This study investigates the role of vasopressin activity, assessed through copeptin levels, in the hemodynamic changes occurring during hemodialysis. Vasopressin is involved in both water homeostasis and vascular regulation, yet its contribution to intradialytic blood pressure variations remains insufficiently characterized. Hemodialysis induces rapid shifts in osmotic gradients and extracellular volume, creating conditions in which vasopressinmediated mechanisms may influence vascular tone and fluid balance. The research is based on a retrospective observational design involving chronic hemodialysis patients. Clinical records were reviewed to collect blood pressure measurements obtained before, during, and after dialysis sessions, as well as laboratory data including copeptin, plasma osmolality, cortisol, and aldosterone.
When residual diuresis was present, urinary volume and osmolality were documented. Additional information related to dry weight, ultrafiltration parameters, and routine markers of fluid balance was extracted from standard clinical evaluations.
These data provide a framework for examining the association between vasopressin activity and intradialytic hypertension, and for exploring the contribution of other hormonal pathways involved in fluid and vascular regulation.