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A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect

OBJECTIVES: Air leakage after lung resection is a common morbidity that may lengthen hospital stay. Applying sealant to a lesion is an effective prophylaxis in clinical practice. This study aimed to examine the effect of a combination of a bioabsorbable polyglycolic acid (PGA) fabric and fibrin glue...

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Autores principales: Suzuki, Akiyo, Konishi, Hayato, Suzuki, Tatsuya, Katsumata, Takahiro, Hanaoka, Nobuharu, Nakamura, Koichiro, Matsubara, Chisa, Fujii, Shota, Nemoto, Shintaro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9514797/
https://www.ncbi.nlm.nih.gov/pubmed/35894665
http://dx.doi.org/10.1093/icvts/ivac196
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author Suzuki, Akiyo
Konishi, Hayato
Suzuki, Tatsuya
Katsumata, Takahiro
Hanaoka, Nobuharu
Nakamura, Koichiro
Matsubara, Chisa
Fujii, Shota
Nemoto, Shintaro
author_facet Suzuki, Akiyo
Konishi, Hayato
Suzuki, Tatsuya
Katsumata, Takahiro
Hanaoka, Nobuharu
Nakamura, Koichiro
Matsubara, Chisa
Fujii, Shota
Nemoto, Shintaro
author_sort Suzuki, Akiyo
collection PubMed
description OBJECTIVES: Air leakage after lung resection is a common morbidity that may lengthen hospital stay. Applying sealant to a lesion is an effective prophylaxis in clinical practice. This study aimed to examine the effect of a combination of a bioabsorbable polyglycolic acid (PGA) fabric and fibrin glue (FG) on air sealing by measuring the in vitro mechanical strength and degradation of the fabric, and in vivo histological changes after implantation. METHODS: A defect was created in the canine left upper lung lobe, and then filled with a fibrinogen solution and covered with a PGA sheet spray-coated with fibrinogen and thrombin. After 1 and 4 weeks, air leakage from the lesion was examined in vivo under airway pressure. Tissue samples were harvested for histological assessment. RESULTS: The mechanical strength of the PGA fabric remained at 80–90% of the baseline level for 1 week in phosphate-buffered saline, and then rapidly decreased to zero thereafter. Air leakage from the lung defect was prevented by the combination of PGA fabric and FG at 1 and 4 weeks. Histological examinations showed that PGA bundles persisted with a non-specific inflammatory response for 2 weeks and then gradually broke into sparse yarns surrounded by collagen fibres and capillaries by 8 weeks. The lung defect was filled with FG at 1 week and by granulation tissue thereafter. CONCLUSIONS: These results provide evidence for the efficacy of a combination of PGA fabric and FG for the prevention of air leakage in the critical period after lung surgery.
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spelling pubmed-95147972022-09-28 A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect Suzuki, Akiyo Konishi, Hayato Suzuki, Tatsuya Katsumata, Takahiro Hanaoka, Nobuharu Nakamura, Koichiro Matsubara, Chisa Fujii, Shota Nemoto, Shintaro Interact Cardiovasc Thorac Surg Experimental OBJECTIVES: Air leakage after lung resection is a common morbidity that may lengthen hospital stay. Applying sealant to a lesion is an effective prophylaxis in clinical practice. This study aimed to examine the effect of a combination of a bioabsorbable polyglycolic acid (PGA) fabric and fibrin glue (FG) on air sealing by measuring the in vitro mechanical strength and degradation of the fabric, and in vivo histological changes after implantation. METHODS: A defect was created in the canine left upper lung lobe, and then filled with a fibrinogen solution and covered with a PGA sheet spray-coated with fibrinogen and thrombin. After 1 and 4 weeks, air leakage from the lesion was examined in vivo under airway pressure. Tissue samples were harvested for histological assessment. RESULTS: The mechanical strength of the PGA fabric remained at 80–90% of the baseline level for 1 week in phosphate-buffered saline, and then rapidly decreased to zero thereafter. Air leakage from the lung defect was prevented by the combination of PGA fabric and FG at 1 and 4 weeks. Histological examinations showed that PGA bundles persisted with a non-specific inflammatory response for 2 weeks and then gradually broke into sparse yarns surrounded by collagen fibres and capillaries by 8 weeks. The lung defect was filled with FG at 1 week and by granulation tissue thereafter. CONCLUSIONS: These results provide evidence for the efficacy of a combination of PGA fabric and FG for the prevention of air leakage in the critical period after lung surgery. Oxford University Press 2022-07-27 /pmc/articles/PMC9514797/ /pubmed/35894665 http://dx.doi.org/10.1093/icvts/ivac196 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the European Association for Cardio-Thoracic Surgery. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Experimental
Suzuki, Akiyo
Konishi, Hayato
Suzuki, Tatsuya
Katsumata, Takahiro
Hanaoka, Nobuharu
Nakamura, Koichiro
Matsubara, Chisa
Fujii, Shota
Nemoto, Shintaro
A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title_full A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title_fullStr A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title_full_unstemmed A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title_short A combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
title_sort combination of polyglycolic acid fabric and fibrin glue prevents air leakage from a lung defect
topic Experimental
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9514797/
https://www.ncbi.nlm.nih.gov/pubmed/35894665
http://dx.doi.org/10.1093/icvts/ivac196
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