Key result
Renal transplantation reduced blood pressure and AIx without affecting PWV, whereas living kidney donation resulted in increased PWV (0.3 m/s increase, P<0.05) and resting forearm resistance.
Why the study?
Vascular status following renal transplantation may improve, while living kidney donation is possibly associated with an increased cardiovascular risk.
Does living kidney donation and renal transplantation affect large artery stiffness and peripheral vascular resistance?
Cohort (n=109)
Does living kidney donation and renal transplantation affect large artery stiffness and peripheral vascular resistance?
Mean Difference: 0.3
p-value: p=<0.05
Renal transplantation improves vascular status in recipients by reducing blood pressure and augmentation index, whereas living kidney donation may increase cardiovascular risk in donors through increased arterial stiffness and vascular resistance.
BACKGROUND: Vascular status following renal transplantation (RT) may improve while living kidney donation (LKD) is possibly associated with an increased cardiovascular risk. METHODS: We prospectively assessed glomerular filtration rate (mGFR, 51Chrome EDTA clearance) and intermediate vascular risk factors in terms of blood pressure (BP), pulse wave velocity (PWV), central augmentation index (AIx), excess pressure (Pexcess), and forearm vascular resistance in donors (n = 58, 45 ± 13 years) and recipients (n = 51, 50 ± 12 years) before and one year following LKD or RT. RESULTS: After kidney donation, mGFR decreased by 33% to 65 ± 11 ml/min/1.73m2, while recipients obtained a mGFR of 55 ± 9 ml/min/1.73m.2 Ambulatory 24-hour mean arterial BP (MAP) remained unchanged in donors but decreased by 5 mm Hg in recipients (P < 0.05). Carotid-femoral PWV increased by 0.3 m/s in donors (P < 0.05) but remained unchanged in recipients. AIx was unaltered after LKD but decreased following RT (P < 0.01), and Pexcess did not change in either group. Resting forearm resistance (Rrest), measured by venous occlusion plethysmography, increased after LKD (P < 0.05) but was unaffected by RT, while no changes were seen in minimum resistance (Rmin). ΔPWV showed a positive linear association to Δ24-hour MAP in both groups. Multiple linear regression analysis (adjusting for age, gender, and the baseline value of the studied parameter) did not detect independent effects of graft function on 24-hour MAP, PWV, AIx, vascular resistance, or Pexcess, whereas low post-donation GFR was related to higher AIx and Rrest. CONCLUSIONS: RT reduced BP and AIx without affecting PWV, whereas LKD resulted in increased PWV and Rrest, despite unchanged BP.
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Buus et al. (2019) conducted a cohort in Renal transplantation and living kidney donation (n=109). Living kidney donation and renal transplantation vs. Baseline (pre-procedure) was evaluated on Carotid-femoral pulse wave velocity (PWV) change in donors (0.3 m/s increase, p=<0.05). Renal transplantation reduced blood pressure and AIx without affecting PWV, whereas living kidney donation resulted in increased PWV (0.3 m/s increase, P<0.05) and resting forearm resistance.
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