Early reduction of regulatory T cells is associated with acute rejection in liver transplantation under tacrolimus-based immunosuppression with basiliximab induction.
Ji Won HanDong Jin JooJong Hoon KimMin-Seok RhaJune Young KohHye Jung ParkJae Geun LeeMyoung Soo KimSoon Il KimEui-Cheol ShinJun Yong ParkSu-Hyung ParkPublished in: American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons (2020)
Regulatory T (Treg) cells are important in preventing acute rejection (AR) in solid organ transplantation, but the clinical relevance of the different kinetics early after liver transplantation (LT) in acute rejectors and non-rejectors is unclear. We analyzed peripheral blood samples of 128 LT recipients receiving basiliximab induction plus tacrolimus immunosuppression. Samples were obtained at pretransplant, D7, and D30 after LT. Frequency and phenotype of Tregs were analyzed by flow cytometry. The predictive value of Treg frequency at D7 was assessed for suspected acute rejection (SAR) and was validated for biopsy-proven AR (BPAR). We found that the frequencies of total and activated Tregs at D7 were significantly lower in recipients with SAR and BPAR. Treg was more reduced in BPARs by in vitro tacrolimus treatment in the presence of basiliximab. Moreover, an early reduction of Treg frequency in rejectors was associated with a greater increase in Treg apoptosis and further attenuated IL-2 signaling. D7 Treg frequency was an independent risk factor for SAR, which was also validated for BPAR. In conclusion, first-week peripheral blood Treg frequency correlates with AR after LT under tacrolimus-based immunosuppression, which needs to be proven in larger, geographically and clinically diverse populations.
Keyphrases
- liver failure
- peripheral blood
- regulatory t cells
- respiratory failure
- aortic dissection
- flow cytometry
- drug induced
- cell cycle arrest
- hepatitis b virus
- cell death
- induced apoptosis
- dendritic cells
- oxidative stress
- stem cells
- endoplasmic reticulum stress
- immune response
- kidney transplantation
- bone marrow
- extracorporeal membrane oxygenation
- acute respiratory distress syndrome
- mechanical ventilation
- ultrasound guided
- cell therapy