Alterations in the Nucleocytoplasmic Transport in Heart Transplant Rejection

Silvia Lozano-Edo1, Ignacio Sánchez-Lázaro2, Luis Almenar-Bonet2

  • 1Heart Failure and Transplantation Unit, Cardiology Department, University and Polytechnic La Fe Hospital, Valencia, Spain; Myocardial Dysfunction and Cardiac Transplantation Unit, Health Research Institute Hospital La Fe (IIS La Fe), Valencia, Spain.

Insights

Higher levels of importin 5 (IMP5), nucleoporin 153 (Nup153), and RAN-GTPaseAP1 (RanGAP1) were found in heart transplant recipients experiencing cellular rejection. These findings may aid in early, noninvasive detection of rejection post-transplant.

Area of Science:

  • Cardiology
  • Immunology
  • Cell Biology

Background:

  • Nucleocytoplasmic transport is vital for cellular function.
  • Alterations in nucleocytoplasmic transport molecules are linked to ventricular function.
  • No prior studies have assessed these molecules in heart transplant recipients concerning cellular rejection.

Purpose of the Study:

  • To investigate the relationship between nucleocytoplasmic transport molecules and cellular rejection (CR) in the first year post-heart transplantation (HT).
  • To evaluate serum levels of importin 5 (IMP5), nucleoporin 153 (Nup153), RAN-GTPaseAP1 (RanGAP1), and ATP-aseCaTransp in HT recipients.
  • To correlate these levels with the incidence of moderate to severe CR.

Main Methods:

  • Prospective cohort study of 46 HT patients (2017-2019).
  • Blood samples collected ~2 months post-HT for molecular analysis.
  • Correlation analysis between molecular levels and CR incidence within the first year.

Main Results:

  • 17.39% of patients experienced moderate to severe CR.
  • Elevated IMP5, Nup153, and RanGAP1 levels were observed in patients with CR.
  • Nup153 and RanGAP1 showed statistically significant increases (P=.048 and P=.026, respectively).
  • ATP-aseCaTransp showed an inverse trend.

Conclusions:

  • Heart transplant recipients with moderate to severe CR exhibit higher serum levels of IMP5, Nup153, and RanGAP1.
  • Further research is needed to clarify the prognostic value of these biomarkers for early, noninvasive CR detection.
Abstract

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