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Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics

This study has two novel findings: it is not only the first to deduct potential genes involved in scleral growth repression upon atropine instillation from a prevention point of view, but also the first to demonstrate that only slight changes in scleral gene expression were found after atropine trea...

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Autores principales: Hsiao, Yu-Ting, Chang, Wei-An, Kuo, Ming-Tse, Lo, Jung, Lin, Hsien-Chung, Yen, Meng-Chi, Jian, Shu-Fang, Chen, Yi-Jen, Kuo, Po-Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6909806/
https://www.ncbi.nlm.nih.gov/pubmed/31839753
http://dx.doi.org/10.7150/ijms.38571
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author Hsiao, Yu-Ting
Chang, Wei-An
Kuo, Ming-Tse
Lo, Jung
Lin, Hsien-Chung
Yen, Meng-Chi
Jian, Shu-Fang
Chen, Yi-Jen
Kuo, Po-Lin
author_facet Hsiao, Yu-Ting
Chang, Wei-An
Kuo, Ming-Tse
Lo, Jung
Lin, Hsien-Chung
Yen, Meng-Chi
Jian, Shu-Fang
Chen, Yi-Jen
Kuo, Po-Lin
author_sort Hsiao, Yu-Ting
collection PubMed
description This study has two novel findings: it is not only the first to deduct potential genes involved in scleral growth repression upon atropine instillation from a prevention point of view, but also the first to demonstrate that only slight changes in scleral gene expression were found after atropine treatment as side effects and safety reasons of the eye drops are of concern. The sclera determines the final ocular shape and size, constituting of scleral fibroblasts as the principal cell type and the major regulator of extracellular matrix. The aim of our study was to identify differentially expressed genes and microRNA regulations in atropine-treated scleral fibroblasts that are potentially involved in preventing the onset of excessive ocular growth using next-generation sequencing and bioinformatics approaches. Differentially expressed genes were functionally enriched in anti-remodeling effects, comprising of structural changes of extracellular matrix and metabolic pathways involving cell differentiation. Significant canonical pathways were correlated to inhibition of melatonin degradation, which was compatible with our clinical practice as atropine eye drops are instilled at night. Validation of the dysregulated genes with previous eye growth-related arrays and through microRNA-mRNA interaction predictions revealed the association of hsa-miR-2682-5p-KCNJ5 and hsa-miR-2682-5p-PRLR with scleral anti-remodeling and circadian rhythmicity. Our findings present new insights into understanding the anti-myopic effects of atropine, which may assist in prevention of myopia development.
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spelling pubmed-69098062019-12-14 Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics Hsiao, Yu-Ting Chang, Wei-An Kuo, Ming-Tse Lo, Jung Lin, Hsien-Chung Yen, Meng-Chi Jian, Shu-Fang Chen, Yi-Jen Kuo, Po-Lin Int J Med Sci Research Paper This study has two novel findings: it is not only the first to deduct potential genes involved in scleral growth repression upon atropine instillation from a prevention point of view, but also the first to demonstrate that only slight changes in scleral gene expression were found after atropine treatment as side effects and safety reasons of the eye drops are of concern. The sclera determines the final ocular shape and size, constituting of scleral fibroblasts as the principal cell type and the major regulator of extracellular matrix. The aim of our study was to identify differentially expressed genes and microRNA regulations in atropine-treated scleral fibroblasts that are potentially involved in preventing the onset of excessive ocular growth using next-generation sequencing and bioinformatics approaches. Differentially expressed genes were functionally enriched in anti-remodeling effects, comprising of structural changes of extracellular matrix and metabolic pathways involving cell differentiation. Significant canonical pathways were correlated to inhibition of melatonin degradation, which was compatible with our clinical practice as atropine eye drops are instilled at night. Validation of the dysregulated genes with previous eye growth-related arrays and through microRNA-mRNA interaction predictions revealed the association of hsa-miR-2682-5p-KCNJ5 and hsa-miR-2682-5p-PRLR with scleral anti-remodeling and circadian rhythmicity. Our findings present new insights into understanding the anti-myopic effects of atropine, which may assist in prevention of myopia development. Ivyspring International Publisher 2019-11-09 /pmc/articles/PMC6909806/ /pubmed/31839753 http://dx.doi.org/10.7150/ijms.38571 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Hsiao, Yu-Ting
Chang, Wei-An
Kuo, Ming-Tse
Lo, Jung
Lin, Hsien-Chung
Yen, Meng-Chi
Jian, Shu-Fang
Chen, Yi-Jen
Kuo, Po-Lin
Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title_full Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title_fullStr Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title_full_unstemmed Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title_short Systematic Analysis of Transcriptomic Profile of the Effects of Low Dose Atropine Treatment on Scleral Fibroblasts using Next-Generation Sequencing and Bioinformatics
title_sort systematic analysis of transcriptomic profile of the effects of low dose atropine treatment on scleral fibroblasts using next-generation sequencing and bioinformatics
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6909806/
https://www.ncbi.nlm.nih.gov/pubmed/31839753
http://dx.doi.org/10.7150/ijms.38571
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