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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >In vivo eye surface residence determination by high-resolution scintigraphy of a novel ion-sensitive hydrogel based on gellan gum and kappa-carrageenan
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In vivo eye surface residence determination by high-resolution scintigraphy of a novel ion-sensitive hydrogel based on gellan gum and kappa-carrageenan

机译:基于Gellan Gum和Kappa-carrageenan的新型离子敏感水凝胶的高分辨率闪烁晶体的体内眼表面居住测定

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In last years, sensitive hydrogels have become a breakthrough in ophthalmic pharmaceutical technology aimed at developing new strategies to increase the residence time of active substances. In a previous paper, we qualitatively demonstrated the capacity of a new ion sensitive hydrogel to increase the residence time. Nevertheless, the clearance of the gel from the ocular surface was not quantifiable with the used methodology. The aim of the present work was to use a well-established approach based on scintigraphy to quantitatively estimate the residence time of the previously proposed hydrogel. The rat corneal residence time of a topic ophthalmic formulation containing gellan gum and kappa carragenan (0.82% w/v) labeled with Tc-99m-DTPA radiotracer was evaluated and compared with the residence of an aqueous solution. Ophthalmic safety studies such as eye irritation or passage through the cornea were also carried out. After 1.5 h of contact, 77% of the hydrogel remained in the ocular surface, presenting kinetics of disappearance one-phase decay and a half time of 262 min. We conclude that the novel ophthalmic hydrogel developed with kappa carrageenan and gellan gum remains for long periods of time on the corneal surface, presenting a drop that fits an exponential decay. (C) 2017 Elsevier B.V. All rights reserved.
机译:在去年,敏感水凝胶已成为眼科药业技术的突破,旨在开发新的策略,以增加活性物质的停留时间。在先前的论文中,我们定性证明了新的离子敏感水凝胶的能力增加了停留时间。然而,通过使用的方法,不量化凝胶来自眼表面的凝胶。本工作的目的是使用基于闪烁图的熟悉方法来定量估计先前提出的水凝胶的停留时间。评价含有Gellan Gum和Kappa Carragenan(0.82%w / v)的含有Gellan Gum和Kappa carragenan(0.82%w / v)的大鼠角膜停留时间,并与水溶液的停留相比。还进行了眼科安全性研究,如眼角眼睛的眼睛刺激或通道。接触1.5小时后,77%的水凝胶残留在眼表面,呈现失踪的动力学单相衰减和262分钟的半时间。我们得出结论,用Kappa角叉菜胶和Gellan Gum开发的新型眼科水凝胶在角膜表面上长时间保持长时间,呈现拟合指数衰减的下降。 (c)2017 Elsevier B.v.保留所有权利。

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