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首页> 外文期刊>Journal of pharmaceutical sciences. >Prevalidation of a human cornea construct as an alternative to animal corneas for in vitro drug absorption studies
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Prevalidation of a human cornea construct as an alternative to animal corneas for in vitro drug absorption studies

机译:对人角膜构建体进行预验证,以替代动物角膜进行体外药物吸收研究

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摘要

The use of ophthalmic drugs has increased consistently over the past few decades. Currently, most research is conducted using in vivo and ex vivo animal experiments; however, they have many disadvantages, including ethical concerns, high costs, the questionable extension of animal results to humans, and poor standardization. Although several cell culture-based cornea models have been developed, none have been validated and accepted for general use. In this study, a standardized, three-dimensional model of the human cornea (Hemicornea, HC) based on immortalized human corneal cells and cultivated in serum-free conditions was developed for drug absorption studies and prevalidated using compounds with a wide range of molecular characteristics (sodium fluorescein, rhodamine B, fluorescein isothiocyanate-labeled dextran, aciclovir, bimatoprost, dexamethasone, and timolol maleate). The HC model was independently cultured in three different laboratories, and the intralaboratory and interlaboratory reproducibility was analyzed and compared with the rabbit cornea. This analysis showed that the HC has a barrier in the same range as excised animal corneas, although with a higher reproducibility and lower variability. Because of the demonstrated transferability, the HC represents a promising in vitro alternative to the use of ex vivo tissue and offers a well-defined and standardized system for drug absorption studies.
机译:在过去的几十年中,眼科药物的使用一直在增加。目前,大多数研究是使用体内和离体动物实验进行的;但是,它们具有许多缺点,包括道德上的顾虑,高昂的成本,将动物结果推广到人类的问题以及标准化程度差。尽管已经开发了几种基于细胞培养的角膜模型,但尚未验证和接受任何通用模型。在这项研究中,开发了基于永生化的人角膜细胞并在无血清条件下培养的人角膜的标准化三维模型(Hemicornea,HC),用于药物吸收研究,并使用具有多种分子特性的化合物进行了预验证(荧光素钠,若丹明B,异硫氰酸荧光素标记的右旋糖酐,阿昔洛韦,比马前列素,地塞米松和马来酸替莫洛尔)。在三个不同的实验室中分别培养了HC模型,并分析了实验室内和实验室间的可重复性,并与兔角膜进行了比较。该分析表明,HC具有与切除的动物角膜相同范围的屏障,尽管具有较高的可重复性和较低的可变性。由于证明了可转移性,因此HC代表了一种有希望的体外替代离体组织的用途,并为药物吸收研究提供了定义明确和标准化的系统。

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