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Colorimetric micro-assay for accelerated screening of mould inhibitors

机译:比色法用于霉菌抑制剂的快速筛选

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Since current standard laboratory methods are time-consuming macro-assays that rely on subjective visual ratings of mould growth, rapid and quantitative laboratory methods are needed to screen potential mould inhibitors for use in and on cellulose-based products. A colorimetric micro-assay has been developed that uses XTT tetrazolium salt to enzymatically assess metabolic activity in mould spores, saving significant time and resources (i.e. wood specimens). Minimal inhibitory concentration (MIC90) of isothiazolinone, a known mould inhibitor, in the XTT assay was the same or within a two-fold dilution of the MIC90 for two methods currently used to determine mould resistance of cellulose-based products. An ATP assay corroborated XTT assay findings; isothiazolinone appeared to be fungicidal rather than fungistatic to the spores of fungi used in this study. After 24 h exposure to the chemical, spores remained inactive indefinitely. The XTT assay would be a useful tool for screening mould inhibitors for numerous applications in addition to those of the forest products industry
机译:由于当前的标准实验室方法是依赖于霉菌生长的主观视觉评级的耗时的宏观测定方法,因此需要快速和定量的实验室方法来筛选用于基于纤维素的产品中和上的潜在霉菌抑制剂。已经开发了比色微测定法,该比色法使用XTT四唑鎓盐通过酶法评估霉菌孢子中的代谢活性,从而节省了大量时间和资源(即木材标本)。在XTT分析中,异噻唑啉酮(一种已知的霉菌抑制剂)的最小抑菌浓度(MIC90)与MIC90相同或在MIC90的两倍稀释液中,目前用于确定纤维素基产品的霉菌抵抗力的两种方法。 ATP分析证实了XTT分析的发现;异噻唑啉酮对本研究中使用的真菌孢子似乎具有杀真菌作用,而不具有抑真菌作用。暴露于该化学品24小时后,孢子无限期保持无活性。 XTT分析将是一种有用的工具,可用于筛选除林产品工业以外的许多应用中的霉菌抑制剂

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