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Updated: Oct 16, 2025

Murine Heterotopic Heart Transplant Technique
Published on: July 8, 2014
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.
Background:
Nucleocytoplasmic transport is a crucial process for cell function. Previous studies have observed alterations in different molecules involved in it, relating them to ventricular function. However, there are no published data evaluating possible differences in the expression of these molecules in heart transplantation (HT) recipients. Our objective is to evaluate whether its levels are related to the appearance of cellular rejection (CR) during the first year after HT.
Methods:
A prospective clinical cohort that included patients undergoing HT between January 2017 and January 2019 (n = 46). Blood samples for the analysis of importin 5 (IMP5), nucleoporin 153 (Nup153); RAN-GTPaseAP1 (RanGAP1), and sarcoplasmic reticulum calcium ATPase (ATP-aseCaTransp) were collected approximately 2 months post-HT. The levels obtained were correlated with the incidence of at least moderate CR during the first year of follow-up.
Results:
Results showed that 17.39% of the patients had at least moderate CR during the first year of follow-up. Higher levels of IMP5, Nup153, and RanGAP1 were observed in this group. This difference was statistically significant in the case of Nup153 and RanGAP1 (15.94 ± 14.00 vs 28.62 ± 23.61, P = .048; 21.95 ± 15.97 vs 40.90 ± 27.16, P = .026, respectively); there was an opposite trend in the ATP-aseCaTransp case.
Conclusion:
Patients with at least a moderate degree of CR during follow-up showed higher serum levels of IMP5, Nup153, and RanGAP1. The prognostic usefulness of the determination of these biomarkers and whether their elevation during follow-up would facilitate early, noninvasive identification of patients with CR remains to be clarified.
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