Related Experiment Video
Updated: Aug 14, 2026

Gastrointestinal Motility Monitor (GIMM)
Published on: December 2, 2010
Gastrointestinal transit and anorectal manometry in children with colonic substance P deficiency
S Treepongkaruna1, J M Hutson, J Hughes
1Departments of Gastroenterology and Clinical Nutrition, Royal Children's Hospital, Parkville, Victoria, Australia.
Insights
Children with severe constipation and reduced substance P (SP) nerve fibers showed no significant colonic transit defects. However, normal SP patients trended towards obstructive defecation and abnormal rectal sensation.
Area of Science:
- Pediatric Gastroenterology
- Neurogastroenterology
- Colorectal Surgery
Background:
- Severe intractable constipation in children is potentially linked to reduced substance P (SP)-containing nerve fibers in the colon.
- This study investigated gastrointestinal transit (GIT), anorectal manometry (ARM), and electromyography (EMG) in children with constipation.
Purpose of the Study:
- To characterize changes in GIT, ARM, and EMG in children with severe constipation, specifically comparing those with reduced SP fibers (SP-deficient group, SPD) to those with normal SP and VIP staining (SP normal group, SPN).
Main Methods:
- Seromuscular laparoscopic colonic biopsies were analyzed for SP and VIP using immunofluorescent staining.
- GIT, ARM, and EMG were performed, and data were compared between the SPD (n=25) and SPN (n=10) groups.
- Colonic transit was assessed by measuring radioactivity in segments over 48 hours.
Main Results:
- No significant differences were found in demographic data, gastric emptying, orocecal transit, or colonic geometric center between SPD and SPN groups.
- ARM and EMG suggested a trend towards a higher balloon distension threshold for rectoanal inhibitory reflex and increased anismus in the SPN group, but this was not statistically significant.
Conclusions:
- The study did not confirm a colonic transit defect in SP-deficient children compared to controls.
- Findings suggest a potential trend for SP normal patients to experience more obstructive defecation and abnormal rectal sensation than SP-deficient patients.
Background And Aims:
Severe intractable constipation in children may be associated with a reduction of substance P (SP)- containing fibers in colonic circular muscle. The aim of this study was to characterize gastrointestinal transit (GIT), anorectal manometry (ARM) and electromyographic (EMG) changes in these children.
Methods:
Seromuscular laparoscopic biopsies of the colon were obtained from 35 children with severe constipation. Immunofluorescent staining for SP and vasoactive intestinal peptide (VIP) were then performed on these specimens. The cohort of patients studied included a SP-deficient group (SPD, n = 25) who had reduced numbers of SP-immunoreactive nerve fibers. The other group consisted of patients with normal staining for both SP and VIP (SPN, n = 10). Gastrointestinal transit studies (gastric emptying, orocecal and colonic transit) suitable for analysis were available for 17 patients (SPD, n = 9 and SPN, n = 8). The colon was divided into segments and radioactivity counts in each segment were expressed as a percentage of the total colonic count at each time point (6, 24, 32 and 48 h). The geometric center (GC), ARM, EMG, clinical and demographic data characteristics of both groups of patients were compared.
Results:
There were no differences in demographic data, gastric emptying, orocecal transit or geometric center of transit in the colon between the two patient groups. The ARM and EMG studies suggested that the SPN group have a higher mean threshold volume of balloon distension required to initiate a rectoanal inhibitory reflex, and a higher incidence of anismus; however, this did not reach statistical significance.
Conclusions:
These data suggest a trend that the SPN patients have a greater problem with obstructive defecation and abnormal rectal sensation than those with SPD. We were unable to confirm any defect in colonic transit in the SPD patients compared with the SPN group.
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