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Updated: Jan 22, 2026

Mouse Kidney Transplantation: Models of Allograft Rejection
Published on: October 11, 2014
Donor-derived cell-free DNA detects kidney transplant rejection during nivolumab treatment
Daan P Hurkmans1, Jeroen G H P Verhoeven2,3, Kitty de Leur2,3
1Department of Medical Oncology, Erasmus MC Cancer Institute, University Medical Center Rotterdam, Rotterdam, The Netherlands. d.hurkmans@erasmusmc.nl.
Background:
In solid organ transplant (SOT) recipients, transplant rejection during immune checkpoint inhibitor (ICI) treatment for cancer is a clinical problem. Donor-derived cell-free DNA (dd-cfDNA) can be detected in blood and is a sensitive biomarker for diagnosis of acute rejection in SOT recipients. To our best knowledge, this is the first case report of a kidney transplant recipient with advanced cancer treated with ICI who was monitored with dd-cfDNA.
Case Presentation:
A 72-year old female with a long-standing renal transplant was diagnosed with advanced melanoma in 2018 and was treated with the anti-PD1 antibody nivolumab. Within 12 days after the first administration of nivolumab, dd-cfDNA ratio increased to 23%, suggesting allograft rejection. Her kidney transplant function deteriorated and acute rejection was confirmed by renal transplant biopsy. As the rejection could not be controlled despite immunosuppressive treatment, a transplant nephrectomy was necessary and haemodialysis was started. Immunological analysis of the renal explant showed infiltration of alloreactive, nivolumab-saturated, PD1+ cytotoxic T cells. After transplant nephrectomy, she experienced nivolumab-related toxicity and rapid disease progression.
Conclusion:
Clinicians prescribing ICIs should be aware that SOT recipients are at risk of transplant rejection as a result of T cell activation. Dd-cfDNA is a sensitive biomarker and should be further studied for early detection of transplant rejection. Immunological analysis of the kidney explant showed marked graft infiltration with alloreactive PD-1+ cytotoxic T cells that were saturated with nivolumab.
Insights
Donor-derived cell-free DNA (dd-cfDNA) monitoring can detect kidney transplant rejection in patients treated with immune checkpoint inhibitors (ICIs). This case report highlights dd-cfDNA as a sensitive biomarker for early rejection detection in solid organ transplant recipients.
Area of Science:
- Oncology
- Transplant Immunology
- Nephrology
Background:
- Solid organ transplant (SOT) recipients are at risk of transplant rejection when treated with immune checkpoint inhibitors (ICIs) for cancer.
- Donor-derived cell-free DNA (dd-cfDNA) is a sensitive biomarker for acute rejection in SOT recipients.
- This report details the first known case of monitoring a kidney transplant recipient with advanced cancer on ICI therapy using dd-cfDNA.
Observation:
- A 72-year-old female kidney transplant recipient with advanced melanoma was treated with nivolumab (anti-PD1 antibody).
- Within 12 days of nivolumab initiation, a significant increase in dd-cfDNA ratio to 23% indicated allograft rejection.
- Kidney transplant function declined, biopsy confirmed acute rejection, and despite immunosuppression, transplant nephrectomy was required.
Findings:
- Immunological analysis of the explanted kidney revealed infiltration of alloreactive, nivolumab-saturated, PD1+ cytotoxic T cells.
- The patient experienced nivolumab-related toxicity and rapid disease progression post-nephrectomy.
- dd-cfDNA served as an early indicator of acute rejection in this SOT recipient on ICI therapy.
Implications:
- Clinicians must recognize the heightened risk of SOT transplant rejection in patients receiving ICIs due to T cell activation.
- Further research into dd-cfDNA as a sensitive biomarker for early transplant rejection detection is warranted.
- Understanding the immunological mechanisms, such as PD-1+ cytotoxic T cell infiltration, is crucial for managing SOT recipients on ICI therapy.
Related Concept Videos
Kidney Transplant I: Introduction
Kidney Transplant II: Surgical Procedure
Kidney Transplant III: Nursing Management
Kidney Structure
Recombinant DNA
Quantifying and Rejecting Outliers: The Grubbs Test

