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Investigating the potential of carboxymethyl pullulan for protecting the rabbit eye from systematically induced precorneal tear film damage

机译:研究羧甲基藜的潜力,用于保护兔子眼免受系统诱导的前甲撕裂膜损伤

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摘要

The present investigation was aimed to develop a rabbit model for protecting the rabbit eye from systematically induced precorneal tear film (PTF) damage, evaluation of carboxymethyl pullulan for its protective action against PTF damage and its curative potential. For the same, pullulan was modified by carboxymethylation and structural modification was confirmed by spectral attributes. Further, the carboxymethyl pullulan (CMP) solutions (0.1-2.0%, w/v) were evaluated for their physical properties and its concentration 1.5% (w/v) was found to fit the criterion to prepare an eye solution. The safety and non-toxicity of CMP (1.5%, w/v) eye solution was confirmed by HET-CAM method and rabbit eye irritation test. Further, a systematic rabbit eye model was developed that mimic PTF damage in day to day life. Therefore, three levels of PTF damage were developed equating symptoms of damage due to high temperature (level I) or long term mobile use (level II) or heavy air pollution (level III). Thus, a representative model with benzalkonium chloride (BAC, 0.1% v/v, 0.2% v/v and 0.3% v/v), administered two drops twice a day for two days to develop level I, level II and level III eye damage. The CMP (1.5%, w/v) eye solution possessed a protective potential against level I and II PTF damage. The rabbit eyes remained unharmed and comparable with the normal control during the complete experimental period. Additionally, CMP (1.5%, w/v) eye solution has shown early fast recovery (8 days) from PTF damage induced by instillation of PTF damage agent (BAC). Carboxymethyl pullulan eye protective solution has normalized the tear film stability in rabbit eye model. It is established from the present work that, carboxymethyl pullulan has protective action against precomeal tear film damage and it potentiates the early recovery too.
机译:本研究旨在开发一种用于保护兔子眼源免受系统诱导的前甲撕裂膜(PTF)损伤的兔子模型,对羧甲基淀粉的评估进行抗PTF损伤的保护作用及其疗效。同样,通过羧甲基化改性胰蛋白酶,并通过光谱属性确认结构修饰。此外,对其物理性质评价羧甲基淀粉(CMP)溶液(0.1-2.0%,W / V),发现其浓度为1.5%(w / v)以符合准备眼液的标准。通过HET-CAM方法和兔眼刺激测试确认CMP(1.5%,W / V)眼溶液的安全性和非毒性。此外,开发了一种系统兔眼模型,在日常生活中模仿PTF损坏。因此,由于高温(I级)或长期移动使用(II级)或重空气污染(III级)或重型空气污染(III水平),因此开发了三种PTF损伤症状。因此,具有苯扎氯化铵(BAC,0.1%V / V,0.2%V / V和0.3%v / v)的代表性模型,每天两次施用两次,以形成水平I,II级和III级眼睛损害。 CMP(1.5%,W / V)眼溶液具有针对I和II PTF损伤的保护潜力。兔子眼部残疾并与完整的实验期间的正常对照保持不变。此外,CMP(1.5%,W / V)眼溶液从PTF损伤剂(BAC)滴注诱导的PTF损伤,表现出早期快速恢复(8天)。羧甲基鳞片眼防护溶液归一化兔眼模型中的泪膜稳定性。它是从本作的工作中建立的,羧甲基淀粉对预聚焦撕裂膜损伤具有保护作用,并且它也增强了早期恢复。

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