The role of NO in macrophage dysfunction at early stage after burn injury

Gaoxing Luo1, Daizhi Peng, Junsong Zheng

  • 1Burn Research Institute, Southwestern Hospital, Third Military Medical University, 30 Gaotanyan Street, Chongqing 400038, China.

Abstract

Insights

Nitric oxide (NO) from macrophages contributes to excessive TNF-alpha and PGE2 production and suppresses lymphocyte function early after burn injury. Modulating NO levels impacts these inflammatory and immune responses.

Area of Science:

  • Immunology
  • Burn Injury Research
  • Nitric Oxide Biology

Background:

  • Macrophage dysfunction is a critical component of the early inflammatory response to burn injury.
  • Nitric oxide (NO) is a key mediator in cellular signaling and immune responses.

Purpose of the Study:

  • To investigate the role of nitric oxide (NO) in macrophage dysfunction during the early stages following burn injury.
  • To determine the impact of NO modulation on inflammatory mediator production and lymphocyte suppression by macrophages.

Main Methods:

  • Peritoneal macrophages were isolated from mice at early stages post-burn.
  • Nitric oxide (NO) production and inducible NO synthase (iNOS) expression were quantified.
  • The effects of L-arginine and N-monomethyl-l-arginine (l-NMMA) on NO, TNF-alpha, PGE2, and iNOS, TNF-alpha, COX-2 expression were assessed.
  • The influence of modified macrophages on normal splenic lymphocyte proliferation was evaluated.

Main Results:

  • Macrophages from burnt mice produced significantly high levels of NO with elevated iNOS expression starting at 6 hours post-burn.
  • L-arginine increased NO production and enhanced TNF-alpha and PGE2 production and expression, while l-NMMA reduced NO production and reversed these effects.
  • Macrophages from 24-hour post-burn mice suppressed lymphocyte proliferation, an effect reduced by l-NMMA but not influenced by L-arginine.

Conclusions:

  • Nitric oxide (NO) derived from macrophages plays a crucial role in the early inflammatory cascade after burn injury.
  • NO contributes to the excessive production of TNF-alpha and PGE2 by macrophages.
  • NO mediates the suppression of lymphocyte function by macrophages in the early post-burn period.

Related Concept Videos

Chronic Inflammation: Introduction01:12

Chronic Inflammation: Introduction

Chronic inflammation is a prolonged, dysregulated immune response that persists for weeks to years when the inciting stimulus is difficult to eradicate or when self‑antigens drive ongoing reactivity. Morphologically, it is defined by mononuclear cell infiltration, progressive tissue destruction, and concurrent attempts at healing via angiogenesis and fibrosis. Compared with acute inflammation, edema is less prominent while cellular infiltration predominates; triggers include persistent...
Inflammation01:38

Inflammation

Overview
Burn Injuries01:22

Burn Injuries

Burn injuries occur when the skin and underlying tissues are damaged due to exposure to heat, electricity, chemicals, radiation, or friction. They can vary in severity, from minor superficial burns to severe deep burns that can be life-threatening.
The damage results in the death of skin cells, which can lead to a massive loss of fluid. Dehydration, electrolyte imbalance, and renal and circulatory failure follow, which can be fatal. Burn patients are treated with intravenous fluids to offset...
Acute Inflammation I: Inflammatory Response01:26

Acute Inflammation I: Inflammatory Response

Acute inflammation is a rapid, short-lived physiological response to tissue injury or infection, designed to eliminate harmful agents and initiate repair. This tightly regulated process typically lasts from minutes to several days and is triggered by factors such as microbial invasion, physical trauma, or chemical injury.Recognition and Mediator ReleaseThe inflammatory response begins when resident immune cells—such as mast cells, macrophages, and dendritic cells—detect damage-associated...