We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us
GC Medical Science corp.

Download Mobile App




Intestinal Cells Protected from Radiation by Manipulation of Molecule

By MedImaging staff writers
Posted on 25 Jun 2008
A new study identifies a signaling molecule that plays a key role in radiation-induced intestinal damage. More...
The research may lead to new strategies for protecting normal tissues from radiation during cancer therapies.

Although radiation is one of the most effective treatments for cancer, damage to the cells that line the gastrointestinal tract is a key limiting factor for patients undergoing pelvic or abdominal radiotherapy. The specific processes that underlie radiation-induced gastrointestinal toxicity, known as gastrointestinal (GI) syndrome, are not well understood. Earlier research has suggested that damage to intestinal stem cells and/or injury to intestinal blood vessel cells, called endothelial cells, are involved in the pathogenesis of GI syndrome.

The group of researchers, led by Drs. Jian Yu and Lin Zhang from the University of Pittsburgh Cancer Institute and School of Medicine (Philadelphia, PA, USA), found that the protein p53-upregulated modulator of apoptosis (PUMA) plays a major role in the radiation-induced damage of intestinal cells. PUMA is an established mechanism in the apoptosis pathway, a process by which cells undergo a type of programmed self-destruction.

Dr. Yu and colleagues, who published their findings in the June 2008 issue of the journal Cell Stem Cell, discovered that mice with a deficiency of PUMA exhibited impaired apoptosis in intestinal stem and progenitor cells, and enhanced intestinal regeneration following injury. The mutant mice therefore retained better intestinal integrity and survived longer following lethal doses of radiation. Although endothelial cells displayed a rapid induction of PUMA upon exposure to radiation, deletion of the protein did not change apoptosis in these specific cells.

These findings provide a mechanistic explanation of intestinal radiosensitivity and suggest that apoptosis of epithelial cells, and not endothelial cells, is the primary event that underlies the rapid onset of GI syndrome. "We were really excited to learn that deficiency in a single gene significantly protects against GI syndrome,” explained Dr. Yu. "Selectively curbing radiosensitivity in the normal tissues transiently by PUMA inhibitors might be particularly beneficial in cancer therapy.”


Related Links:
University of Pittsburgh School of Medicine

Platinum Member
Real-Time Diagnostics Onscreen Viewer
GEMweb Live
Gold Member
SARS‑CoV‑2/Flu A/Flu B/RSV Sample-To-Answer Test
SARS‑CoV‑2/Flu A/Flu B/RSV Cartridge (CE-IVD)
Radiology System
Riviera SPV AT
X-Ray System
Leonardo DR mini III
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to HospiMedica.com and get access to news and events that shape the world of Hospital Medicine.
  • Free digital version edition of HospiMedica International sent by email on regular basis
  • Free print version of HospiMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of HospiMedica International in digital format
  • Free HospiMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Surgical Techniques

view channel
Image: Professor Bumsoo Han and postdoctoral researcher Sae Rome Choi of Illinois co-authored a study on using DNA origami to enhance imaging of dense pancreatic tissue (Photo courtesy of Fred Zwicky/University of Illinois Urbana-Champaign)

DNA Origami Improves Imaging of Dense Pancreatic Tissue for Cancer Detection and Treatment

One of the challenges of fighting pancreatic cancer is finding ways to penetrate the organ’s dense tissue to define the margins between malignant and normal tissue. Now, a new study uses DNA origami structures... Read more

Patient Care

view channel
Image: The portable biosensor platform uses printed electrochemical sensors for the rapid, selective detection of Staphylococcus aureus (Photo courtesy of AIMPLAS)

Portable Biosensor Platform to Reduce Hospital-Acquired Infections

Approximately 4 million patients in the European Union acquire healthcare-associated infections (HAIs) or nosocomial infections each year, with around 37,000 deaths directly resulting from these infections,... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.