Hepatic cell mobilization for protection against ischemic myocardial injury

Shu Q Liu1, John B Troy2, Chi-Hao Luan3

  • 1Biomedical Engineering Department, Northwestern University, Evanston, IL, 60208, USA. sliu@northwestern.edu.

Scientific Reports
|August 5, 2021
PubMed

Insights

Myocardial ischemia-reperfusion injury triggers the mobilization of distant hepatic cells to the heart. These liver cells release trefoil factor 3 (TFF3), a protein that protects the heart and supports myocardial survival.

Area of Science:

  • Cardiovascular Biology
  • Hepatology
  • Regenerative Medicine

Background:

  • The heart activates protective mechanisms against ischemic injury, primarily through local paracrine signaling.
  • A distant organ involvement in cardioprotection has been less understood.

Purpose of the Study:

  • To investigate a novel distant cardioprotective mechanism involving hepatic cell mobilization to the ischemic myocardium.
  • To identify the role of hepatic cells and their secreted factors in mitigating myocardial ischemia-reperfusion (MI-R) injury.

Main Methods:

  • A parabiotic mouse model was established by surgically joining two mice.
  • Bilateral MI-R injury was induced alongside unilateral hepatectomy to assess hepatic cell mobilization.
  • Hepatic cells were tracked using enhanced YFP expression.
  • Trefoil factor 3 (TFF3) expression and its role in MI-R injury were evaluated in wildtype and TFF3 knockout mice.

Main Results:

  • Hepatic cells were detected in the ischemic myocardium of parabiotic mice with intact livers but not in those with hepatectomy.
  • Mobilized hepatic cells expressed and released trefoil factor 3 (TFF3).
  • TFF3 deficiency exacerbated myocardial infarct size following MI-R injury compared to wildtype controls.

Conclusions:

  • Myocardial ischemia-reperfusion injury induces the mobilization of hepatic cells to the heart.
  • These mobilized hepatic cells contribute to cardioprotection by releasing TFF3.
  • This study reveals a novel distant organ crosstalk mechanism for myocardial protection.