Literature DB >> 30860532

Synergistically dual-functional nano eye-drops for simultaneous anti-inflammatory and anti-oxidative treatment of dry eye disease.

Yu-Jia Li1, Li-Jyuan Luo, Scott G Harroun, Shih-Chun Wei, Binesh Unnikrishnan, Huan-Tsung Chang, Yu-Fen Huang, Jui-Yang Lai, Chih-Ching Huang.   

Abstract

We have developed a rapid and straightforward topical treatment method for dry eye disease (DED) using poly(catechin) capped-gold nanoparticles (Au@Poly-CH NPs) carrying amfenac [AF; a nonsteroidal anti-inflammatory drug (NSAID)] through effective attenuation of ocular surface tissue damage in dry eyes. A dual-targeted strategy based on ocular therapeutics was adopted to simultaneously block the cyclooxygenase enzymes-induced inflammation and reactive oxygen species (ROS)-induced oxidative stress, the primary two causes of DED. The self-assembled core-shell Au@Poly-CH NPs synthesized via a simple reaction between tetrachloroaurate(iii) and catechin possess a poly(catechin) shell (∼20 nm) on the surface of each Au NP (∼60 nm). The anti-oxidant and anti-inflammatory properties of AF/Au@Poly-CH NPs were evaluated by DCFH-DA and prostaglandin E2/VEGF assays, respectively. Our results demonstrate that Au@Poly-CH NPs not only act as an anti-oxidant to suppress ROS-mediated processes, but also serve as a drug carrier of AF for a synergistic effect on anti-inflammation. In vivo biocompatibility studies show good tolerability of AF/Au@Poly-CH NPs for potential use in the treatment of ocular surface pathologies. The dual-targeted therapeutic effects of AF/Au@Poly-CH NPs lead to rapid recovery from DED in a rabbit model. Au@Poly-CH NPs loaded with NSAIDs is a promising multifunctional nanocomposite for treating various inflammation- and oxidative stress-related diseases.

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Year:  2019        PMID: 30860532     DOI: 10.1039/c9nr00376b

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  17 in total

Review 1.  Metallic Engineered Nanomaterials and Ocular Toxicity: A Current Perspective.

Authors:  Krista M Cosert; Soohyun Kim; Iman Jalilian; Maggie Chang; Brooke L Gates; Kent E Pinkerton; Laura S Van Winkle; Vijay Krishna Raghunathan; Brian C Leonard; Sara M Thomasy
Journal:  Pharmaceutics       Date:  2022-05-03       Impact factor: 6.525

2.  Optimization of a Rabbit Dry Eye Model Induced by Topical Instillation of Benzalkonium Chloride.

Authors:  Carlos Carpena-Torres; Jesús Pintor; María Jesús Pérez de Lara; Fernando Huete-Toral; Almudena Crooke; Cristina Pastrana; Gonzalo Carracedo
Journal:  J Ophthalmol       Date:  2020-05-30       Impact factor: 1.909

Review 3.  Dry Eye Disease: A Review of Epidemiology in Taiwan, and its Clinical Treatment and Merits.

Authors:  Yu-Kai Kuo; I-Chan Lin; Li-Nien Chien; Tzu-Yu Lin; Ying-Ting How; Ko-Hua Chen; Gregory J Dusting; Ching-Li Tseng
Journal:  J Clin Med       Date:  2019-08-15       Impact factor: 4.241

4.  Polysaccharide-Based Nanomaterials for Ocular Drug Delivery: A Perspective.

Authors:  Haozhe Yu; Wenyu Wu; Xiang Lin; Yun Feng
Journal:  Front Bioeng Biotechnol       Date:  2020-12-10

5.  Efficacy of Artificial Tears Based on an Extract of Artemia salina Containing Dinucleotides in a Rabbit Dry Eye Model.

Authors:  Carlos Carpena-Torres; Jesus Pintor; Fernando Huete-Toral; Alba Martin-Gil; Candela Rodríguez-Pomar; Alejandro Martínez-Águila; Gonzalo Carracedo
Journal:  Int J Mol Sci       Date:  2021-11-05       Impact factor: 5.923

Review 6.  Nanotechnology for Topical Drug Delivery to the Anterior Segment of the Eye.

Authors:  Alexander Vaneev; Victoria Tikhomirova; Natalia Chesnokova; Ekaterina Popova; Olga Beznos; Olga Kost; Natalia Klyachko
Journal:  Int J Mol Sci       Date:  2021-11-16       Impact factor: 5.923

7.  Modulation of Oxidative Stress and Inflammation in the Aged Lacrimal Gland.

Authors:  Rodrigo G de Souza; Zhiyuan Yu; Humberto Hernandez; Claudia M Trujillo-Vargas; Andrea Lee; Kelsey E Mauk; Jiyang Cai; Milton R Alves; Cintia S de Paiva
Journal:  Am J Pathol       Date:  2020-11-04       Impact factor: 4.307

8.  Topical Delivery of Levocarnitine to the Cornea and Anterior Eye by Thermosensitive in-situ Gel for Dry Eye Disease.

Authors:  Baorui Ma; Linnuo Pang; Pingqing Huang; Jie Bai; Zhiqin Zhang; Huimin Wu; Mengru Cai; Jin Yang; Yuchen Xu; Xingbin Yin; Changhai Qu; Jian Ni
Journal:  Drug Des Devel Ther       Date:  2021-06-02       Impact factor: 4.162

9.  Combination Nanotherapeutics for Dry Eye Disease Treatment in a Rabbit Model.

Authors:  Liandi Huang; Huanhuan Gao; Zhigang Wang; Yixin Zhong; Lan Hao; Zhiyu Du
Journal:  Int J Nanomedicine       Date:  2021-05-26

Review 10.  Nano-Based Drug Delivery System: Recent Strategies for the Treatment of Ocular Disease and Future Perspective.

Authors:  Zufika Qamar; Farheen Fatima Qizilbash; Mohammad Kashif Iqubal; Asgar Ali; Jasjeet Kaur Narang; Javed Ali; Sanjula Baboota
Journal:  Recent Pat Drug Deliv Formul       Date:  2019
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