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Updated: Jul 16, 2026

Orthotopic Small Bowel Transplantation in Rats
Published on: November 6, 2012
Hormonal therapy for short bowel syndrome
1Department of Surgery, The Alberta Children's Hospital, Calgary, Canada.
Insights
This study shows peptide hormones like growth hormone (GH), insulin-like growth factor-1 (IGF-1), and glucagon-like peptide-2 (GLP-2) improve weight gain in a rat model of short bowel syndrome (SBS). These findings suggest potential new treatments for SBS patients.
Area of Science:
- Gastroenterology
- Endocrinology
- Surgical Research
Background:
- Short bowel syndrome (SBS) presents significant challenges in patient management.
- Effective therapeutic strategies for SBS are crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the efficacy of peptide hormone administration in a rat model of short bowel syndrome.
- To evaluate the impact of growth hormone (GH), insulin-like growth factor-1 (IGF-1), and glucagon-like peptide-2 (GLP-2) on weight gain and intestinal function.
Main Methods:
- A rat model of SBS was created by resecting 90% of the small bowel.
- Animals received continuous subcutaneous infusions of GH, IGF-1, GLP-2, or vehicle control.
- Weight gain, active transport, hormone profiles, and intestinal morphology were assessed over 14 days.
Main Results:
- All tested peptide hormones (GH, IGF-1, GLP-2) significantly increased weight gain compared to untreated resected controls.
- IGF-1 treatment led to significant alterations in intestinal morphology.
- Hormonal treatments resulted in increased glucose transport rates in all treated groups.
Conclusions:
- GH, IGF-1, and GLP-2 demonstrate potential for improving short-term weight gain following massive bowel resection.
- The observed benefits may stem from enhanced nutrient absorption, increased intestinal surface area, improved transport activity, or metabolic efficiency.
- Further research into these peptide hormones as treatments for short bowel syndrome is warranted.
Purpose:
Treatment of short bowel syndrome (SBS) can be difficult; this study examines the effect of parental administration of different peptide hormones in a rat model of SBS.
Methods:
Juvenile male Lewis rats (220 to 240 g) underwent resection of the proximal 90% of small bowel and were assigned randomly to treatment groups: growth hormone (GH), insulinlike growth factor-1 (IGF-1), glucagonlike peptide-2 (GLP-2; given as ALX-0600, a potent protease resistant analogue of the human GLP-2), control-resected (Con-R), or control-transected (Con-T). Drugs were delivered by continuous subcutaneous infusion via Alzet mini-pumps: controls received equivalent volumes of drug vehicle. Animals were pair-fed (23 g chow per day) and followed up for 14 days monitoring weight gain. Animals were killed and active transport, hormone profiles, and intestinal morphology were assessed.
Results:
Hormonal treatments significantly increased weight gain in all groups (GH, 9.9+/-4.9; IGF-1, 6.0+/-9.6; and GLP-2, 0.8+/-2.7 v. -6.2+/-4.7 in untreated resected animals [weight as percentile initial weight]). This was associated with a significant alteration in intestinal morphology in the IGF-1-treated animals, and an increase in glucose transport rates in all hormonally treated animals when compared with untreated control resected animals.
Conclusions:
These results show that IGF-1, GH, and GLP-2 all improve short-term weight gain after massive bowel resection in a rat model. The effects seen on weight gain may be caused by improved dietary nutrient absorption from an increase in the intestinal surface area or increase in transporting activity or alterations in the metabolic efficiency of the animal. These findings suggest further studies of these therapies as treatment for short-bowel syndrome are indicated.
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