Use of metabolomics to identify strategies to improve and prolong ex vivo lung perfusion for lung transplants

J Heart Lung Transplant. 2021 Jun;40(6):525-535. doi: 10.1016/j.healun.2021.02.002. Epub 2021 Feb 17.

Abstract

Background: Normothermic ex vivo lung perfusion (EVLP) allows for functional assessment of donor lungs; thus has increased the use of marginal lungs for transplantation. To extend EVLP for advanced organ reconditioning and regenerative interventions, cellular metabolic changes need to be understood. We sought to comprehensively characterize the dynamic metabolic changes of the lungs during EVLP, and to identify strategies to improve EVLP.

Methods: Human donor lungs (n = 50) were assessed under a 4-hour Toronto EVLP protocol. EVLP perfusate was sampled at first (EVLP-1h) and fourth hour (EVLP-4h) of perfusion and were submitted for mass spectrometry-based untargeted metabolic profiling. Differentially expressed metabolites between the 2 timepoints were identified and analyzed from the samples of lungs transplanted post-EVLP (n = 42) to determine the underlying molecular mechanisms.

Results: Of the total 312 detected metabolites, 84 were up-regulated and 103 were down-regulated at EVLP-4h relative to 1h (FDR adjusted p < .05, fold change ≥ |1.1|). At EVLP-4h, markedly decreased energy substrates were observed, accompanied by the increase in fatty acid β-oxidation. Concurrently, accumulation of amino acids and nucleic acids was evident, indicative of increased protein and nucleotide catabolism. The uniform decrease in free lysophospholipids and polyunsaturated fatty acids at EVLP-4h suggests cell membrane remodeling.

Conclusions: Untargeted metabolomics revealed signs of energy substrate consumption and metabolic by-product accumulation under current EVLP protocols. Strategies to supplement nutrients and to maintain homeostasis will be vital in improving the current clinical practice and prolonging organ perfusion for therapeutic application to further enhance donor lung utilization.

Keywords: Lung transplantation; bioinformatics; ex vivo lung perfusion; homeostasis; metabolism.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adolescent
  • Adult
  • Aged
  • Extracorporeal Circulation / methods*
  • Female
  • Follow-Up Studies
  • Humans
  • Lung / physiopathology*
  • Lung Transplantation*
  • Male
  • Metabolomics / methods*
  • Middle Aged
  • Organ Preservation / methods*
  • Perfusion / methods*
  • Time Factors
  • Tissue Donors*
  • Young Adult