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Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model

Marginal kidney graft preservation in machine perfusion (MP) is well-established. However, this method requires improvement in order to mitigate oxidative stress during ischemia-reperfusion, by using oxygenation or an O(2) carrier with anti-oxidant capacities (hemoglobin of the marine worm; M101). I...

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Autores principales: Kasil, Abdelsalam, Giraud, Sebastien, Couturier, Pierre, Amiri, Akbar, Danion, Jerome, Donatini, Gianluca, Matillon, Xavier, Hauet, Thierry, Badet, Lionel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6514898/
https://www.ncbi.nlm.nih.gov/pubmed/31018558
http://dx.doi.org/10.3390/ijms20081992
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author Kasil, Abdelsalam
Giraud, Sebastien
Couturier, Pierre
Amiri, Akbar
Danion, Jerome
Donatini, Gianluca
Matillon, Xavier
Hauet, Thierry
Badet, Lionel
author_facet Kasil, Abdelsalam
Giraud, Sebastien
Couturier, Pierre
Amiri, Akbar
Danion, Jerome
Donatini, Gianluca
Matillon, Xavier
Hauet, Thierry
Badet, Lionel
author_sort Kasil, Abdelsalam
collection PubMed
description Marginal kidney graft preservation in machine perfusion (MP) is well-established. However, this method requires improvement in order to mitigate oxidative stress during ischemia-reperfusion, by using oxygenation or an O(2) carrier with anti-oxidant capacities (hemoglobin of the marine worm; M101). In our preclinical porcine (pig related) model, kidneys were submitted to 1h-warm ischemia, followed by 23 h hypothermic preservation in Waves(®) MP before auto-transplantation. Four groups were studied: W (MP without 100%-O2), W-O(2) (MP with 100%-O2; also called hyperoxia), W-M101 (MP without 100%-O2 + M101 2 g/L), W-O(2) + M101 (MP with 100%-O2 + M101 2 g/L) (n = 6/group). Results: Kidneys preserved in the W-M101 group showed lower resistance, compared to our W group. During the first week post-transplantation, W-O(2) and W-M101 groups showed a lower blood creatinine and better glomerular filtration rate. KIM-1 and IL-18 blood levels were lower in the W-M101 group, while blood levels of AST and NGAL were lower in groups with 100% O2. Three months after transplantation, fractional excretion of sodium and the proteinuria/creatinuria ratio remained higher in the W group, creatininemia was lower in the W-M101 group, and kidney fibrosis was lower in M101 groups. We concluded that supplementation with M101 associated with or without 100% O2 improved the Waves(®) MP effect upon kidney recovery and late graft outcome.
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spelling pubmed-65148982019-05-30 Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model Kasil, Abdelsalam Giraud, Sebastien Couturier, Pierre Amiri, Akbar Danion, Jerome Donatini, Gianluca Matillon, Xavier Hauet, Thierry Badet, Lionel Int J Mol Sci Article Marginal kidney graft preservation in machine perfusion (MP) is well-established. However, this method requires improvement in order to mitigate oxidative stress during ischemia-reperfusion, by using oxygenation or an O(2) carrier with anti-oxidant capacities (hemoglobin of the marine worm; M101). In our preclinical porcine (pig related) model, kidneys were submitted to 1h-warm ischemia, followed by 23 h hypothermic preservation in Waves(®) MP before auto-transplantation. Four groups were studied: W (MP without 100%-O2), W-O(2) (MP with 100%-O2; also called hyperoxia), W-M101 (MP without 100%-O2 + M101 2 g/L), W-O(2) + M101 (MP with 100%-O2 + M101 2 g/L) (n = 6/group). Results: Kidneys preserved in the W-M101 group showed lower resistance, compared to our W group. During the first week post-transplantation, W-O(2) and W-M101 groups showed a lower blood creatinine and better glomerular filtration rate. KIM-1 and IL-18 blood levels were lower in the W-M101 group, while blood levels of AST and NGAL were lower in groups with 100% O2. Three months after transplantation, fractional excretion of sodium and the proteinuria/creatinuria ratio remained higher in the W group, creatininemia was lower in the W-M101 group, and kidney fibrosis was lower in M101 groups. We concluded that supplementation with M101 associated with or without 100% O2 improved the Waves(®) MP effect upon kidney recovery and late graft outcome. MDPI 2019-04-23 /pmc/articles/PMC6514898/ /pubmed/31018558 http://dx.doi.org/10.3390/ijms20081992 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kasil, Abdelsalam
Giraud, Sebastien
Couturier, Pierre
Amiri, Akbar
Danion, Jerome
Donatini, Gianluca
Matillon, Xavier
Hauet, Thierry
Badet, Lionel
Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title_full Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title_fullStr Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title_full_unstemmed Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title_short Individual and Combined Impact of Oxygen and Oxygen Transporter Supplementation during Kidney Machine Preservation in a Porcine Preclinical Kidney Transplantation Model
title_sort individual and combined impact of oxygen and oxygen transporter supplementation during kidney machine preservation in a porcine preclinical kidney transplantation model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6514898/
https://www.ncbi.nlm.nih.gov/pubmed/31018558
http://dx.doi.org/10.3390/ijms20081992
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