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平面体外检测中细胞毒性掩蔽效应的外推。

Extrapolation of cytotoxic masked effects in planar in vitro assays.

机构信息

Department G - Qualitative Hydrology, Federal Institute of Hydrology (BfG), Am Mainzer Tor 1, 56068, Koblenz, Germany.

Environmental Chemistry - Department of Water, Environment, Construction and Safety, University of Applied Sciences Magdeburg-Stendal, Breitscheidstraße 2, 39114, Magdeburg, Germany.

出版信息

Anal Bioanal Chem. 2024 Jun;416(15):3519-3532. doi: 10.1007/s00216-024-05302-z. Epub 2024 Apr 24.

Abstract

The masking of specific effects in in vitro assays by cytotoxicity is a commonly known phenomenon. This may result in a partial or complete loss of effect signals. For common in vitro assays, approaches for identifying and quantifying cytotoxic masking are partly available. However, a quantification of cytotoxicity-affected signals is not possible. As an alternative, planar bioassays that combine high-performance thin layer chromatography with in vitro assays, such as the planar yeast estrogen screen (p-YES), might allow for a quantification of cytotoxically affected signals. Affected signals form a typical ring structure with a supressed or completely lacking centre that results in a double peak chromatogram. This study investigates whether these double peaks can be used for fitting a peak function to extrapolate the theoretical, unaffected signals. The precision of the modelling was evaluated for four individual peak functions, using 42 ideal, undistorted peaks from estrogenic model compounds in the p-YES. Modelled ED-values from bisphenol A (BPA) experiments with cytotoxically disturbed signals were 13 times higher than for the apparent data without compensation for cytotoxicity (320 ± 63 ng versus 24 ± 17 ng). This finding has a high relevance for the modelling of mixture effects according to concentration addition that requires unaffected, complete dose-response relationships. Finally, we applied the approach to results of a p-YES assay on leachate samples of an elastomer material used in water engineering. In summary, the fitting approach enables the quantitative evaluation of cytotoxically affected signals in planar in vitro assays and also has applications for other fields of chemical analysis like distorted chromatography signals.

摘要

细胞毒性对体外检测中特定效应的掩盖是一种常见现象。这可能导致效应信号的部分或完全缺失。对于常见的体外检测,已经有部分方法可用于识别和量化细胞毒性掩盖效应。然而,对于受细胞毒性影响的信号,目前还无法进行定量。作为替代方案,将高性能薄层色谱与体外检测(如平面酵母雌激素筛选(p-YES))相结合的平面生物测定法可能允许对受细胞毒性影响的信号进行定量。受影响的信号形成一个典型的环结构,中心受到抑制或完全缺失,从而导致双峰色谱图。本研究探讨了这些双峰是否可用于拟合峰函数以推断理论上未受影响的信号。使用 p-YES 中雌激素模型化合物的 42 个理想、未失真的峰,评估了 4 种单个峰函数的建模精度。对于用细胞毒性干扰信号进行的双酚 A(BPA)实验,建模的 ED 值比未补偿细胞毒性的表观数据高出 13 倍(320±63 ng 与 24±17 ng)。这一发现对于根据浓度加和模型对混合物效应进行建模具有重要意义,因为该模型需要未受影响的完整剂量-反应关系。最后,我们将该方法应用于水工程中使用的弹性体材料浸出物样品的 p-YES 检测结果。总之,该拟合方法可用于定量评估平面体外检测中受细胞毒性影响的信号,并且还可应用于化学分析的其他领域,如色谱信号失真。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/348d/11525312/2b8c7664bd1b/216_2024_5302_Fig1_HTML.jpg

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