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.

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