Therapeutic Application of Dendrobium fimbriatum Hook for Retinopathy Caused by Ultraviolet Radiation and Chemotherapy Using ARPE-19 Cells and Mouse Retina

Cheng, Chi-Feng and Wang, Sheue-Er and Lu, Chen-Wen and Nguyen, Thi Kim Ngan and Shen, Szu-Chuan and Lien, Chia-Ying and Chuang, Wu-Chang and Lee, Ming-Chung and Wu, Chung-Hsin (2024) Therapeutic Application of Dendrobium fimbriatum Hook for Retinopathy Caused by Ultraviolet Radiation and Chemotherapy Using ARPE-19 Cells and Mouse Retina. Plants, 13 (5). p. 617. ISSN 2223-7747

[thumbnail of plants-13-00617.pdf] Text
plants-13-00617.pdf - Published Version

Download (6MB)

Abstract

Retinopathy caused by ultraviolet radiation and cancer chemotherapy has increased dramatically in humans due to rapid environmental and social changes. Therefore, it is very important to develop therapeutic strategies to effectively alleviate retinopathy. In China, people often choose dendrobium to improve their eyesight. In this study, we explored how Dendrobium fimbriatum extract (DFE) protects ARPE-19 cells and mouse retinal tissue from damage of ultraviolet (UV) radiation and chemotherapy. We evaluated the antioxidant capacity of DFE using the 1,1-diphenyl-2-trinitophenylhydrazine (DPPH) assay. The protective effects of DEF from UV- and oxaliplatin (OXA)-induced damage were examined in ARPE-19 cells using 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay and immunofluorescence (IF) stains, and in mouse retinal tissue using immunohistochemistry (IHC) stains. Our results show that DFE has excellent antioxidant capacity. The ARPE-19 cell viability was decreased and the F-actin cytoskeleton structure was damaged by UV radiation and OXA chemotherapy, but both were alleviated after the DFE treatment. Furthermore, DFE treatment can alleviate OXA chemotherapy-induced reduced expressions of rhodopsin and SOD2 and increased expressions of TNF-a and caspase 3 in mouse retinal tissue. Thus, we suggest that DFE can act as suitable treatment for retinopathy through reducing oxidative stress, inflammation, and apoptosis.

Item Type: Article
Subjects: SCI Archives > Multidisciplinary
Depositing User: Managing Editor
Date Deposited: 26 Feb 2024 05:24
Last Modified: 11 Jul 2024 04:48
URI: http://science.classicopenlibrary.com/id/eprint/3877

Actions (login required)

View Item
View Item