Activation of serotonin receptor-2B rescues small-for-size liver graft failure in mice

Yinghua Tian1, Rolf Graf, Ashraf Mohammad El-Badry

  • 1Laboratory of Hepato-Biliary Surgery and Liver Transplantation, Swiss Hepato-Pancreato-Biliary Center, Department of Surgery, University Hospital Zurich, Zurich, Switzerland.

Abstract

Insights

Enhanced serotonin signaling, specifically through serotonin receptor-2B activation, protects small-for-size (SFS) liver grafts from injury and improves regeneration. This hepato-protective mechanism is independent of interleukin-6 (IL-6).

Area of Science:

  • Hepatology
  • Transplantation Immunology
  • Molecular Medicine

Background:

  • Small-for-size (SFS) syndrome, resulting from liver grafts <30% normal volume, poses a significant risk of graft failure.
  • Strategies to mitigate SFS syndrome are crucial for addressing organ donor shortages.
  • Serotonin is recognized as a potent hepatic growth factor.

Purpose of the Study:

  • To investigate whether augmenting serotonin signaling can prevent the detrimental effects of SFS syndrome.
  • To determine the role of serotonin receptor-2B (5-HT2B) in SFS liver protection.

Main Methods:

  • Performed 30% liver volume transplantations in wild-type and IL-6 knockout mice.
  • Administered α-methyl-5-HT (DOI), a 5-HT2B agonist, to assess its protective effects.
  • Evaluated survival, liver injury markers, microcirculation, and gene expression.

Main Results:

  • DOI administration significantly improved long-term survival in SFS graft recipients compared to controls.
  • DOI treatment ameliorated liver injury, improved microcirculation, and promoted regeneration in SFS grafts.
  • The protective effects of DOI were abrogated by 5-HT2B receptor blockade and were observed even in IL-6 knockout mice.

Conclusions:

  • Serotonin, acting via 5-HT2B receptors, confers significant protection to SFS liver grafts against injury.
  • This hepato-protection enhances microcirculation and regeneration, independent of the IL-6 pathway.

Related Concept Videos