Engineering multifunctional bactericidal nanofibers for abdominal hernia repair

Afewerki et al. employ integrated electrospinning, plasma treatment and direct surface modification strategy to engineer multifunctional bactericidal nanofibers for use in hernia repair. In a mouse model, they demonstrate that these nanofibers display good biological performance with low inflammator...

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Autores principales: Samson Afewerki, Nicole Bassous, Samarah Vargas Harb, Marcus Alexandre F. Corat, Sushila Maharjan, Guillermo U. Ruiz-Esparza, Mirian M. M. de Paula, Thomas J. Webster, Carla Roberta Tim, Bartolomeu Cruz Viana, Danquan Wang, Xichi Wang, Fernanda Roberta Marciano, Anderson Oliveira Lobo
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/ac6d333d37c3471282cffd4b3426b93c
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spelling oai:doaj.org-article:ac6d333d37c3471282cffd4b3426b93c2021-12-02T14:21:58ZEngineering multifunctional bactericidal nanofibers for abdominal hernia repair10.1038/s42003-021-01758-22399-3642https://doaj.org/article/ac6d333d37c3471282cffd4b3426b93c2021-02-01T00:00:00Zhttps://doi.org/10.1038/s42003-021-01758-2https://doaj.org/toc/2399-3642Afewerki et al. employ integrated electrospinning, plasma treatment and direct surface modification strategy to engineer multifunctional bactericidal nanofibers for use in hernia repair. In a mouse model, they demonstrate that these nanofibers display good biological performance with low inflammatory response, good biodegradation and optimal collagen and blood vessel formation and tissue growth.Samson AfewerkiNicole BassousSamarah Vargas HarbMarcus Alexandre F. CoratSushila MaharjanGuillermo U. Ruiz-EsparzaMirian M. M. de PaulaThomas J. WebsterCarla Roberta TimBartolomeu Cruz VianaDanquan WangXichi WangFernanda Roberta MarcianoAnderson Oliveira LoboNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Samson Afewerki
Nicole Bassous
Samarah Vargas Harb
Marcus Alexandre F. Corat
Sushila Maharjan
Guillermo U. Ruiz-Esparza
Mirian M. M. de Paula
Thomas J. Webster
Carla Roberta Tim
Bartolomeu Cruz Viana
Danquan Wang
Xichi Wang
Fernanda Roberta Marciano
Anderson Oliveira Lobo
Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
description Afewerki et al. employ integrated electrospinning, plasma treatment and direct surface modification strategy to engineer multifunctional bactericidal nanofibers for use in hernia repair. In a mouse model, they demonstrate that these nanofibers display good biological performance with low inflammatory response, good biodegradation and optimal collagen and blood vessel formation and tissue growth.
format article
author Samson Afewerki
Nicole Bassous
Samarah Vargas Harb
Marcus Alexandre F. Corat
Sushila Maharjan
Guillermo U. Ruiz-Esparza
Mirian M. M. de Paula
Thomas J. Webster
Carla Roberta Tim
Bartolomeu Cruz Viana
Danquan Wang
Xichi Wang
Fernanda Roberta Marciano
Anderson Oliveira Lobo
author_facet Samson Afewerki
Nicole Bassous
Samarah Vargas Harb
Marcus Alexandre F. Corat
Sushila Maharjan
Guillermo U. Ruiz-Esparza
Mirian M. M. de Paula
Thomas J. Webster
Carla Roberta Tim
Bartolomeu Cruz Viana
Danquan Wang
Xichi Wang
Fernanda Roberta Marciano
Anderson Oliveira Lobo
author_sort Samson Afewerki
title Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
title_short Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
title_full Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
title_fullStr Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
title_full_unstemmed Engineering multifunctional bactericidal nanofibers for abdominal hernia repair
title_sort engineering multifunctional bactericidal nanofibers for abdominal hernia repair
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/ac6d333d37c3471282cffd4b3426b93c
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