(TKP2021-EGA-23) Támogató: Innovációs és Technológiai Minisztérium
János Bolyai Research Scholarship of the Hungarian Academy of Sciences(TKP2021-NVA-15)
Thematic Excellence Programme (2020-4.1.1.-TKP2020)(NKFIH-1277-2/2020) Támogató: Innovációs
és Technológiai Minisztérium
(2020-4.1.1.-TKP2020)
National Research, Development and Innovation Office (NKFIH) of Hungary(K134939)
(739593) Támogató: Horizon 2020
(2019-2.1.7-ERA-NET-2021-00015)
(NVKP-16-1-2016-0017 National Heart Program) Támogató: NKFIH
The proinflammatory cascade that is activated at the time of brain death plays a crucial
role in organ procurement. Our aim of this study was to explore the relationship between
the clinical outcome of orthotopic heart transplantation, as well as cytokine and
apolipoprotein profiles of the pericardial fluid obtained at donation. Interleukin,
adipokine and lipoprotein levels in the pericardial fluid, as well as clinical data
of twenty donors after brain death, were investigated. Outcome variables included
primary graft dysfunction, the need for posttransplantation mechanical cardiac support
and International Society for Heart and Lung Transplantation grade ≥ 2R rejection.
Hormone management and donor risk scores were also investigated. Lower levels of IL-6
were observed in primary graft dysfunction (median: 36.72 [IQR: 19.47–62.90] versus
183.67 [41.21–452.56]; p = 0.029) and in the need for mechanical cardiac support (44.12
[20.12–85.70] versus 247.13 [38.51–510.38]; p = 0.043). Rejection was associated with
lower ApoAII (p = 0.021), ApoB100 (p = 0.032) and ApoM levels (p = 0.025). Lower adipsin
levels were detected in those patients receiving desmopressin (p = 0.037); moreover,
lower leptin levels were found in those patients receiving glucocorticoid therapy
(p = 0.045), and higher T3 levels were found in those patients treated with L-thyroxine
(p = 0.047) compared to those patients not receiving these hormone replacement therapies.
IL-5 levels were significantly associated with UNOS-D score (p = 0.004), Heart Donor
Score (HDS) and Adapted HDS (p < 0.001). The monitoring of immunological and metabolic
changes in donors after brain death may help in the prediction of potential complications
after heart transplantation, thus potentially optimizing donor heart allocation.