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Synapse
May 13, 20260 citationsOpen Access

Urine Recirculation During Normothermic Kidney Preservation Improves Energy Balance Involving the Urea and Citric Acid Cycles.

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AWAnnemarie WeissenbacherZYZhanru YuHHHonglei Huang

Key Points

  • To investigate how urine recirculation impacts metabolic traits during normothermic kidney preservation.
  • Kidney NMP performed on discarded human kidneys for up to 24 hours.
  • Urine recirculation was compared with urine replacement using Ringer's lactate.
  • Metabolomics analyses conducted using 2-dimensional gas chromatography mass spectrometry on perfusates.
  • Urine recirculation resulted in longer kidney perfusion times compared to urine replacement.
  • Elevated levels of disaccharides, urea, amino acids associated with urine recirculation.
  • Kidney function improved, indicated by relationships between estimated glomerular filtration rate and metabolite accumulation.

Abstract

Background: Deceased-donor kidneys experience cellular stress before undergoing transplantation. To alleviate this, preservation techniques were developed, including normothermic machine perfusion (NMP). Methods: Here, we performed kidney NMP on discarded human kidneys for up to 24 h. Volume management was regulated either by urine recirculation (UR) or urine replacement (NUR) with Ringer's lactate. Notably, UR led to longer perfusion times compared with NUR. To investigate kidney NMP metabolic traits with or without UR over time, we performed longitudinal metabolomics analyses of perfusates of 8 NMP kidneys by 2-dimensional gas chromatography mass spectrometry (GCxGC-MS). Results: Over 600 metabolic features were profiled, from which 74 were identified and 54 consistently quantified across 26 perfusate samples. Most notably, elevated levels of disaccharides (different isomers), hydroxy-purines, urea, glutamate, and amino acids are associated with the perfusion factor UR. Moreover, donor estimated glomerular filtration rate correlated significantly with the accumulation of lactate and gluconate. Most strikingly, lactate levels seemed to be more balanced in UR-NMP perfusate, which otherwise accumulated rapidly within the first 6 h. Conclusions: Kidney preservation by NMP was previously limited to hours. UR-NMP affected kidney energy homeostasis, carbohydrate and purine metabolism, and the urea and citric acid cycles. These insights add value to explain how urine-driven adaptations contribute to prolonged kidney function under NMP.

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Cite This Study

Weissenbacher et al. (2026) studied this question.

synapsesocial.com/papers/6a03cbe01c527af8f1ecfa71https://doi.org/10.1097/txd.0000000000001947
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Also Consider

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  1. 1Physiological Normothermic Machine Perfusion Enhances Kidney Preservation Versus the Established UK Normothermic Machine Perfusion Assessment Protocol2025
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  4. 4Multimodal Assessment of Kidney Quality During 24‐h of Normothermic Machine Perfusion2026
  5. 5A cell-free nutrient-supplemented perfusate allows four-day ex vivo metabolic preservation of human kidneys2024 · 43 citations