Renal transplantation represents the most effective form of renal replacement therapy for patients with end-stage renal disease; however, ischemia-reperfusion injury remains a major determinant of early graft dysfunction and long-term transplant outcomes.
Ferroptosis, an iron-dependent form of regulated cell death characterized by lipid peroxidation, has recently been proposed as an important mechanism contributing to ischemia-reperfusion-related tissue injury. In addition, mitochondrial-derived peptides such as humanin and MOTS-c have been identified as key regulators of cellular stress responses and may exert protective effects against oxidative damage. Despite these emerging findings, the influence of anesthetic technique on ferroptosis-related pathways and mitochondrial protective peptides in kidney transplantation has not yet been fully elucidated.
This prospective controlled study is designed to evaluate the effect of anesthetic technique on perioperative biochemical and clinical outcomes in renal transplant recipients. Adult patients undergoing kidney transplantation will receive either sevoflurane-based general anesthesia (SGA) or combined spinal-epidural anesthesia (CSEA). The two anesthetic strategies will be compared in terms of their effects on circulating ferroptosis-related biomarkers, as well as serum levels of humanin and MOTS-c.
Peripheral arterial blood samples will be obtained at two standardized points: immediately before anesthesia induction (T1) and immediately prior to extubation (T2). Following collection, blood samples will be centrifuged, and serum aliquots will be stored under appropriate conditions at -80°C until batch analysis. Serum levels of ferroptosis-related biomarkers, humanin, and MOTS-c will be measured using enzyme-linked immunosorbent assay (ELISA) and standard biochemical techniques.
The primary objective of the study is to assess the effect of anesthetic technique on perioperative changes in serum ferroptosis-related biomarkers and mitochondrial-derived peptides (humanin and MOTS-c).
The secondary objectives are to evaluate early postoperative graft function and clinical recovery parameters, including incidence of delayed graft function, postoperative serum creatinine levels, requirement for dialysis, urine output, and length of hospital stay. In addition, the association between perioperative biomarker levels and clinical outcomes will be analyzed to explore potential predictive relationships.
It is anticipated that this study will provide further insight into the relationship between anesthetic technique, ferroptosis pathways, and mitochondrial-mediated cytoprotection in renal transplantation. The results may contribute to improved understanding of perioperative biological responses and support optimization of anesthetic strategies aimed at enhancing graft outcomes.