intestine (artificial intestine) offers a potential novel treatment approach for SBS.
Purpose of the Study:
- To develop and evaluate clinically relevant preclinical models for assessing tissue-engineered intestines in neonatal piglets.
- To compare the efficacy and complications of three distinct surgical approaches for long-term artificial intestine evaluation.
Main Methods:
- Three operative models were established in neonatal piglets: staged multioperation, single operation with de-functionalized loop, and single operation with intestinal bypass.
- Models were evaluated long-term following implantation and establishment of intestinal continuity.
Main Results:
- The staged multioperation model experienced complications including surgical site infections and hernias.
- The de-functionalized loop model reduced wound complications but led to ostomy issues and dehydration.
- The intestinal bypass model was most effective but associated with stoma prolapse.
Conclusions:
- Three operative methods for artificial intestine evaluation in piglets were developed and assessed.
- A single operation utilizing a de-functionalized loop of small intestine appears to be an optimal approach for long-term studies.
Abstract:
Short bowel syndrome (SBS) is a major cause of morbidity and mortality in the pediatric population, for which treatment options are limited. To develop novel approaches for the treatment of SBS, we now focus on the development of a tissue-engineered intestine (also known as an "artificial intestine"), in which intestinal stem cells are cultured onto an absorbable bioscaffold, followed by implantation into the host. To enhance the translational potential of these preclinical studies, we have developed three clinically relevant models in neonatal piglets, which approximate the size of the human infant and were evaluated after implantation and establishment of intestinal continuity over the long term. The models included (1) a staged, multioperation approach; (2) a single operation with a de-functionalized loop of small intestine; and (3) a single operation with an intestinal bypass. The first model had complications related to multiple operations in a short time period, including surgical site infections and wound hernias. The second model avoided wound complications, but was associated with high ostomy output, local skin breakdown, and systemic dehydration with associated electrolyte imbalances. The third model was the most effective, although resulted in stoma prolapse. In summary, we have now developed and evaluated three operative methods for the long-term evaluation of the artificial intestine in the piglet, and conclude that a single operation with a de-functionalized loop of small intestine may be an optimal approach for evaluation over the long term.
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