Esophagus histology

Last updated: November 01, 2022

Esophagus histology

GI

GI

Anatomy of the pharynx and esophagus
Anatomy of the oral cavity
Anatomy of the salivary glands
Anatomy of the tongue
Anatomy of the anterolateral abdominal wall
Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the abdominal viscera: Esophagus and stomach
Anatomy of the abdominal viscera: Small intestine
Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Pancreas and spleen
Anatomy of the gastrointestinal organs of the pelvis and perineum
Anatomy of the abdominal viscera: Innervation of the abdominal viscera
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy of the diaphragm
Anatomy of the inguinal region
Anatomy of the muscles and nerves of the posterior abdominal wall
Anatomy of the peritoneum and peritoneal cavity
Anatomy clinical correlates: Anterior and posterior abdominal wall
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Anatomy clinical correlates: Peritoneum and diaphragm
Anatomy clinical correlates: Other abdominal organs
Development of the digestive system and body cavities
Development of the gastrointestinal system
Development of the teeth
Development of the tongue
Gallbladder histology
Esophagus histology
Stomach histology
Small intestine histology
Colon histology
Liver histology
Pancreas histology
Gastrointestinal system anatomy and physiology
Anatomy and physiology of the teeth
Liver anatomy and physiology
Enteric nervous system
Esophageal motility
Gastric motility
Gastrointestinal hormones
Chewing and swallowing
Carbohydrates and sugars
Fats and lipids
Proteins
Vitamins and minerals
Intestinal fluid balance
Pancreatic secretion
Bile secretion and enterohepatic circulation
Prebiotics and probiotics
Cleft lip and palate
Congenital diaphragmatic hernia
Esophageal web
Tracheoesophageal fistula
Pyloric stenosis
Sialadenitis
Parotitis
Oral candidiasis
Ludwig angina
Aphthous ulcers
Temporomandibular joint dysfunction
Dental abscess
Gingivitis and periodontitis
Dental caries disease
Oral cancer
Warthin tumor
Barrett esophagus
Achalasia
Plummer-Vinson syndrome
Mallory-Weiss syndrome
Boerhaave syndrome
Gastroesophageal reflux disease (GERD)
Zenker diverticulum
Diffuse esophageal spasm
Esophageal cancer
Eosinophilic esophagitis (NORD)
Gastritis
Gastric dumping syndrome
Peptic ulcer
Gastroparesis
Cyclic vomiting syndrome
Gastroenteritis
Gastric cancer
Gastroschisis
Omphalocele
Meckel diverticulum
Imperforate anus
Hirschsprung disease
Intestinal atresia
Intestinal malrotation
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Intussusception
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Celiac disease
Short bowel syndrome (NORD)
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Whipple's disease
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Ulcerative colitis
Bowel obstruction
Intestinal adhesions
Volvulus
Gallstone ileus
Abdominal hernias
Femoral hernia
Inguinal hernia
Small bowel ischemia and infarction
Ischemic colitis
Familial adenomatous polyposis
Peutz-Jeghers syndrome
Gardner syndrome
Juvenile polyposis syndrome
Colorectal polyps
Colorectal cancer
Carcinoid syndrome
Irritable bowel syndrome
Diverticulosis and diverticulitis
Appendicitis
Anal fissure
Anal fistula
Hemorrhoid
Rectal prolapse
Inflammatory bowel disease: Pathology review
Salmonella (non-typhoidal)
Clostridium perfringens
Bacillus cereus (Food poisoning)
Listeria monocytogenes
Hepatitis A and Hepatitis E virus
Clostridium botulinum (Botulism)
Leptospira
Pancreatitis: Pathology review
Gallbladder disorders: Pathology review
Pancreatic cancer
Colorectal polyps and cancer: Pathology review

Transcript

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The gastrointestinal or GI tract extends as a single tube from the esophagus all the way to the distal portion of the anal canal.

Although different parts of the tract may appear to have very different structures and functions, the wall still maintains 4 main layers all throughout the GI tract: the mucosa, submucosa, muscularis propria, and either an outer serosa or adventitia.

Even in this low power cross-section of the esophagus, we can see the inner mucosa, submucosa, and muscularis propria, although the outer adventitia isn’t present in this image.

All 4 layers have variations to their structure and function in different regions of the GI tract, but the mucosa is the layer that typically has the most significant changes.

The mucosa of the esophagus consists of 3 main layers.

At 20x magnification, we can see each of the layers more clearly.

The epithelium, lamina propria, and muscularis mucosa.

The thick epithelial layer lines the lumen of the esophagus and consists of stratified squamous non-keratinized cells, which has their typical appearance of flat, overlapping cells that are more flat as they move away from the base or basal cell layer.

The lamina propria is a much thinner layer of dense irregular connective tissue.

It provides a supporting function to the epithelium, such as the blood vessels within the connective tissue that supply blood to the epithelium.

The muscularis mucosa is the outermost layer of the mucosa and is comprised of smooth muscle.

The muscle fibers in this image have a circular or dot-like appearance because the fibers run longitudinally or in the same direction as the esophagus.

The lower esophageal sphincter or LES for short is actually not an anatomical sphincter, which means histologically, there is no well-defined thickening or muscle that controls the LES.

Instead, the LES is considered a physiological or functional sphincter.

But when this sphincter isn’t functioning properly, it can lead to gastric acid reflux into the lower esophagus, which can cause heartburn.

Also, over time, prolonged exposure to gastric acid can cause damage to the epithelium of the esophagus.

The body attempts to adapt by transforming the normal stratified squamous cells of the lower esophageal lining into a mucus-secreting epithelium with simple columnar cells, which are better at protecting itself from gastric acid.

This condition is called Barrett esophagus, which is a form of metaplasia.

Unfortunately though, this metaplastic change also increases the risk of developing an esophageal adenocarcinoma.

These changes can also be identified by using an endoscope, where we’d see “Salmon-colored” patches at the lower segment of the esophagus.

The presence of both endoscopic and histologic changes are needed for the diagnosis of barrett esophagus.

The next main layer is the submucosa, which consists mostly of dense collagenous connective tissue that stains pink, but the submucosa also contains mucous glands, blood vessels, lymphatic vessels, and nerves.

Within the connective tissue there’s also elastin fibers, which allows the esophagus to expand when food passes through it.

The mucous gland is visible, which are small, compound, tubuloalveolar glands that secrete mucus that stains purple.

There are typically more mucous glands present in the upper and lower thirds of the esophagus.

The location of mucous glands within the submucosal layer is actually a unique feature specific to both the esophagus and the duodenum.

Key Takeaways

The esophagus is a muscular tube that carries food and liquids from the pharynx to the stomach. It has four layers of tissue, which are the mucosa, the submucosa, the muscularis propria, and either the serosa or adventitia.

The mucosa is a thin layer of cells that line the inside of the esophagus, and has glands that secrete mucus that protect the lining of the esophagus and keeps it moist. Beneath lies the submucosa that consists of connective tissue that supports the mucosa, and contains blood vessels, lymphatic vessels, and nerve endings. Next, lies the muscularis propria consisting of smooth muscle tissue that contracts to move food and liquids through the esophagus. Finally, comes the adventitia, which is the outer layer of the esophagus, which takes the name of serosa in the abdominal cavity after it's covered by the visceral peritoneum.

Sources

  1. "Histology. A Text and Atlas" Wolters Kluwer (2018)
  2. "Wheater's Functional Histology" Churchill Livingstone (2013)
  3. "Robbins Basic Pathology" Elsevier (2017)
  4. "Diagnostic Immunohistochemistry" Elsevier (2021)
  5. "Cytology" Saunders (2013)
  6. "Adult Human Upper Esophageal Sphincter Contains Specialized Muscle Fibers Expressing Unusual Myosin Heavy Chain Isoforms" Journal of Histochemistry & Cytochemistry (2006)