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Prematurity Reduces Functional Adaptation to Intestinal Resection in Piglets
Lise Aunsholt1, Thomas Thymann2, Niels Qvist3
1Hans Christian Andersen Children's Hospital, Odense University Hospital, Odense, Denmark.
Insights
Preterm neonates show reduced intestinal adaptation after surgery compared to term neonates, highlighting the need for intensive support in short bowel syndrome (SBS) cases. This study used a piglet model to investigate immediate intestinal adaptation.
Area of Science:
- Neonatal physiology
- Gastrointestinal surgery
- Developmental biology
Background:
- Necrotizing enterocolitis and congenital gastrointestinal malformations necessitate intestinal resection, increasing the risk of short bowel syndrome (SBS).
- Immediate intestinal adaptation following distal intestinal resection and jejunostomy placement may differ between preterm and term neonates.
Purpose of the Study:
- To investigate and compare immediate intestinal adaptation in preterm versus term neonates after distal intestinal resection and jejunostomy placement.
- To evaluate the impact of prematurity on the physiological response and intestinal recovery post-resection.
Main Methods:
- Preterm and term piglets underwent 50% distal intestinal resection with jejunostomy placement on day 2 of life.
- Post-surgery, piglets received parenteral nutrition with gradual enteral feeding (bovine colostrum) for 4-5 days.
- Intestinal tissue was analyzed for histological changes and digestive enzyme activities at multiple time points.
Main Results:
- While initial intestinal weight and enzyme activity increased similarly in both groups, term piglets exhibited significantly greater villus height, crypt depth, enzyme activities (sucrase, maltase, DPPIV), and hexose uptake capacity by days 6-7.
- Preterm piglets were more susceptible to postoperative complications, including hypoglycemia, respiratory distress, dehydration, and circulatory instability.
- Remnant intestine density and mucosal mass were comparable between preterm and term piglets.
Conclusions:
- Intestinal adaptation following resection is reduced in preterm neonates compared to term neonates due to physiological instability and intestinal immaturity.
- Studies on intestinal adaptation post-resection are feasible in both preterm and term piglets, but preterm piglets require intensive clinical support for managing short bowel syndrome (SBS).
Background:
Necrotizing enterocolitis and congenital gastrointestinal malformations in infants often require intestinal resection, with a subsequent risk of short bowel syndrome (SBS). We hypothesized that immediate intestinal adaptation following resection of the distal intestine with placement of a jejunostomy differs between preterm and term neonates.
Methods:
Preterm or term piglets were born by cesarean section and fed enterally for 2 days. On day 2, piglets were subjected to 50% distal intestinal resection with placement of a jejunostomy. On the following 4-5 days, piglets received parenteral nutrition with gradually increasing doses of enteral nutrition (bovine colostrum). Intestinal tissue samples were collected at delivery and 2 and 6-7 days after birth for histological examination and assessment of digestive enzyme activities.
Results:
Preterm and term piglets showed similar increases in intestinal weight and digestive enzyme activities from birth to 2 days. On days 6-7 after birth, the remnant intestine showed a similar density (g/cm) and mucosal mass in term and preterm piglets, but villus height, crypt depth, enzyme activities (sucrase, maltase, dipeptidyl peptidase IV [DPPIV]), and hexose uptake capacity were significantly higher in term piglets (P < .05). Preterm piglets were more prone to develop hypoglycemia, respiratory distress syndrome, dehydration, and circulatory instability after surgery compared with term piglets.
Conclusion:
Studies on intestinal adaptation after resection are feasible in both preterm and term piglets, but intensive clinical support is required when rearing preterm piglets with SBS. Physiological instability and immaturity of the intestine may explain the fact that immediate adaptation after resection is reduced in preterm vs term neonates.
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