Related Experiment Video
Updated: Aug 11, 2026

08:45
Tissue Engineering of the Intestine in a Murine Model
Published on: December 1, 2012
Bowel Regeneration: Bench to Bedside
Madeline Raudat1, Samuel Alaish1, David J Hackam1
1Division of General Pediatric Surgery and Department of Surgery, Johns Hopkins University and Johns Hopkins Children's Center, Baltimore, MD, USA.
Seminars in Pediatric Surgery
|August 9, 2026
Summary
Regenerative medicine offers new hope for pediatric intestinal failure due to short bowel syndrome. Advances in stem cells, biomaterials, and bioengineering are paving the way for novel therapeutic strategies.
Area of Science:
- Regenerative medicine
- Bioengineering
- Stem cell biology
Background:
- Pediatric intestinal failure from short bowel syndrome causes significant morbidity and mortality.
- Current treatments like parenteral nutrition and transplantation have limitations and complications.
- Native intestinal adaptation is insufficient for severe cases.
Purpose of the Study:
- To review current bowel regeneration strategies for pediatric intestinal failure.
- To examine cellular, biological, structural, and tissue engineering approaches.
- To discuss emerging technologies and their clinical translation potential.
Main Methods:
- Conceptual framework progressing from native adaptation to tissue engineering.
- Review of stem cell biology, biomaterials, mechanotransduction, and bioengineering.
- Discussion of gene editing, 3D bioprinting, and organoid-scaffold systems.
Main Results:
- Bowel regeneration field has rapidly expanded over two decades.
- Multiple strategies are being developed, integrating cellular and structural approaches.
- Emerging technologies show promise for future clinical applications.
Conclusions:
- Significant hurdles in vascularization, innervation, and scaling remain.
- Regenerative approaches are poised to transform pediatric intestinal failure management.
- The future trajectory suggests a fundamental shift in treatment paradigms.
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