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开发一种用于牛角膜混浊和通透性(BCOP)测定的新型不透明度计。

Development of a new opacitometer for the bovine corneal opacity and permeability (BCOP) assay.

机构信息

Johnson and Johnson Pharmaceutical Research and Development (Division of Janssen Pharmaceutica NV), Department of Genetic and Exploratory Toxicology, Beerse, Belgium.

出版信息

Toxicol In Vitro. 2010 Sep;24(6):1854-61. doi: 10.1016/j.tiv.2010.04.012. Epub 2010 May 5.

Abstract

The bovine corneal opacity and permeability (BCOP) assay is an in vitro eye irritation test that relies on the measurement of induced opacity and permeability evaluated in isolated bovine corneas. Routinely, opacity is measured by an OP-KIT opacitometer which provides a centre-weighted reading of light transmission through the corneal tissue. However, this may underestimate opacity that develops as spots or heterogeneous opaque areas on the periphery of isolated cornea. Consequently, these findings question the reliability of the obtained data when opacity is manifested in a non-homogeneous manner. In addition, the BCOP test is only recommended to identify corrosive and severe eye irritants, and has not proven as sensitive in distinguishing among mild and moderate eye irritants. Within this context, a new opacitometer was developed which uses an adjustable laser beam in combination with a calibrated photometer. This work focused on a technical optimisation and describes the optical characteristics of the new device. The laser-based opacitometer allowed the analysis of the complete corneal surface, showed improved sensitivity to detect subtle changes in corneal transparency and was able to detect more efficiently opaque spots located along the sides of the excised corneas.

摘要

牛角膜混浊和通透性(BCOP)测定法是一种体外眼刺激性试验,依赖于对分离牛角膜中诱导的混浊和通透性的测量评估。通常,通过 OP-KIT 光密度计测量不透明度,该光密度计提供角膜组织透光率的中心加权读数。然而,这可能会低估在分离角膜的外围出现的斑点或不均匀不透明区域所产生的不透明度。因此,当不透明度呈不均匀分布时,这些发现质疑所获得数据的可靠性。此外,BCOP 试验仅建议用于识别腐蚀性和严重的眼部刺激性物质,并且在区分轻度和中度眼部刺激性物质方面并不敏感。在这种情况下,开发了一种新的光密度计,该光密度计使用可调激光束结合校准光度计。本工作重点是对新技术进行技术优化,并描述了新设备的光学特性。基于激光的光密度计允许对整个角膜表面进行分析,显示出对角膜透明度细微变化的检测灵敏度有所提高,并且能够更有效地检测位于切除角膜侧面的不透明斑点。

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