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A novel model for studies of blood-mediated long-term responses to cellular transplants

AIMS: Interaction between blood and bio-surfaces is important in many medical fields. With the aim of studying blood-mediated reactions to cellular transplants, we developed a whole-blood model for incubation of small volumes for up to 48 h. METHODS: Heparinized polyvinyl chloride tubing was cut in...

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Autores principales: Hårdstedt, Maria, Lindblom, Susanne, Hong, Jaan, Nilsson, Bo, Korsgren, Olle, Ronquist, Gunnar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Informa Healthcare 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4389005/
https://www.ncbi.nlm.nih.gov/pubmed/25322825
http://dx.doi.org/10.3109/03009734.2014.965290
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author Hårdstedt, Maria
Lindblom, Susanne
Hong, Jaan
Nilsson, Bo
Korsgren, Olle
Ronquist, Gunnar
author_facet Hårdstedt, Maria
Lindblom, Susanne
Hong, Jaan
Nilsson, Bo
Korsgren, Olle
Ronquist, Gunnar
author_sort Hårdstedt, Maria
collection PubMed
description AIMS: Interaction between blood and bio-surfaces is important in many medical fields. With the aim of studying blood-mediated reactions to cellular transplants, we developed a whole-blood model for incubation of small volumes for up to 48 h. METHODS: Heparinized polyvinyl chloride tubing was cut in suitable lengths and sealed to create small bags. Multiple bags, with fresh venous blood, were incubated attached to a rotating wheel at 37°C. Physiological variables in blood were monitored: glucose, blood gases, mono- and divalent cations and chloride ions, osmolality, coagulation (platelet consumption, thrombin-antithrombin complexes (TAT)), and complement activation (C3a and SC5b-9), haemolysis, and leukocyte viability. RESULTS: Basic glucose consumption was high. Glucose depletion resulted in successive elevation of extracellular potassium, while sodium and calcium ions decreased due to inhibition of energy-requiring ion pumps. Addition of glucose improved ion balance but led to metabolic acidosis. To maintain a balanced physiological environment beyond 6 h, glucose and sodium hydrogen carbonate were added regularly based on analyses of glucose, pH, ions, and osmotic pressure. With these additives haemolysis was prevented for up to 72 h and leukocyte viability better preserved. Despite using non-heparinized blood, coagulation and complement activation were lower during long-term incubations compared with addition of thromboplastin and collagen. CONCLUSION: A novel whole-blood model for studies of blood-mediated responses to a cellular transplant is presented allowing extended observations for up to 48 h and highlights the importance of stringent evaluations and adjustment of physiological conditions.
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spelling pubmed-43890052015-04-10 A novel model for studies of blood-mediated long-term responses to cellular transplants Hårdstedt, Maria Lindblom, Susanne Hong, Jaan Nilsson, Bo Korsgren, Olle Ronquist, Gunnar Ups J Med Sci Original Article AIMS: Interaction between blood and bio-surfaces is important in many medical fields. With the aim of studying blood-mediated reactions to cellular transplants, we developed a whole-blood model for incubation of small volumes for up to 48 h. METHODS: Heparinized polyvinyl chloride tubing was cut in suitable lengths and sealed to create small bags. Multiple bags, with fresh venous blood, were incubated attached to a rotating wheel at 37°C. Physiological variables in blood were monitored: glucose, blood gases, mono- and divalent cations and chloride ions, osmolality, coagulation (platelet consumption, thrombin-antithrombin complexes (TAT)), and complement activation (C3a and SC5b-9), haemolysis, and leukocyte viability. RESULTS: Basic glucose consumption was high. Glucose depletion resulted in successive elevation of extracellular potassium, while sodium and calcium ions decreased due to inhibition of energy-requiring ion pumps. Addition of glucose improved ion balance but led to metabolic acidosis. To maintain a balanced physiological environment beyond 6 h, glucose and sodium hydrogen carbonate were added regularly based on analyses of glucose, pH, ions, and osmotic pressure. With these additives haemolysis was prevented for up to 72 h and leukocyte viability better preserved. Despite using non-heparinized blood, coagulation and complement activation were lower during long-term incubations compared with addition of thromboplastin and collagen. CONCLUSION: A novel whole-blood model for studies of blood-mediated responses to a cellular transplant is presented allowing extended observations for up to 48 h and highlights the importance of stringent evaluations and adjustment of physiological conditions. Informa Healthcare 2015-03 2015-03-06 /pmc/articles/PMC4389005/ /pubmed/25322825 http://dx.doi.org/10.3109/03009734.2014.965290 Text en © Informa Healthcare http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the CC-BY-NC-ND 3.0 License which permits users to download and share the article for non-commercial purposes, so long as the article is reproduced in the whole without changes, and provided the original source is credited.
spellingShingle Original Article
Hårdstedt, Maria
Lindblom, Susanne
Hong, Jaan
Nilsson, Bo
Korsgren, Olle
Ronquist, Gunnar
A novel model for studies of blood-mediated long-term responses to cellular transplants
title A novel model for studies of blood-mediated long-term responses to cellular transplants
title_full A novel model for studies of blood-mediated long-term responses to cellular transplants
title_fullStr A novel model for studies of blood-mediated long-term responses to cellular transplants
title_full_unstemmed A novel model for studies of blood-mediated long-term responses to cellular transplants
title_short A novel model for studies of blood-mediated long-term responses to cellular transplants
title_sort novel model for studies of blood-mediated long-term responses to cellular transplants
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4389005/
https://www.ncbi.nlm.nih.gov/pubmed/25322825
http://dx.doi.org/10.3109/03009734.2014.965290
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