Get Updates
Get notified of breaking news, exclusive insights, and must-see stories!

Newly discovered pathway could pave way for treatments for immune diseases

Washington, Dec 24 (ANI): Scientists at NYU Langone Medical Center have discovered a new pathway that could prevent tissue damage caused by inflammation.

The researchers have discovered that in addition to white blood cells, other cells such as epithelial and endothelial cells, also respond to interferon gamma and also protect mice from uncontrolled tuberculosis infection.

Interferon gamma is a protein secreted by lymphocytes that is used to fight the bacteria in white blood cells that cause tuberculosis.

This new pathway could lead to the developments of treatments that could limit or prevent tissue damage resulting from inflammation.

"Through research on tuberculosis, we discovered a new way that the immune system response is controlled. Further study may reveal treatments that could be useful in control of inflammation and tissue damage in certain infections and autoimmune diseases," said lead author Dr. Joel Ernst, director of the Division of Infectious Diseases and the Jeffrey Bergstein Professor of Medicine at NYU Langone Medical Center.

In the study, researchers looked at interferon gamma responses in epithelial and endothelial cells to control tuberculosis in mice.

Cells such as epithelial and endothelial cells were found to respond to interferon gamma by producing an enzyme, indolelamine-2-3-dioxygenase (IDO), that converts the amino acid tryptophan to products called kynurenines.

These kynurenines inhibit the production of Th17 cells, the lymphocytes that contribute to tissue-damaging inflammation.

The study has been published in Immunity. (ANI)

Notifications
Settings
Clear Notifications
Notifications
Use the toggle to switch on notifications
  • Block for 8 hours
  • Block for 12 hours
  • Block for 24 hours
  • Don't block
Gender
Select your Gender
  • Male
  • Female
  • Others
Age
Select your Age Range
  • Under 18
  • 18 to 25
  • 26 to 35
  • 36 to 45
  • 45 to 55
  • 55+