Key result
Persistent left ventricular hypertrophy in the 5th year after kidney transplantation was independently associated with an increased risk of allograft failure (HR 1.95; 95% CI 1.14 to 3.33; p=0.015).
Why the study?
Does persistent left ventricular hypertrophy after kidney transplantation increase the risk of allograft failure?
Cohort (n=767)
Yes
Does persistent left ventricular hypertrophy after kidney transplantation increase the risk of allograft failure?
Hazard Ratio: 1.95 (95% CI 1.14–3.33)
p-value: p=0.015
Persistent left ventricular hypertrophy after kidney transplantation is an independent predictor of allograft failure, highlighting the reciprocal interaction between cardiac remodeling and graft outcomes.
May identify higher-risk recipients; leaves open whether LVH regression improves allograft survival in prospective trials.
OBJECTIVE: This study aimed to investigate the incidence and related clinical factors of LV hypertrophy (LVH) regression after kidney transplantation and its effect on graft outcome. METHODS: Among the 3373 kidney transplant recipients who were enrolled in a multicentre cohort from 1997 to 2012, a total of 767 patients who underwent echocardiography before and after transplantation were included in this study followed for a median of 7.5 years. RESULTS: LVH regression steadily increased from 7.4% at 1 year to 35.4% at 5 year over the 5-year post-transplantation period. The probability of LVH regression decreased in the patients who received a kidney transplant due to end-stage renal disease of unknown aetiology (p=0.041) or who underwent pretransplant haemodialysis (p=0.020). The probability of LVH regression also decreased as the pretransplant LV mass index (p<0.001) and post-transplant systolic blood pressure increased (p=0.005). Conversely, LVH regression was significantly associated with the highest tertile of the pretransplant haemoglobin level (p=0.029). Furthermore, in the 5th year after transplantation, persistent LVH was independently associated with allograft failure (HR 1.95; 95% CI 1.14 to 3.33; p=0.015) and the LV mass index reliably predicted graft outcome. CONCLUSIONS: LVH consistently regressed after kidney transplantation in most patients. Persistent LVH, low haemoglobin levels and elevated blood pressure were associated with an increased risk of allograft failure in kidney transplant recipients.
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An et al. (2015) conducted a cohort in Kidney transplant recipients (n=767). Persistent LVH vs. LVH regression was evaluated on Allograft failure (HR 1.95, 95% CI 1.14 to 3.33, p=0.015). Persistent left ventricular hypertrophy in the 5th year after kidney transplantation was independently associated with an increased risk of allograft failure (HR 1.95; 95% CI 1.14 to 3.33; p=0.015).
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