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Pulse Index Continuous Cardiac Output-Guided Hemodynamic Therapy in Living Donor Kidney Transplantation: A
Van Dung Le1,2, Huu Tu Nguyen2, Quang Thuy Luu3
1Department of Anesthesiology and Intensive Care, Cho Ray Hospital, Ho Chi Minh City, Vietnam.
Insights
Pulse index continuous cardiac output-guided goal-directed hemodynamic therapy (GDHT) improved early kidney graft function in living donor kidney transplantation. This dynamic approach used less fluid and showed faster recovery compared to central venous pressure (CVP)-guided therapy.
Area of Science:
- Nephrology
- Transplantation
- Critical Care Medicine
Background:
- Central venous pressure (CVP) is a common but limited static marker for fluid responsiveness in kidney transplantation.
- Dynamic hemodynamic monitoring offers potential advantages over static parameters.
Purpose of the Study:
- To evaluate if pulse index continuous cardiac output-guided goal-directed hemodynamic therapy (GDHT) improves early graft function compared to CVP-guided therapy in living donor kidney transplantation.
Main Methods:
- Prospective observational cohort study of 80 living donor kidney transplant recipients.
- Comparison between CVP-guided fluid therapy (n=40) and PiCCO-guided GDHT (n=40).
- PiCCO protocol included stroke volume variation, cardiac index, and other dynamic variables.
Main Results:
- PiCCO-GDHT group received less intraoperative fluid (2,656 vs. 3,097 mL).
- First-hour postoperative urine output was higher in the PiCCO-GDHT group (1,235 vs. 1,010 mL).
- Serum creatinine was lower on postoperative day 3 in the PiCCO-GDHT group (P=0.036).
Conclusions:
- PiCCO-guided GDHT demonstrated lower intraoperative fluid use and faster early graft function recovery.
- Findings support multiparameter hemodynamic monitoring for individualized perioperative care in kidney transplantation.
Background:
Central venous pressure (CVP)-guided fluid therapy remains common during kidney transplantation, although CVP is a static marker with limited ability to predict fluid responsiveness. This prospective observational cohort study evaluated whether pulse index continuous cardiac output-guided goal-directed hemodynamic therapy (GDHT), using dynamic and volumetric hemodynamic variables, was associated with improved early graft function compared with conventional CVP-guided management in living donor kidney transplantation.
Methods:
Eighty living donor kidney transplant recipients at Cho Ray Hospital, Vietnam, were enrolled between May 2024 and December 2025. Patients were managed according to the institutional anesthetic monitoring protocol in use at the time of surgery: CVP-guided fluid therapy (group C, n = 40) or PiCCO-guided GDHT (group P, n = 40). The PiCCO protocol incorporated stroke volume variation, pulse pressure variation, cardiac index, global end-diastolic volume index, systemic vascular resistance index, and extravascular lung water index. Outcomes included intraoperative fluid volume, vasopressor use, postoperative urine output, serum creatinine through postoperative day 7, delayed graft function, and postoperative complications.
Results:
Baseline recipient, donor, and operative characteristics were comparable between groups, with the exception of cold ischemia time, which was longer in group P. Total intraoperative fluid volume was lower in group P than in group C (2,656 ± 480 mL vs. 3,097 ± 555 mL; P = 0.001), and vasopressor use was numerically lower but not statistically significant (12.5% vs. 27.5%; Fisher's exact P = 0.161). First-hour postoperative urine output was higher in group P (1,235 ± 162 mL vs. 1,010 ± 315 mL; P < 0.001). Serum creatinine was similar on postoperative day 1 but was significantly lower in group P on day 3 (1.3 (0.8-1.8) mg/dL vs. 1.6 (1.4-1.9) mg/dL; P = 0.036); the difference on day 7 was not statistically significant (1.1 (0.7-1.4) mg/dL vs. 1.3 (1.1-2.1) mg/dL; P = 0.16). No patient in either group developed delayed graft function within 7 days. Extravascular lung water index remained within the reference range during surgery, and no patient developed clinical pulmonary edema.
Conclusions:
In this prospective cohort, PiCCO-guided GDHT was associated with lower intraoperative fluid administration, numerically lower vasopressor use, and faster early recovery of graft function after living donor kidney transplantation. These findings support further evaluation of multiparameter hemodynamic monitoring as an individualized perioperative strategy in kidney transplantation.
Related Concept Videos
Kidney Transplant I: Introduction
Kidney Transplant II: Surgical Procedure
Continuous Renal Replacement Therapy

