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Published on: January 21, 2018
An Update on Novel Ocular Nanosystems with Possible Benefits in the Treatment of Corneal Neovascularization
Chenchen Zhang1, Yuan Yin1, Jing Zhao1
1Department of Ophthalmology, The Second Hospital of Jilin University, Changchun, People's Republic of China.
Abstract:
Corneal neovascularization (CNV) is an ocular pathological change that results from an imbalance between angiogenic factors and antiangiogenic factors as a result of various ocular insults, including infection, inflammation, hypoxia, trauma, corneal degeneration, and corneal transplantation. Current clinical strategies for the treatment of CNV include pharmacological treatment and surgical intervention. Despite some degree of success, the current treatment strategies are restricted by limited efficacy, adverse effects, and a short duration of action. Recently, gene-based antiangiogenic therapy has become an emerging strategy that has attracted considerable interest. However, potential complications with the use of viral vectors, such as potential genotoxicity resulting from long-term expression and nonspecific targeting, cannot be ignored. The use of ocular nanosystems (ONS) based on nanotechnology has emerged as a great advantage in ocular disease treatment during the last two decades. The potential functions of ONS range from nanocarriers, which deliver drugs and genes to target sites in the eye, to therapeutic agents themselves. Various preclinical studies conducted to date have demonstrated promising results of the use of ONS in the treatment of CNV. In this review, we provide an overview of CNV and its current therapeutic strategies and summarize the properties and applications of various ONS related to the treatment of CNV reported to date. Our goal is to provide a comprehensive review of these considerable advances in ONS in the field of CNV therapy over the past two decades to fill the gaps in previous related reports. Finally, we discuss existing challenges and future perspectives of the use of ONS in CNV therapy, with the goal of providing a theoretical contribution to facilitate future practical growth in the area.
Insights
Ocular nanosystems offer a promising new approach for treating corneal neovascularization (CNV), overcoming limitations of current therapies. These nanotechnology-based systems show potential for drug and gene delivery to the eye, improving CNV treatment outcomes.
Area of Science:
- Ophthalmology
- Nanotechnology
- Biomedical Engineering
Background:
- Corneal neovascularization (CNV) is a pathological condition involving abnormal blood vessel growth in the cornea.
- Current treatments for CNV, including pharmacological and surgical methods, have limited efficacy and potential side effects.
- Gene-based therapies show promise but face challenges related to viral vector safety and specificity.
Purpose of the Study:
- To review the current therapeutic strategies for corneal neovascularization (CNV).
- To summarize the properties and applications of ocular nanosystems (ONS) in treating CNV.
- To provide a comprehensive overview of advances in ONS for CNV therapy over the past two decades.
Main Methods:
- Literature review of preclinical studies on ocular nanosystems for CNV treatment.
- Analysis of the functions and therapeutic potential of various ONS.
- Discussion of current challenges and future perspectives in ONS-based CNV therapy.
Main Results:
- Ocular nanosystems (ONS) demonstrate significant advantages in ocular disease treatment, including CNV.
- ONS can function as nanocarriers for targeted drug and gene delivery or as therapeutic agents themselves.
- Preclinical studies indicate promising results for ONS in the management of corneal neovascularization.
Conclusions:
- Ocular nanosystems represent a significant advancement in the treatment of corneal neovascularization.
- ONS offer a potentially safer and more effective alternative to existing CNV therapies.
- Further research and development in ONS hold promise for overcoming current therapeutic limitations in CNV.
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