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Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses

Background and Objectives: In this study, we aimed to compare the physical properties of hole-implantable collamer lenses (H-ICLs) and implantable phakic contact lenses (IPCLs) and investigate their flexural and cell adhesion characteristics. Materials and Methods: Transverse compression load to ach...

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Autores principales: Ichikawa, Kazuo, Ichikawa, Kei, Yamamoto, Naoki, Horai, Rie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385999/
https://www.ncbi.nlm.nih.gov/pubmed/37512093
http://dx.doi.org/10.3390/medicina59071282
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author Ichikawa, Kazuo
Ichikawa, Kei
Yamamoto, Naoki
Horai, Rie
author_facet Ichikawa, Kazuo
Ichikawa, Kei
Yamamoto, Naoki
Horai, Rie
author_sort Ichikawa, Kazuo
collection PubMed
description Background and Objectives: In this study, we aimed to compare the physical properties of hole-implantable collamer lenses (H-ICLs) and implantable phakic contact lenses (IPCLs) and investigate their flexural and cell adhesion characteristics. Materials and Methods: Transverse compression load to achieve lens flexion and static Young’s modulus were measured in H-ICLs and IPCLs using designated equipment. Load was measured both with and without restraining the optic section of the lenses. Adhesion of iHLEC-NY2 cells to the lens surfaces was examined using phase-contrast microscopy, and cell proliferation activity was evaluated using WST-8 assay. Results: The H-ICL showed a greater tendency for transverse compression load compared to IPCL, while the IPCL showed a higher Young’s modulus with respect to the force exerted on the center of the anterior surface of the optic section. The joint between the optic section and haptic support in the IPCL was found to mitigate the effects of transverse compression load. Both lens types showed minimal cell adhesion. Conclusions: Our findings indicate that H-ICLs and IPCLs exhibit distinct physical properties and adhesive characteristics. The IPCL demonstrated higher Young’s modulus and unique structural features, while the H-ICL required greater transverse compression load to achieve the flexion required to tuck the haptic supports into place behind the iris to fix the lens. The observed cell non-adhesive properties for both lens types are promising in terms of reducing complications related to cell adhesion. However, further investigation and long-term observation of IPCL are warranted to assess its stability and potential impact on the iris. These findings contribute to a better understanding of the performance and potential applications of H-ICLs and IPCLs in ophthalmology.
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spelling pubmed-103859992023-07-30 Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses Ichikawa, Kazuo Ichikawa, Kei Yamamoto, Naoki Horai, Rie Medicina (Kaunas) Article Background and Objectives: In this study, we aimed to compare the physical properties of hole-implantable collamer lenses (H-ICLs) and implantable phakic contact lenses (IPCLs) and investigate their flexural and cell adhesion characteristics. Materials and Methods: Transverse compression load to achieve lens flexion and static Young’s modulus were measured in H-ICLs and IPCLs using designated equipment. Load was measured both with and without restraining the optic section of the lenses. Adhesion of iHLEC-NY2 cells to the lens surfaces was examined using phase-contrast microscopy, and cell proliferation activity was evaluated using WST-8 assay. Results: The H-ICL showed a greater tendency for transverse compression load compared to IPCL, while the IPCL showed a higher Young’s modulus with respect to the force exerted on the center of the anterior surface of the optic section. The joint between the optic section and haptic support in the IPCL was found to mitigate the effects of transverse compression load. Both lens types showed minimal cell adhesion. Conclusions: Our findings indicate that H-ICLs and IPCLs exhibit distinct physical properties and adhesive characteristics. The IPCL demonstrated higher Young’s modulus and unique structural features, while the H-ICL required greater transverse compression load to achieve the flexion required to tuck the haptic supports into place behind the iris to fix the lens. The observed cell non-adhesive properties for both lens types are promising in terms of reducing complications related to cell adhesion. However, further investigation and long-term observation of IPCL are warranted to assess its stability and potential impact on the iris. These findings contribute to a better understanding of the performance and potential applications of H-ICLs and IPCLs in ophthalmology. MDPI 2023-07-10 /pmc/articles/PMC10385999/ /pubmed/37512093 http://dx.doi.org/10.3390/medicina59071282 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ichikawa, Kazuo
Ichikawa, Kei
Yamamoto, Naoki
Horai, Rie
Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title_full Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title_fullStr Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title_full_unstemmed Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title_short Flexural and Cell Adhesion Characteristic of Phakic Implantable Lenses
title_sort flexural and cell adhesion characteristic of phakic implantable lenses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385999/
https://www.ncbi.nlm.nih.gov/pubmed/37512093
http://dx.doi.org/10.3390/medicina59071282
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