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Completed

NCT Number: NCT06707272

A Study of the Correlation Between Donor UDP-Glc and Transplanted Kidney Function

Kidney transplantation is the preferred treatment for end-stage renal disease (ESRD), however, organ shortage is the primary bottleneck restricting the progression of organ transplantation.1 Organs from Expanded Criteria Donors (ECD) have the potential to greatly increase the donor organ pool. However, they also require careful selection and utilization. Deceased kidney donors often had a history of central nervous system fluid regulation disorders and inflammation mediator release, which led to hemodynamic instability, electrolyte and acid-base imbalances, and with a higher risk of primary graft non-function (PNF) or delayed graft function (DGF) post-transplantation.2,3 Searching for appropriate and effective biomarkers to assess renal quality and predict DGF is a hot topic in the field of kidney transplantation.

Uridine diphosphate-glucose (UDP-Glc) is a damage-associated molecular pattern molecule (DAMPs) released by damaged cells.4 UDP-Glc is synthesized in the cytoplasm, then transported into the lumen of the endoplasmic reticulum and Golgi apparatus, where it regulates the synthesis of carbohydrates and acts as a substrate to facilitate glycosylation reactions.5 And UDP-Glc is an endogenous excitant of the G protein-coupled P2Y14 receptor.6 Additionally, the human P2Y14 receptor is expressed at high levels in adipose tissue, stomach, intestines, specific regions of the brain, skeletal muscle, spleen, lungs, and heart.7 UDP-Glc released plays a significant role in extracellular signaling within these tissues.8 Activation of P2Y14 promotes neutrophil infiltration, the recruitment of monocytes and macrophages, and the activation of the immune response, ultimately leading to tissue damage.9 Research has discovered that intercalated cells (ICs) in the collecting duct of the kidney act as sensors for UDP-Glc, and when the P2Y14 receptor on their apical membrane is activated, ICs produce chemotactic cytokines that attract neutrophils to the kidney, causing kidney inflammation and the onset of acute kidney injury (AKI).10,11 Furthermore, studies have shown that the concentration of UDP-Glc in the urine of AKI patients is higher compared to patients without AKI.12 UDP-Glc hydrolyzes slowly in the extracellular environment, which results in UDP-Glc being highly stable and easily detectable.5,13 In conclusion, donor urinary UDP-Glc can be serve as an appropriate and effective biomarkers to assess renal quality and predict DGF.

The study aimed to investigated the correlation between donor urinary UDP-Glc levels and graft function post-transplant in recipients. We hypothesized that the higher the donor urinary UDP-Glc levels, the more severe the kidney damage, resulting in a higher probability of DGF. It will provide transplant surgeons with a novel strategy to predict DGF earlier and more accurately without invasive procedures, while also reducing medical costs.

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Key information

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • donors who met the criteria for kidney donation
  • recipients who met the criteria for kidney transplantation
  • informed consent form signed
  • organs from deceased donors
  • completed the family consent form for human organ donation.

Exclusion criteria

  • donors without urine samples
  • recipients with multiple organ transplantation
  • participation in other clinical trials
  • recipients died in perioperation period
  • recipients experienced kidney transplant nephrectomy in perioperation period
  • recipients did not have a follow-up visit at our center with 1 month after being first discharged
  • other features considered unsuitable by researchers.

Treatment and study plan

Primary outcomes

  1. Post-transplant renal function

    Time frame: Within 7 days of kidney transplantation

    Assessment of patients' renal function recovery by serum creatinine values after renal transplantation

Secondary outcomes

  1. Survival time of transplanted kidneys

    Time frame: Within 1 year after kidney transplantation

Sponsors and collaborators

Lead sponsor

Qianghua Leng

Other

Registry information

Important dates

Study start
2023
Primary completion
2024
Study completion
2024
First posted
Nov 27, 2024
Registry last updated
Dec 3, 2024

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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