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Published on: September 11, 2018
"The Itsy-Bitsy Water Bead Went Down the Baby's Mouth. Will Drinking Gastrografin Help to Flush It Out?"
James Williams1, Luke Pumiglia1, Bobby Zhang1
1Department of General Surgery, Madigan Army Medical Center, Tacoma, Washington.
Insights
Gastrografin significantly shrinks ingested superabsorbent polymers (water beads) in laboratory and animal studies. This finding suggests a potential non-surgical treatment for pediatric bowel obstructions caused by water beads.
Area of Science:
- Pediatric Gastroenterology
- Toxicology
- Medical Devices
Background:
- Foreign body ingestion is common in children.
- Superabsorbent polymers (water beads) expand significantly when ingested and can cause bowel obstruction requiring surgery.
Purpose of the Study:
- To evaluate the efficacy of gastrografin in reducing the size of ingested water beads.
- To explore a potential non-surgical management strategy for water bead ingestion.
Main Methods:
- In vitro study: Expanded water beads were submerged in water, gastrografin, or a 1:1 gastrografin-water mixture, with diameter measurements taken over 24 hours.
- Ex vivo study: Expanded water beads were placed in porcine small bowel with or without gastrografin, and diameter changes were measured after 4 hours.
Main Results:
- Gastrografin significantly reduced water bead diameter compared to water or a 1:1 mixture in vitro.
- In vitro, gastrografin reduced water bead diameter by 58% at 4 hours, while the mixture reduced it by 45%, and water caused 2% growth.
- Ex vivo, gastrografin reduced water bead diameter by 47% in porcine small bowel, compared to 37% in the control group.
Conclusions:
- Gastrografin effectively reduces water bead size in both in vitro and ex vivo models.
- Gastrografin may offer a non-surgical option for managing water bead ingestion in children.
- Further clinical studies are needed to confirm the efficacy of gastrografin for nonoperative management.
Introduction:
Foreign body ingestion is a common occurrence in the pediatric population. Superabsorbent polymers (i.e., water beads [WB]), such as Orbeez, are brightly colored spheres, can expand up to 100x their original size and are marketed as toys for kids. Ingested WB may lead to a bowel obstruction and typically require surgical removal.
Methods:
Fully expanded WBs (N = 15) were placed into 1 of the 3 solutions: water (N = 5), gastrografin (N = 5), or 1:1 mixture of gg and water (N = 5), with serial diameter measurements obtained at 1, 4, 8, and 24 h. Additionally, fully expanded WBs were placed into succus containing post mortem porcine small bowel and mixed with gastrografin (N = 10) or nothing (N = 10), with diameters measured prior to placement and at 4 h.
Results:
At all time points, the mean WB diameter of the gastrografin arm was significantly smaller than the other two arms (P < 0.01). WBs submerged in gastrografin saw a 58% reduction in diameter at 4 h compared to 45% reduction in the 1:1 mixture and a 2% growth in water (P < 0.01). When placed into small bowel containing gastrografin, the mean WB diameter decreased by 47% at 4 h versus 37% in the control arm (P < 0.01).
Conclusions:
Gastrografin significantly reduced the size of WB in both the in-vitro and ex-vivo post mortem animal study; and it may offer a nonsurgical option for the management of water bead ingestion. Studies assessing the clinical efficacy of a gastrografin nonoperative management strategy are needed.
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