探讨投石草羧甲基多糖对蓝光发光二极管诱导的角膜损伤的保护作用。

Q3 Pharmacology, Toxicology and Pharmaceutics
Lalit Chandel, Radhika Sharma, Vikas Rana
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引用次数: 3

摘要

背景:过多的蓝光发光二极管(LED)照射和由此产生的氧化应激导致角膜损伤和角膜损伤是当今由于过度使用手机、电视、环境污染等引起的主要问题。目的:探讨羧甲基弹甲(carboxymethyl Terminalia catappa, CTC)对蓝光led致角膜损伤的保护作用。方法:采用羧甲基化方法对石麻(Terminalia catappa, TC)进行功能化,并通过光谱属性对其结构进行修饰。此外,制备了CTC保护滴眼液配方(0.025-1%,w/v),并与CTC保护眼凝胶(1.25-7%,w/v)相比,评估了它们对蓝光led引起的角膜损伤的保护能力。研究结果指出,与CTC滴眼液制剂相比,CTC凝胶制剂具有出色的保护作用。此外,优化后的CTC凝胶具有触变行为,其结构回收率比市售配方(I-Comfort, HPMC 2%, w/v)高1.75倍。通过ht - cam试验验证了CTC保护滴眼液和凝胶的安全性和无毒性。此外,采用模拟蓝光致角膜损伤的大鼠眼模型,评估CTC保护滴眼液和凝胶的保护作用。结果:CTC制剂的保护作用顺序为:CTC保护眼凝胶(4%,w/v)(无角膜损伤)>市售眼凝胶(12.34%角膜损伤)=CTC保护眼药水(0.75%,w/v)(17.48%角膜损伤)>市售眼药水(51%角膜损伤)。CTC滴眼液和凝胶的保护作用机制与CTC良好的自由基清除能力和角膜粘附性能有关。本研究证实,羧甲基石刺对蓝光发光二极管引起的角膜损伤具有保护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the Protective Potential of Carboxymethyl Terminalia catappa Polysaccharide on Blue Light Light-Emitting Diode Induced Corneal Damage.

Background: Excessive blue light light-emitting diode (LED) exposure and consequent oxidative stress causes corneal damage and corneal injuries are the major problem arising these days due to excessive use of mobile phone, TV, environment pollution, etc. Objective: In the present investigation, the protectiveness of carboxymethyl Terminalia catappa (CTC) from blue light LED-induced corneal damage was explored.

Methods: For this purpose, Terminalia catappa (TC) was functionalized by carboxymethylation and its structural modification was confirmed by spectral attributes. Further, the CTC protective eye drop formulations (0.025-1%, w/v) were prepared and evaluated for their capability of protection from blue light LEDinduced corneal damage as compared to CTC protective eye gel (1.25-7%, w/v). The findings pointed towards excellent protection of CTC gel formulations as compared to CTC eye drop formulations. In addition, the prepared optimized CTC gel had thixotropic behavior as evident from percentage structural recovery which was 1.75 fold higher than marketed formulation (I-Comfort, HPMC 2%, w/v). The safety and non-toxicity of CTC protective eye drop and gel were confirmed by HET-CAM test. Further, a rat eye model was implemented that mimic blue light light-emitting diode induced corneal damage in day to day life to assess the protective effect of CTC protective eye drop and gel.

Results: The order of protectiveness of CTC formulations was found to be CTC protective eye gel (4%, w/v) (no corneal damage)>marketed eye gel (12.34% corneal damage)=CTC protective eye drop (0.75%, w/v) (17.48% corneal damage)> marketed eye drop (51% corneal damage). The mechanism behind the protective effect of CTC eye drop and gel was associated with good free radical scavenging activity and corneal adhesive property of CTC. It is established from the present work that, carboxymethyl Terminalia catappa has protective action against blue light light-emitting diode induced corneal damage.

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来源期刊
Recent Patents on Drug Delivery and Formulation
Recent Patents on Drug Delivery and Formulation Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
2.30
自引率
0.00%
发文量
0
期刊介绍: Recent Patents on Drug Delivery & Formulation publishes review and research articles, drug clinical trial studies and guest edited thematic issues on recent patents on drug delivery and formulation. A selection of important and recent patents on drug delivery and formulation is also included in the journal. The journal is essential reading for all researchers involved in the fields of drug delivery and formulation. The journal also covers recent research (where patents have been registered) in fast emerging therapeutic areas/targets & therapeutic agents related to drug delivery and formulations.
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