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Wort Free Amino Nitrogen Analysis Adapted to a Microplate Format

机译:适用于微孔板格式的麦芽汁游离氨基氮分析

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摘要

The standard method for determining wort free amino nitrogen content is a long-established but now relatively outdated procedure, calling for the use of test tubes, marbles, several water baths (boiling and 20℃), manual sample transfers, and a conventional spectrophotometer. Currently, many malting quality laboratories avoid use of this cumbersome manual system by adopting automated chemistry analysis systems as their in-house standard method for wort free amino nitrogen analysis. Several recent papers have taken a somewhat different approach to measuring malting quality by adapting the basic analytical method to microtiter plates, microplate readers, and related instrumentation. This streamlines sample handling and increases sample capacity. However, results from the several free amino nitrogen methods published previously have not been directly compared. In this study, we analyzed several malts using the standard ASBC Wort-12 method, our standard Skalar segmented flow analysis chemistry system, and several variations of those two chemistries in microplate formats to compare the results obtained by the different analysis systems. Among these methods, the results from the manual ASBC Wort-12, the automated Skalar system, and a microplate-format assay based on the Skalar reagents agreed well. Surprisingly, however, direct adaptation of the Wort-12 reagents, times, and temperatures to the microplate format yielded inconsistent results. We examined a number of parameters in the microplate-format Wort-12 implementation but were unable to identify a single factor responsible for the divergence of results. From these results, we recommend adapting the chemistry from the Skalar segmented flow analysis system to a microplate format for analysis of wort free amino nitrogen content.
机译:测定麦芽汁中游离氨基氮含量的标准方法是一个历史悠久但现在相对过时的方法,要求使用试管,大理石,几个水浴(沸腾和20℃),手动样品转移和常规分光光度计。当前,许多麦芽品质实验室通过采用自动化化学分析系统作为其用于无麦芽汁氨基氮分析的内部标准方法来避免使用这种繁琐的手动系统。最近的几篇论文采用了基本的分析方法以适应微量滴定板,酶标仪和相关仪器的使用,从而在制麦芽质量方面采用了略有不同的方法。这简化了样品处理并增加了样品容量。但是,以前发表的几种游离氨基氮法的结果尚未直接比较。在这项研究中,我们使用标准的ASBC Wort-12方法,标准的Skalar分段流动分析化学系统分析了几种麦芽,并以微孔板形式分析了这两种化学物质的几种变化,以比较不同分析系统获得的结果。在这些方法中,手动ASBC Wort-12,自动Skalar系统和基于Skalar试剂的微孔板格式测定的结果非常吻合。然而,令人惊讶的是,Wort-12试剂,时间和温度直接适应微孔板格式的结果不一致。我们检查了微孔板格式Wort-12实施方案中的许多参数,但无法确定导致结果差异的单个因素。从这些结果中,我们建议将Skalar分段流量分析系统中的化学物调整为微孔板格式,以分析麦芽汁中游离氨基氮的含量。

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    United States Department of Agriculture-Agricultural Research Service, Cereal Crops Research Unit, 502 Walnut St., Madison, WI53726;

    United States Department of Agriculture-Agricultural Research Service, Cereal Crops Research Unit, 502 Walnut St., Madison, WI53726;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:34:09

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