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A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration

Corneal transplantation is a prevailing treatment to repair injured cornea and restore vision but faces the limitation of donor tissue shortage clinically. In addition, suturing-needed transplantation potentially causes postoperative complications. Herein, we design a PEG-Lysozyme injective hydrogel...

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Autores principales: Zhou, Hang, Zhang, Shaohua, Lei, Miao, Cai, Yixin, Wang, Honglei, Sun, Jianguo, Cui, Jingyuan, Liu, Changsheng, Qu, Xue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338238/
https://www.ncbi.nlm.nih.gov/pubmed/37456580
http://dx.doi.org/10.1016/j.bioactmat.2023.05.008
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author Zhou, Hang
Zhang, Shaohua
Lei, Miao
Cai, Yixin
Wang, Honglei
Sun, Jianguo
Cui, Jingyuan
Liu, Changsheng
Qu, Xue
author_facet Zhou, Hang
Zhang, Shaohua
Lei, Miao
Cai, Yixin
Wang, Honglei
Sun, Jianguo
Cui, Jingyuan
Liu, Changsheng
Qu, Xue
author_sort Zhou, Hang
collection PubMed
description Corneal transplantation is a prevailing treatment to repair injured cornea and restore vision but faces the limitation of donor tissue shortage clinically. In addition, suturing-needed transplantation potentially causes postoperative complications. Herein, we design a PEG-Lysozyme injective hydrogel as a suture-free, shape self-adaptive, bioactive implant for corneal stroma defect repair. This implant experiences a sol-gel phase transition via an in situ amidation reaction between 4-arm-PEG-NHS and lysozyme. The physicochemical properties of PEG-Lysozyme can be tuned by the components ratio, which confers the implant mimetic corneal modulus and provides tissue adhesion to endure increased intraocular pressure. In vitro tests prove that the implant is beneficial to Human corneal epithelial cells growth and migration due to the bioactivity of lysozyme. Rabbit lamellar keratoplasty experiment demonstrates that the hydrogel can be filled into defect to form a shape-adaptive implant adhered to native stroma. The implant promotes epithelialization and stroma integrity, recovering the topology of injured cornea to normal. A newly established animal forging behavior test prove a rapid visual restoration of rabbits when use implant in a suture free manner. In general, this work provides a promising preclinical practice by applicating a self-curing, shape self-adaptive and bioactive PEG-Lysozyme implant for suture-free stroma repair.
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spelling pubmed-103382382023-07-14 A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration Zhou, Hang Zhang, Shaohua Lei, Miao Cai, Yixin Wang, Honglei Sun, Jianguo Cui, Jingyuan Liu, Changsheng Qu, Xue Bioact Mater Article Corneal transplantation is a prevailing treatment to repair injured cornea and restore vision but faces the limitation of donor tissue shortage clinically. In addition, suturing-needed transplantation potentially causes postoperative complications. Herein, we design a PEG-Lysozyme injective hydrogel as a suture-free, shape self-adaptive, bioactive implant for corneal stroma defect repair. This implant experiences a sol-gel phase transition via an in situ amidation reaction between 4-arm-PEG-NHS and lysozyme. The physicochemical properties of PEG-Lysozyme can be tuned by the components ratio, which confers the implant mimetic corneal modulus and provides tissue adhesion to endure increased intraocular pressure. In vitro tests prove that the implant is beneficial to Human corneal epithelial cells growth and migration due to the bioactivity of lysozyme. Rabbit lamellar keratoplasty experiment demonstrates that the hydrogel can be filled into defect to form a shape-adaptive implant adhered to native stroma. The implant promotes epithelialization and stroma integrity, recovering the topology of injured cornea to normal. A newly established animal forging behavior test prove a rapid visual restoration of rabbits when use implant in a suture free manner. In general, this work provides a promising preclinical practice by applicating a self-curing, shape self-adaptive and bioactive PEG-Lysozyme implant for suture-free stroma repair. KeAi Publishing 2023-06-28 /pmc/articles/PMC10338238/ /pubmed/37456580 http://dx.doi.org/10.1016/j.bioactmat.2023.05.008 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Zhou, Hang
Zhang, Shaohua
Lei, Miao
Cai, Yixin
Wang, Honglei
Sun, Jianguo
Cui, Jingyuan
Liu, Changsheng
Qu, Xue
A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title_full A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title_fullStr A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title_full_unstemmed A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title_short A suture-free, shape self-adaptive and bioactive PEG-Lysozyme implant for Corneal stroma defect repair and rapid vision restoration
title_sort suture-free, shape self-adaptive and bioactive peg-lysozyme implant for corneal stroma defect repair and rapid vision restoration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338238/
https://www.ncbi.nlm.nih.gov/pubmed/37456580
http://dx.doi.org/10.1016/j.bioactmat.2023.05.008
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