Related Experiment Videos

Macrophage inflammatory protein-2 gene therapy attenuates adenovirus- and acetaminophen-mediated hepatic injury

C M Hogaboam1, K J Simpson, S W Chensue

  • 1Department of Pathology, University of Michigan Medical School, Ann Arbor 48109-0602, USA.

Gene Therapy
|September 7, 1999
PubMed

Insights

Macrophage inflammatory protein-2 (MIP-2) protects against liver injury from adenovirus and acetaminophen. This chemokine may also promote faster liver regeneration after acute damage.

Area of Science:

  • Hepatology
  • Immunology
  • Gene Therapy

Background:

  • Adenovirus gene therapy and acetaminophen overdose can cause severe liver injury.
  • The role of CXC chemokines, like MIP-2, in mediating this hepatotoxicity is not fully understood.

Purpose of the Study:

  • To investigate the role of macrophage inflammatory protein-2 (MIP-2) in adenovirus- and acetaminophen-induced liver injury.
  • To determine if MIP-2 administration can protect against or mitigate hepatotoxicity.

Main Methods:

  • Mice received either a control adenovirus vector (Ad70-3) or an adenovirus vector containing MIP-2 (AdMIP-2).
  • Mice were subsequently challenged with acetaminophen.
  • Liver injury, serum aminotransferases, and leukocyte infiltration were assessed.
  • Experiments were also conducted in mice lacking the MIP-2 receptor, CXCR2.

Main Results:

  • AdMIP-2 administration prevented liver injury caused by adenovirus infection alone.
  • AdMIP-2 significantly reduced mortality and liver injury in mice challenged with both adenovirus and acetaminophen compared to controls.
  • Mice lacking CXCR2 did not show protection from liver injury when treated with AdMIP-2.
  • AdMIP-2 treatment decreased leukocyte infiltration and enhanced hepatic regeneration markers.

Conclusions:

  • MIP-2 plays a protective role in both adenovirus- and acetaminophen-induced liver injury.
  • MIP-2 may promote rapid liver regeneration following acute hepatic damage.
  • The protective effects of MIP-2 are mediated through its receptor, CXCR2.

Related Concept Videos