Related Experiment Video
Updated: Jul 17, 2026

Diagnosis of Hirschsprung's Disease by Immunostaining Rectal Suction Biopsies for Calretinin, S100 Protein and Protein Gene Product 9.5
Published on: April 26, 2019
[Enzyme histochemistry of classical and ultrashort Hirschsprung's disease]
E Bruder1, L M Terracciano, E Passarge
1Institut für Pathologie, Universität Basel, Schönbeinstrasse 40, 4031 Basel, Switzerland. elisabeth.bruder@unibas.ch
Insights
Hirschsprung's disease, a neonatal gastrointestinal motility disorder, arises from absent nerve cells in the bowel. Acetylcholinesterase staining of rectal biopsies aids in diagnosing classical and ultrashort forms.
Area of Science:
- Neonatal Pathology
- Gastrointestinal Motility Disorders
- Developmental Biology
Context:
- Hirschsprung's disease is a significant neonatal gastrointestinal dysmotility.
- It stems from abnormal neural crest cell migration, leading to an aganglionic intestinal segment.
- The disease presents in classical (rectosigmoid) and ultrashort (distal rectum) forms.
Purpose:
- To differentiate between classical and ultrashort Hirschsprung's disease.
- To highlight the diagnostic utility of acetylcholinesterase (AChE) enzyme histochemistry.
- To clarify diagnostic criteria, especially for ultrashort Hirschsprung's disease.
Summary:
- Aberrant neural crest cell migration causes aganglionosis in Hirschsprung's disease.
- Classical disease involves the rectosigmoid, while ultrashort disease affects the distal 3-4 cm.
- Increased parasympathetic activity and acetylcholine release occur due to absent myenteric ganglia.
- Acetylcholinesterase staining on rectal biopsies diagnoses classical disease; specific nerve fiber staining patterns are key for ultrashort disease diagnosis.
Impact:
- Accurate diagnosis of Hirschsprung's disease subtypes is crucial for appropriate management.
- Acetylcholinesterase histochemistry provides a reliable diagnostic tool.
- Distinguishing ultrashort Hirschsprung's disease prevents misdiagnosis in cases with scarce distal ganglia.
Abstract:
Hirschsprung's disease is the most important type of gastrointestinal dysmotility in neonatal pathology. Aberrant craniocaudal migration of neural crest stem cells results in an intestinal aganglionic segment of variable length. In 'classical' Hirschsprung's disease (60-75% of cases), the aganglionic segment spans the rectum and sigma. Ultrashort Hirschsprung's disease (5-10%) is restricted to the most distal 3-4 cm or immediate rectoanal transition only. In the normal enteric nervous system, myenteric ganglia modulate the parasympathetic innervation of the sacral roots S2-S4. The absence of myenteric ganglia in Hirschsprung's disease results in massively increased parasympathetic activity with abundant acetylcholine release and pseudo-obstruction in the aganglionic segment. This can be demonstrated in an enzyme histochemical reaction for acetylcholinesterase on frozen sections, which is sufficient to diagnose the classical disease in rectal mucosal biopsies. In ultrashort Hirschsprung's disease, increased acetylcholinesterase activity is demonstrable only in nerve fibres of the muscularis mucosae and submucosa, but not the lamina propria mucosae. Submucosal and myenteric ganglia are physiologically scarce in the most distal rectum; absence of ganglia in a biopsy of the rectoanal transition must not be (wrongly) interpreted as ultrashort Hirschsprung's disease. Therefore, a diagnosis of ultrashort Hirschsprung's disease can be made exclusively using an enzyme histochemical reaction for acetylcholinesterase.
Related Concept Videos
Histology of the Small Intestine
The intestinal lining features transverse folds called circular folds, each housing fingerlike projections known as intestinal villi. These villi are covered by a layer of simple columnar epithelium, also referred to as...
Histology of the Large Intestine
The innermost mucosa layer comprises simple columnar epithelium, lamina propria, and muscularis mucosae. This layer is primarily populated with absorptive cells, tasked with water absorption, and goblet cells, responsible for secreting mucus to...
