In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts

The design of an artificial cornea skirt requires consideration of its mechanical strength, corrosion resistance as well as biocompatibility in the ocular environment. Herein we report the first study on graphene/titania (TiO2) ceramics for this application. We used graphene oxide (GO, 100–400 nm) a...

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Main Author: Goh, Gwendoline Tze Wei
Other Authors: Jodhbir Singh Mehta
Format: Theses and Dissertations
Language:English
Published: 2018
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Online Access:http://hdl.handle.net/10356/75273
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-752732023-03-03T16:05:28Z In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts Goh, Gwendoline Tze Wei Jodhbir Singh Mehta Liu Linbo School of Chemical and Biomedical Engineering DRNTU::Engineering::Bioengineering The design of an artificial cornea skirt requires consideration of its mechanical strength, corrosion resistance as well as biocompatibility in the ocular environment. Herein we report the first study on graphene/titania (TiO2) ceramics for this application. We used graphene oxide (GO, 100–400 nm) and large crystal graphene oxide (LCGO, 20–40 μm) as graphene precursors, and the composites were prepared by an advanced sintering technique, spark plasma sintering. Their mechanical properties were investigated, and corrosion resistance was studied in artificial tear fluid through anodic polarization and long-term incubation. In vitro safety and biocompatibility was assessed using primary human corneal stromal fibroblast culture, and the implantation of fabricated TiO2/GO or TiO2/LCGO composite on rabbit cornea model was performed and in vivo stability and corneal tissue responses were evaluated. Our results showed that that TiO2/LCGO mixed at 1% wt/wt was a preferable graphene precursor which resulted in mechanically stronger and chemically stable compound when compared to other mixture percentages and TiO2/GO(1%). Furthermore, we demonstrated that graphene/TiO2 hybrid possessed outstanding biocompatibility with corneal stromal fibroblasts and induced stronger tissue adherence when transplanted into rabbit stroma. This suggested that graphene/TiO2 hybrid could be a highly promising candidate material to use in keratoprosthesis skirt, a major component of artificial keratoprosthesis for the treatment of end-stage corneal blindness worldwide. ​Master of Science (Biomedical Engineering) 2018-05-30T07:07:49Z 2018-05-30T07:07:49Z 2018 Thesis http://hdl.handle.net/10356/75273 en 47 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Bioengineering
spellingShingle DRNTU::Engineering::Bioengineering
Goh, Gwendoline Tze Wei
In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
description The design of an artificial cornea skirt requires consideration of its mechanical strength, corrosion resistance as well as biocompatibility in the ocular environment. Herein we report the first study on graphene/titania (TiO2) ceramics for this application. We used graphene oxide (GO, 100–400 nm) and large crystal graphene oxide (LCGO, 20–40 μm) as graphene precursors, and the composites were prepared by an advanced sintering technique, spark plasma sintering. Their mechanical properties were investigated, and corrosion resistance was studied in artificial tear fluid through anodic polarization and long-term incubation. In vitro safety and biocompatibility was assessed using primary human corneal stromal fibroblast culture, and the implantation of fabricated TiO2/GO or TiO2/LCGO composite on rabbit cornea model was performed and in vivo stability and corneal tissue responses were evaluated. Our results showed that that TiO2/LCGO mixed at 1% wt/wt was a preferable graphene precursor which resulted in mechanically stronger and chemically stable compound when compared to other mixture percentages and TiO2/GO(1%). Furthermore, we demonstrated that graphene/TiO2 hybrid possessed outstanding biocompatibility with corneal stromal fibroblasts and induced stronger tissue adherence when transplanted into rabbit stroma. This suggested that graphene/TiO2 hybrid could be a highly promising candidate material to use in keratoprosthesis skirt, a major component of artificial keratoprosthesis for the treatment of end-stage corneal blindness worldwide.
author2 Jodhbir Singh Mehta
author_facet Jodhbir Singh Mehta
Goh, Gwendoline Tze Wei
format Theses and Dissertations
author Goh, Gwendoline Tze Wei
author_sort Goh, Gwendoline Tze Wei
title In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
title_short In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
title_full In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
title_fullStr In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
title_full_unstemmed In vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic Keratoprosthesis skirts
title_sort in vitro and in vivo evaluation of graphene/titanium dioxide composites for synthetic keratoprosthesis skirts
publishDate 2018
url http://hdl.handle.net/10356/75273
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