Sensing Acute Cellular Rejection in Liver Transplant Patients Using Liver-Derived Extracellular Particles: A

Kaan Kamali1, Moritz Schmelzle1, Can Kamali1

  • 1Department of Surgery, Charité - Universitätsmedizin, Freie Universität Berlin, Humboldt-Universität zu Berlin, Berlin Institute of Health, Berlin, Germany.

Insights

Non-invasive diagnosis of acute cellular rejection (ACR) after liver transplantation (LT) is possible using liver-derived extracellular particles (EP) found in blood plasma. A specific EP subpopulation shows high accuracy in predicting ACR, offering a promising alternative to liver biopsies.

Area of Science:

  • Transplantation immunology
  • Biomarker discovery
  • Extracellular vesicle research

Background:

  • Acute cellular rejection (ACR) following liver transplantation (LT) necessitates invasive liver biopsies for diagnosis.
  • Current diagnostic methods for ACR are invasive, costly, time-consuming, and require specialized expertise.
  • There is a critical need for non-invasive biomarkers to monitor ACR post-LT.

Purpose of the Study:

  • To investigate the potential of peripheral liver-derived extracellular particles (EP) as a non-invasive biomarker for diagnosing ACR after LT.
  • To identify specific EP subpopulations in blood plasma that correlate with ACR.
  • To evaluate the diagnostic accuracy of these EP subpopulations for ACR detection.

Main Methods:

  • In vitro studies using primary human hepatocytes under immunological stress to assess EP release.
  • Analysis of EP concentrations in plasma from LT patients (n=11) before and during ACR.
  • A diagnostic accuracy study (n=69) employing viSNE and FlowSOM algorithms to identify and characterize EP subpopulations.
  • Quantification of a specific EP subpopulation (ASGR1+CD130+Annexin V+) for ACR prediction.

Main Results:

  • In vitro experiments demonstrated organ-specific EP release from hepatocytes under stress.
  • Elevated EP concentrations were observed in LT patients days preceding ACR.
  • A specific EP subpopulation, ASGR1+CD130+Annexin V+, showed high diagnostic accuracy for ACR.
  • This subpopulation achieved an area under the curve of 0.80, with 100% sensitivity and 68.5% specificity for predicting ACR.

Conclusions:

  • Liver-derived extracellular particles (EP) in blood plasma represent a viable non-invasive biomarker for ACR diagnosis post-LT.
  • The identified ASGR1+CD130+Annexin V+ EP subpopulation demonstrates significant potential for accurate ACR detection.
  • This finding offers a promising alternative to invasive liver biopsies, potentially improving patient management and outcomes after liver transplantation.

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