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Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model

To construct an auto-tissue-engineered lamellar cornea (ATELC) for transplantation, based on acellular porcine corneal stroma and autologous corneal limbal explants, a dynamic culture process, which composed of a submersion culture, a perfusion culture and a dynamic air-liquid interface culture, was...

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Detalles Bibliográficos
Autores principales: Wu, Zheng, Zhou, Qiang, Duan, Haoyun, Wang, Xiaoran, Xiao, Jianhui, Duan, Hucheng, Li, Naiyang, Li, Chaoyang, Wan, Pengxia, Liu, Ying, Song, Yiyue, Zhou, Chenjing, Huang, Zheqian, Wang, Zhichong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3976280/
https://www.ncbi.nlm.nih.gov/pubmed/24705327
http://dx.doi.org/10.1371/journal.pone.0093012
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author Wu, Zheng
Zhou, Qiang
Duan, Haoyun
Wang, Xiaoran
Xiao, Jianhui
Duan, Hucheng
Li, Naiyang
Li, Chaoyang
Wan, Pengxia
Liu, Ying
Song, Yiyue
Zhou, Chenjing
Huang, Zheqian
Wang, Zhichong
author_facet Wu, Zheng
Zhou, Qiang
Duan, Haoyun
Wang, Xiaoran
Xiao, Jianhui
Duan, Hucheng
Li, Naiyang
Li, Chaoyang
Wan, Pengxia
Liu, Ying
Song, Yiyue
Zhou, Chenjing
Huang, Zheqian
Wang, Zhichong
author_sort Wu, Zheng
collection PubMed
description To construct an auto-tissue-engineered lamellar cornea (ATELC) for transplantation, based on acellular porcine corneal stroma and autologous corneal limbal explants, a dynamic culture process, which composed of a submersion culture, a perfusion culture and a dynamic air-liquid interface culture, was performed using appropriate parameters. The results showed that the ATELC-Dynamic possessed histological structure and DNA content that were similar to native lamellar cornea (NLC, p>0.05). Compared to NLC, the protein contents of zonula occludens-1, desmocollin-2 and integrin β4 in ATELC-Dynamic reached 93%, 89% and 73%, respectively. The basal cells of ATELC-Dynamic showed a better differentiation phenotype (K3(−), P63(+), ABCG2(+)) compared with that of ATELC in static air-lift culture (ATELC-Static, K3(+), P63(−), ABCG2(−)). Accordingly, the cell-cloning efficiency of ATELC-Dynamic (9.72±3.5%) was significantly higher than that of ATELC-Static (2.13±1.46%, p<0.05). The levels of trans-epithelial electrical resistance, light transmittance and areal modulus variation in ATELC-Dynamic all reached those of NLC (p>0.05). Rabbit lamellar keratoplasty showed that the barrier function of ATELC-Dynamic was intact, and there were no signs of epithelial shedding or neovascularization. Furthermore, the ATELC-Dynamic group had similar optical properties and wound healing processes compared with the NLC group. Thus, the sequential dynamic culture process that was designed according to corneal physiological characteristics could successfully reconstruct an auto-lamellar cornea with favorable morphological characteristics and satisfactory physiological function.
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spelling pubmed-39762802014-04-08 Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model Wu, Zheng Zhou, Qiang Duan, Haoyun Wang, Xiaoran Xiao, Jianhui Duan, Hucheng Li, Naiyang Li, Chaoyang Wan, Pengxia Liu, Ying Song, Yiyue Zhou, Chenjing Huang, Zheqian Wang, Zhichong PLoS One Research Article To construct an auto-tissue-engineered lamellar cornea (ATELC) for transplantation, based on acellular porcine corneal stroma and autologous corneal limbal explants, a dynamic culture process, which composed of a submersion culture, a perfusion culture and a dynamic air-liquid interface culture, was performed using appropriate parameters. The results showed that the ATELC-Dynamic possessed histological structure and DNA content that were similar to native lamellar cornea (NLC, p>0.05). Compared to NLC, the protein contents of zonula occludens-1, desmocollin-2 and integrin β4 in ATELC-Dynamic reached 93%, 89% and 73%, respectively. The basal cells of ATELC-Dynamic showed a better differentiation phenotype (K3(−), P63(+), ABCG2(+)) compared with that of ATELC in static air-lift culture (ATELC-Static, K3(+), P63(−), ABCG2(−)). Accordingly, the cell-cloning efficiency of ATELC-Dynamic (9.72±3.5%) was significantly higher than that of ATELC-Static (2.13±1.46%, p<0.05). The levels of trans-epithelial electrical resistance, light transmittance and areal modulus variation in ATELC-Dynamic all reached those of NLC (p>0.05). Rabbit lamellar keratoplasty showed that the barrier function of ATELC-Dynamic was intact, and there were no signs of epithelial shedding or neovascularization. Furthermore, the ATELC-Dynamic group had similar optical properties and wound healing processes compared with the NLC group. Thus, the sequential dynamic culture process that was designed according to corneal physiological characteristics could successfully reconstruct an auto-lamellar cornea with favorable morphological characteristics and satisfactory physiological function. Public Library of Science 2014-04-04 /pmc/articles/PMC3976280/ /pubmed/24705327 http://dx.doi.org/10.1371/journal.pone.0093012 Text en © 2014 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Zheng
Zhou, Qiang
Duan, Haoyun
Wang, Xiaoran
Xiao, Jianhui
Duan, Hucheng
Li, Naiyang
Li, Chaoyang
Wan, Pengxia
Liu, Ying
Song, Yiyue
Zhou, Chenjing
Huang, Zheqian
Wang, Zhichong
Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title_full Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title_fullStr Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title_full_unstemmed Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title_short Reconstruction of Auto-Tissue-Engineered Lamellar Cornea by Dynamic Culture for Transplantation: A Rabbit Model
title_sort reconstruction of auto-tissue-engineered lamellar cornea by dynamic culture for transplantation: a rabbit model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3976280/
https://www.ncbi.nlm.nih.gov/pubmed/24705327
http://dx.doi.org/10.1371/journal.pone.0093012
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