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Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells

The self-healing capacity of an injured meniscus is limited to the vascularized regions and is especially challenging in the inner avascular regions. As such, we investigated the use of human meniscus cell-seeded electrospun (ES) collagen type I scaffolds to produce meniscal tissue and explored whet...

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Autores principales: Baek, Jihye, Sovani, Sujata, Glembotski, Nicholas E., Du, Jiang, Jin, Sungho, Grogan, Shawn P., D'Lima, Darryl D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4800276/
https://www.ncbi.nlm.nih.gov/pubmed/26842062
http://dx.doi.org/10.1089/ten.tea.2015.0284
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author Baek, Jihye
Sovani, Sujata
Glembotski, Nicholas E.
Du, Jiang
Jin, Sungho
Grogan, Shawn P.
D'Lima, Darryl D.
author_facet Baek, Jihye
Sovani, Sujata
Glembotski, Nicholas E.
Du, Jiang
Jin, Sungho
Grogan, Shawn P.
D'Lima, Darryl D.
author_sort Baek, Jihye
collection PubMed
description The self-healing capacity of an injured meniscus is limited to the vascularized regions and is especially challenging in the inner avascular regions. As such, we investigated the use of human meniscus cell-seeded electrospun (ES) collagen type I scaffolds to produce meniscal tissue and explored whether these cell-seeded scaffolds can be implanted to repair defects created in meniscal avascular tissue explants. Human meniscal cells (derived from vascular and avascular meniscal tissue) were seeded on ES scaffolds and cultured. Constructs were evaluated for cell viability, gene expression, and mechanical properties. To determine potential for repair of meniscal defects, human meniscus avascular cells were seeded and cultured on aligned ES collagen scaffolds for 4 weeks before implantation. Surgical defects resembling “longitudinal tears” were created in the avascular zone of bovine meniscus and implanted with cell-seeded collagen scaffolds and cultured for 3 weeks. Tissue regeneration and integration were evaluated by histology, immunohistochemistry, mechanical testing, and magentic resonance imaging. Ex vivo implantation with cell-seeded collagen scaffolds resulted in neotissue that was significantly better integrated with the native tissue than acellular collagen scaffolds or untreated defects. Human meniscal cell-seeded ES collagen scaffolds may therefore be useful in facilitating meniscal repair of avascular meniscus tears.
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spelling pubmed-48002762017-03-01 Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells Baek, Jihye Sovani, Sujata Glembotski, Nicholas E. Du, Jiang Jin, Sungho Grogan, Shawn P. D'Lima, Darryl D. Tissue Eng Part A Original Articles The self-healing capacity of an injured meniscus is limited to the vascularized regions and is especially challenging in the inner avascular regions. As such, we investigated the use of human meniscus cell-seeded electrospun (ES) collagen type I scaffolds to produce meniscal tissue and explored whether these cell-seeded scaffolds can be implanted to repair defects created in meniscal avascular tissue explants. Human meniscal cells (derived from vascular and avascular meniscal tissue) were seeded on ES scaffolds and cultured. Constructs were evaluated for cell viability, gene expression, and mechanical properties. To determine potential for repair of meniscal defects, human meniscus avascular cells were seeded and cultured on aligned ES collagen scaffolds for 4 weeks before implantation. Surgical defects resembling “longitudinal tears” were created in the avascular zone of bovine meniscus and implanted with cell-seeded collagen scaffolds and cultured for 3 weeks. Tissue regeneration and integration were evaluated by histology, immunohistochemistry, mechanical testing, and magentic resonance imaging. Ex vivo implantation with cell-seeded collagen scaffolds resulted in neotissue that was significantly better integrated with the native tissue than acellular collagen scaffolds or untreated defects. Human meniscal cell-seeded ES collagen scaffolds may therefore be useful in facilitating meniscal repair of avascular meniscus tears. Mary Ann Liebert, Inc. 2016-03-01 2016-03-02 /pmc/articles/PMC4800276/ /pubmed/26842062 http://dx.doi.org/10.1089/ten.tea.2015.0284 Text en © Jihye Baek et al. 2016; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Articles
Baek, Jihye
Sovani, Sujata
Glembotski, Nicholas E.
Du, Jiang
Jin, Sungho
Grogan, Shawn P.
D'Lima, Darryl D.
Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title_full Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title_fullStr Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title_full_unstemmed Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title_short Repair of Avascular Meniscus Tears with Electrospun Collagen Scaffolds Seeded with Human Cells
title_sort repair of avascular meniscus tears with electrospun collagen scaffolds seeded with human cells
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4800276/
https://www.ncbi.nlm.nih.gov/pubmed/26842062
http://dx.doi.org/10.1089/ten.tea.2015.0284
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