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首页> 外文期刊>Applied and Environmental Microbiology >Detection and quantitation of T-2 mycotoxin with a simplified protein synthesis inhibition assay.
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Detection and quantitation of T-2 mycotoxin with a simplified protein synthesis inhibition assay.

机译:具有简化蛋白质合成抑制测定的T-2霉菌毒素的检测和定量。

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摘要

We describe a simple, rapid, and sensitive bioassay for the detection and quantitation of T-2 mycotoxin by using a protein synthesis assay in cultured cells. Increased sensitivity of the cells to the mycotoxin occurred with time up to ca. 60-min. Time and dose response curves show that an average of 10 to 20 ng of T-2 per ml was sufficient to cause 50% inhibition of protein synthesis in tissue culture cells. A wide range of tissue culture cells with varied type, tissue, and species sources and growth characteristics were tested by this system. All showed approximately the same sensitivity to the mycotoxin. A slight modification of the procedure was used for suspended cultures of mitogen-stimulated lymphocytes, which also showed an equal degree of sensitivity to the mycotoxin. By simply changing the labeled precursor, the inhibition of RNA, DNA, and protein synthesis by T-2 mycotoxin can be compared. Although T-2 mycotoxin had little effect on RNA synthesis, DNA and protein synthesis were equally inhibited. Because of its sensitivity and its capacity to quickly assay a large number of samples, this technique has been a valuable tool in screening samples for the presence of active toxin and has been used to help establish laboratory safety standards for the inactivation of T-2 mycotoxin by chemical agents. It is presently being used in studies of mycotoxin mechanism of action and approaches toward in vivo neutralization of the toxic effects of mycotoxins.
机译:我们通过在培养细胞中使用蛋白质合成测定来描述一种简单,快速和敏感的生物测定,用于检测和定量T-2霉菌毒素。增加了细胞对霉菌毒素的敏感性,随着时间的推移而发生。 60分钟。时间和剂量响应曲线表明,平均10至​​20ng / ml的T-2足以使组织培养细胞中的蛋白质合成抑制50%。该系统测试了具有多种类型,组织和物种来源和生长特性的各种组织培养细胞。所有人都显示出与霉菌毒素大致相同的敏感性。对该程序的轻微改性用于促丝瘤刺激淋巴细胞的悬浮培养物,这也表现出对霉菌毒素的同等程度的敏感性。通过简单地改变标记的前体,可以比较通过T-2霉菌毒素的RNA,DNA和蛋白质合成的抑制。虽然T-2霉菌毒素对RNA合成的影响很小,但DNA和蛋白质合成同样抑制。由于其敏感性及其快速测定大量样品的能力,这种技术在筛选用于存在活性毒素的样品中是一种有价值的工具,并且已被用于帮助建立用于灭活T-2霉菌毒素的实验室安全标准通过化学试剂。目前在目前用于研究霉菌毒素的作用机制和体内中和霉菌毒素的毒性作用的方法。

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