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article · Transplantation

243.5: Chronic kidney disease: Measuring global burden and effectiveness of treatment.

Abstract

Introduction: As dialysis and transplantation programs work to address the increasing prevalence of chronic kidney disease (CKD, >850 million worldwide in 2023), it is crucial to identify reliable measures to monitor their effectiveness and progress. Existing studies use inconsistent metrics of mortality and have not assessed treatment effectiveness on a population level. We therefore aimed to compare different metrics of mortality and their relationship with national income level, CKD prevalence, and dialysis and transplant volumes. Methods: From the Institute for Health Metrics and Evaluation, the International Society of Nephrology, and the Global Observatory on Donation and Transplantation, we aggregated country-level data on World Bank income level, per-capita gross domestic product adjusted for purchasing power parity (GDP), CKD prevalence, chronic dialysis prevalence, kidney transplantation (KT) incidence, and CKD-specific mortality (CKD mortality). We used uni- and multivariable generalized linear models (gamma with log-link function, alpha = 0.05) to examine relationships among the variables. Results: Data were available for 176 (90.2%) of the world’s countries: 24 low-income (LICs), 45 lower-middle income (LMICs), 43 upper-middle income (UMICs), and 64 high-income countries (HICs). Data completeness averaged 69.3%, 83.2%, 88.6%, and 86.8%, respectively. CKD prevalence, dialysis prevalence, and KT incidence increased with income level (Table 1). CKD mortality, however, had an inverse relationship with income level depending on the metric used: measured as a proportion of all deaths, CKD mortality increased with income level, while age-standardized and dialysis prevalence-adjusted CKD mortality decreased with income level.Unadjusted CKD mortality increased with CKD prevalence across all income levels. Prevalence-adjusted mortality, however, increased with CKD prevalence among HICs but decreased with CKD prevalence among LICs. CKD mortality decreased with unadjusted dialysis prevalence and KT incidence. After GDP adjustment, CKD mortality only decreased with KT incidence, not with dialysis prevalence (Figure 1).Conclusions: On a global scale, the relationship between CKD mortality and income level varies depending on the mortality metric used. Regardless of GDP, however, countries with higher kidney transplant volumes have lower CKD mortality. Our findings stress the importance of deliberate, standardized selection of metrics for researchers evaluating population-level CKD outcomes and for policymakers allocating resources in constrained environments. National Institutes of Health T32 grant in implementation science (5R25HL126146-09).

Research topics

  • Health Systems, Economic Evaluations, Quality of Life

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DOI: 10.1097/01.tp.0001064700.80540.70

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