首页> 外文期刊>International Journal of Pharmaceutics >Development of a serum-free human cornea construct for in vitro drug absorption studies: the influence of varying cultivation parameters on barrier characteristics.
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Development of a serum-free human cornea construct for in vitro drug absorption studies: the influence of varying cultivation parameters on barrier characteristics.

机译:开发用于体外药物吸收研究的无血清人角膜构建体:不同培养参数对屏障特性的影响。

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The increased use of ophthalmic products in recent years has led to an increased demand for in vitro and in vivo transcorneal drug absorption studies. Cell-culture models of the human cornea can avoid several of the disadvantages of widely used animal experimental models, including ethical concerns and poor standardisation. This study describes the development of a serum-free cultivated, three-dimensional human cornea model (Hemicornea, HC) for drug absorption experiments. The impact of varying cultivation conditions on the corneal barrier function was analysed and compared with excised rabbit and porcine corneas. The HC was cultivated on permeable polycarbonate filters using immortalised human keratocytes and a corneal epithelial cell line. The equivalence to native tissue was investigated through absorption studies using model substances with a wide range of molecular characteristics, including hydrophilic sodium fluorescein, lipophilic rhodamine B and fluorescein isothiocyanate (FITC)-labelled macromolecule dextran. To study the intra-laboratory repeatability and construct cultivation, the permeation studies were performed independently by different researchers. The HC exhibited a permeation barrier in the same range as excised animal corneas, high reproducibility and a lower standard deviation. Therefore, the HC could be a promising in vitro alternative to ex vivo corneal tissues in preclinical permeation studies.
机译:近年来,眼科产品使用的增加导致对体外和体内经角膜药物吸收研究的需求增加。人角膜的细胞培养模型可以避免广泛使用的动物实验模型的一些缺点,包括道德方面的考虑和较差的标准化。这项研究描述了用于药物吸收实验的无血清培养的三维人角膜模型(Hemicornea,HC)的开发。分析了不同培养条件对角膜屏障功能的影响,并与切除的兔子和猪角膜进行了比较。使用永生化的人角膜细胞和角膜上皮细胞系在可渗透的聚碳酸酯滤膜上培养HC。通过使用具有广泛分子特性的模型物质(包括亲水性荧光素钠,亲脂性罗丹明B和荧光素异硫氰酸酯(FITC)标记的大分子葡聚糖)进行吸收研究,研究了与天然组织的等效性。为了研究实验室内的重复性和构建培养,渗透研究由不同的研究人员独立进行。 HC表现出与被切除的动物角膜相同的渗透屏障,高可重复性和较低的标准偏差。因此,在临床前渗透研究中,HC可能是体外角膜组织的有希望的体外替代方法。

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