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Updated: May 15, 2025

Author Spotlight: Enhancing Graft Viability Assessment Through Quantitative Metrics and Innovative Reservoir Systems
Published on: August 2, 2024
Late Allograft Loss and Contemporary Cardiorenal Metabolic Therapies
Amanda J Vinson1,2, Arthur Matas3
1Division of Nephrology, Department of Medicine, Dalhousie University, Halifax, Nova Scotia, Canada.
Insights
Late kidney transplant loss stems from graft dysfunction or patient death. Novel cardiometabolic agents may improve outcomes by reducing cardiovascular events and inflammation.
Area of Science:
- Nephrology
- Cardiology
- Pharmacology
Background:
- Late kidney allograft loss results from either graft dysfunction (death-censored graft loss) or premature death (death with graft function).
- Death-censored graft loss involves immune/nonimmune events causing fibrosis and glomerulosclerosis.
- Death with graft function is often due to cardiovascular events, malignancy, and infection.
Purpose of the Study:
- To review major causes of late kidney allograft loss.
- To discuss the potential of novel cardiometabolic agents in kidney transplant recipients.
- To explore how these agents may mitigate both death-censored graft loss and death with graft function.
Main Methods:
- Literature review of major causes of late graft loss.
- Discussion of novel cardiometabolic agents and their mechanisms.
- Analysis of potential benefits in the kidney transplant population.
Main Results:
- Late graft loss has two primary pathways: graft dysfunction and premature death.
- Cardiovascular events, malignancy, and infection are leading causes of death with graft function.
- Immune and nonimmune factors contribute to death-censored graft loss.
Conclusions:
- Novel cardiometabolic agents may offer dual benefits for kidney transplant recipients.
- These agents could reduce cardiovascular, infectious, and malignancy risks (improving death with graft function).
- Potential anti-inflammatory and antifibrotic effects may also improve death-censored graft loss outcomes.
Abstract:
Late kidney allograft loss occurs through one of two mechanisms: ( 1 ) deterioration of kidney function leading to retransplantation or dialysis (death-censored graft loss) and ( 2 ) premature death with a normally functioning transplant (death with graft function)-each accounting for approximately 50% of late kidney graft losses. Late death-censored graft loss typically results from a combination of immune and nonimmune events leading to common nonspecific end points ( e.g ., tubular atrophy, interstitial fibrosis, and glomerulosclerosis). Conversely, leading causes of death with graft function typically include cardiovascular events, malignancy, and infection. With an improved understanding of the multiple mechanism by which late graft dysfunction develops, there is an opportunity to identify patients at greatest risk and institute novel strategies to quell the process. Newer cardiometabolic agents with proven benefit in the general population have not been well-studied in kidney transplant recipients. However, in addition to their potential benefits in reducing cardiovascular, infectious, and malignancy end points (thus minimizing death with graft function risk), many novel agents may have additional anti-inflammatory and/or antifibrotic benefit (minimizing death-censored graft loss risk) in the kidney transplant population. In this review, we summarize existing literature regarding major causes of death-censored graft loss and death with graft function and discuss the potential roles of new cardiorenal metabolic agents including sodium-glucose cotransport 2 inhibitors, nonsteroidal mineralocorticoid receptor antagonists, glucagon-like peptide 1 receptor agonists, and dual endothelin and angiotensin receptor antagonists in the kidney transplant population, including potential mechanisms to improve death with graft function and death-censored graft loss outcomes.

