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April 27, 2026Clinical Kidney Journal1 citationsOpen Access

Preserving Residual Kidney Function in Peritoneal Dialysis: From Conventional Approaches to Contemporary Practice

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HYHacı Hasan Yeter

Key Points

  • This review aims to summarize the factors affecting residual kidney function (RKF) in peritoneal dialysis (PD) and evaluate strategies for its preservation.
  • Reviewed current evidence on mechanisms of RKF loss in PD.
  • Evaluated conventional and emerging strategies to preserve RKF.
  • Proposed an integrated framework for RKF preservation, focusing on glucose exposure.
  • Identified major contributors to RKF decline, including inflammation and volume shifts.
  • Proposed that an integrated approach may improve RKF outcomes.
  • Emphasized the role of artificial intelligence tools in supporting individualized care.

Abstract

Abstract Residual kidney function (RKF) is a key determinant of outcomes in patients undergoing peritoneal dialysis (PD), contributing to solute clearance, volume regulation, reduced inflammation, and improved survival. Nevertheless, RKF commonly declines after PD initiation, often due to potentially modifiable clinical and treatment-related factors. This narrative review summarizes current evidence on the mechanisms underlying RKF loss in PD and evaluates established and emerging strategies to preserve RKF in contemporary practice. Major contributors to RKF decline include hemodynamic instability, cumulative glucose exposure, inflammation and peritonitis, nephrotoxic medications, dialysis-related volume shifts, and kidney disease-specific conditions. Conventional strategies such as incremental and individualized PD prescriptions, use of biocompatible and glucose-sparing solutions, careful volume and blood pressure management, renin–angiotensin–aldosterone system blockade, infection prevention, and tailored management after kidney allograft failure are reviewed. Importantly, current guideline-based strategies largely address these factors in isolation. We propose that RKF preservation should be approached through an integrated, mechanism-based framework, in which cumulative glucose exposure represents a central modifiable mediator linking multiple pathways of kidney injury. In this context, remote monitoring and artificial intelligence–based tools may serve as enabling platforms that integrate longitudinal clinical and treatment data, supporting individualized and proactive care. Preserving RKF should remain a central therapeutic goal in PD, and combining established physiological principles with modern digital technologies may provide a more effective framework for improving long-term patient outcomes.

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Cite This Study

Hacı Hasan Yeter (2026) studied this question.

synapsesocial.com/papers/69eefd15fede9185760d3cc4https://doi.org/10.1093/ckj/sfag131
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