Loss of SMAD4 protein expression in gastrointestinal and extra-gastrointestinal carcinomas

Lauren L Ritterhouse1, Elizabeth Yiru Wu2, Woo Gyeong Kim3

  • 1Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.

Histopathology
|May 5, 2019
PubMed
Abstract

Insights

SMAD4 (DPC4) gene loss occurs in various cancers, notably pancreaticobiliary and gastrointestinal types. This study found SMAD4 loss in 58% of pancreatic adenocarcinomas and a smaller percentage in other cancers, aiding in diagnosing unknown primary sites.

Area of Science:

  • Oncology
  • Molecular Pathology
  • Cancer Genetics

Background:

  • SMAD4 (DPC4) is a critical tumor suppressor gene.
  • Loss of SMAD4 protein expression is frequent in pancreaticobiliary and gastrointestinal carcinomas.
  • SMAD4 immunohistochemistry is used to identify tumors of pancreaticobiliary origin.

Purpose of the Study:

  • To evaluate the frequency of SMAD4 loss in a large cohort of carcinomas from diverse anatomical sites.
  • To determine the spectrum of SMAD4 expression in various cancer types beyond the gastrointestinal tract.
  • To assess the utility of SMAD4 loss in identifying carcinomas of unknown primary site.

Main Methods:

  • Immunohistochemistry for SMAD4 was performed on 1210 carcinomas.
  • Tissue microarrays and whole tissue sections were utilized.
  • Carcinomas were sourced from multiple organs including gastrointestinal tract, liver, pancreas/biliary tract, lung, breast, thyroid, kidney, ovary, and uterus.

Main Results:

  • SMAD4 loss was observed in 58% of pancreatic adenocarcinomas and 27% of appendiceal adenocarcinomas.
  • Significant SMAD4 loss was also noted in colorectal (19%), cholangiocarcinomas (16%), and lung adenocarcinomas (10%).
  • Intact SMAD4 nuclear expression was consistently found in papillary thyroid, hepatocellular, non-mucinous ovarian, endometrial, and renal cell carcinomas.

Conclusions:

  • SMAD4 loss is a characteristic feature of pancreaticobiliary and appendiceal tumors.
  • A subset of breast, lung, esophageal, and gastric adenocarcinomas also exhibit SMAD4 loss.
  • Recognizing SMAD4 loss in these additional tumor types is crucial for diagnosing carcinomas of unknown or uncertain primary origin.

Related Concept Videos

Anatomy of the Gastrointestinal System01:26

Anatomy of the Gastrointestinal System

The human digestive system is an intricate and essential network for nutrient absorption and waste elimination. It encompasses the gastrointestinal (GI) tract and several accessory organs.
Here's a detailed walkthrough of this complex system:
2.7K
Histology of the Gastrointestinal (GI) Tract01:20

Histology of the Gastrointestinal (GI) Tract

The GI tract, from beginning to end, is made up of four continuous tissue layers that adjust their structure according to their specific roles. These layers, from innermost to outermost, are known as the mucosa, submucosa, muscularis, and serosa, which are continuous with the mesentery.
The mucosa is sometimes called a mucous membrane due to its mucus-secreting features. This membrane is composed of epithelium, which directly interacts with ingested substances, and the lamina propria, a layer...
3.4K
Gastrointestinal Motility Disorders01:20

Gastrointestinal Motility Disorders

Gastrointestinal or GI motility disorders are characterized by irregular gastrointestinal tract movements, disrupting food transit from the mouth to the anus. They are caused by damage or dysfunction in gut muscles or nerves. These disorders can cause symptoms such as severe constipation, diarrhea, abdominal pain, and swallowing difficulties. Disorders can affect any segment of the GI tract and range widely in severity, from common conditions like GERD to life-threatening conditions like...
1.2K
Physiology of the Gastrointestinal System I: Ingestion and Propulsion01:22

Physiology of the Gastrointestinal System I: Ingestion and Propulsion

The physiology of the gastrointestinal system begins with ingestion as food enters the mouth.
1.8K
Physiology of the Gastrointestinal System II: Digestion and Absorption01:22

Physiology of the Gastrointestinal System II: Digestion and Absorption

The gastrointestinal (GI) tract, extending from the mouth to the anus, plays a pivotal role in the digestion and absorption of nutrients. This process involves both mechanical and chemical actions facilitated by various enzymes.
Digestion begins in the mouth, where food undergoes mechanical breakdown by chewing and combines with saliva. Salivary amylase, an enzyme in saliva, starts the breakdown of starches into maltose. The food then travels down the esophagus to the stomach.
In the stomach, a...
1.8K
Physiology of the Gastrointestinal System III: Elimination01:26

Physiology of the Gastrointestinal System III: Elimination

The gastrointestinal elimination process involves a complex interplay of neural and hormonal mechanisms that coordinate the final waste removal from the body. This intricate operation encompasses the absorption of water and electrolytes, vital for transforming the remaining indigestible food matter into feces. The large intestine is pivotal in water and electrolyte absorption, forming feces from unabsorbed minerals, undigested food, bacteria, bile pigments, and shed epithelial cells. Essential...
1.5K