IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Juliana M Huizenga, Lisa Truong, Lewis Semprini
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引用次数: 0

摘要

随着与人类接触的化学品生产和创新的增加,对新的和现有化学品进行快速毒性测试的需求也随之增加。这种需求以及减少动物试验的努力,促进了通常在微孔板中进行的高通量生物测定的发展。与传统的动物模型相比,这些生物测定具有时间和资源方面的优势;但是,微孔板中可能会出现大量的化学损失。目前测量微孔板中化学损失的方法需要大量的样品制备和高灵敏度的仪器。我们建议使用荧光光谱法测量高通量生物测定中的化学损失,作为现有方法的低资源替代方法。我们使用荧光平板阅读器开发了一种方法,用于量化 96 孔微孔板微孔中 2-hydroxynaphthalene 和吖啶这两种化学物质的水浓度。高通量、5 天胚胎斑马鱼生物测定被用作方法开发的模型生物测定。斑马鱼胚胎的光降解、吸附和吸收共同造成了化学物质的损失,其动力学是根据伪一阶模型推导出来的。根据计算,2-羟基萘和吖啶的化学吸收量分别约为化学添加总量的 50%和 21%。在胚胎斑马鱼身上观察到了意想不到的颅骨畸形,这表明还需要进一步研究荧光测量和化学物质暴露所产生的紫外线辐射照射的潜在叠加毒性。尽管如此,这种新方法为测量微孔板中的化学损失提供了一种快速、低资源的方法,可扩展到各种自发荧光化学物质和基于微孔板的生物测定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid determination of chemical losses in a microplate bioassay using fluorescence spectroscopy.

The increase in production and innovation of chemicals that humans interface with has enhanced the need for rapid toxicity testing of new and existing chemicals. This need, along with efforts to reduce animal testing, has led to the development of high-throughput bioassays typically conducted in microplates. These bioassays offer time and resource advantages over traditional animal models; however, significant chemical losses can occur in microplates. Current methods for measuring chemical losses in microplates require extensive sample preparation and highly sensitive instruments. We propose the use of fluorescence spectroscopy to measure chemical losses in high-throughput bioassays as a low resource alternative to the existing methods. A fluorescent plate reader was used to develop methods for quantifying the aqueous concentrations of two chemicals, 2-hydroxynaphthalene and acridine, in microwells of a 96-well microplate. A high-throughput, 5 day embryonic zebrafish bioassay was used as the model bioassay for method development. Chemical losses were attributed to a combination of photodegradation, sorption, and uptake by the zebrafish embryos, kinetics of which were derived from a pseudo-first order model. Chemical uptake amount was calculated to be approximately 50% and 21% of the total chemical amount added for 2-hydroxynaphthalene and acridine, respectively. Unexpected cranial deformities were observed in the embryonic zebrafish, suggesting further investigation of potential additive toxicity of the ultraviolet radiation exposure from fluorescence measurements and chemical exposure is needed. Nonetheless, this novel method provides a rapid, low resource approach to measuring chemical losses in microplates that can be extended to a variety of autofluorescent chemicals and microplate-based bioassays.

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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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