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2-氨基乙铵 2-(乙氧基羰基)-4,6-二硝基苯酚盐作为还原糖定量分析中更环保的方法。

2-Aminoethanaminium 2-(ethoxycarbonyl)-4,6-dinitrophenolate as a greener route in reducing sugar quantification.

作者信息

Zohri Abdel-Naser A, Abdelazim Mohamed, Ibrahim Sara

机构信息

Faculty of Science, Botany and Microbiology Department, Assiut University, Assiut, 71516, Egypt.

Chemical and Biotechnological Laboratories, Assiut University, Sugar Industry Technology Research Institute, Assiut, 71516, Egypt.

出版信息

MethodsX. 2018 Jun 5;5:609-612. doi: 10.1016/j.mex.2018.05.017. eCollection 2018.

Abstract

3,5-dinitrosalicylic acid (DNS) reducing sugar assay is the most convenient method for quantification of total reducing sugar in biomass hydrolysate, fermentation samples, sugar industry and biotechnology laboratories. The dimeric proton transfer salt 2-aminoethanaminium 2-(ethoxycarbonyl)-4,6-dinitrophenolate (AED) is an intensely colored derivative of DNS and in turn its reduced form intense color showed a superior properties in reducing sugar quantification eliminating phenol and rochelle salt additives using the same practical methodology of DNS giving an overall methodology advantageous than using DNS assay as a greener route. The proton transfer salt has already been X-ray imaged and deposited in Cambridge Crystallographic Data Centre CCDC 1441586 and a comparison was done between DNS and this salt using a salt and sodium hydroxide concentrations as the same as DNS assay as well as the latter phenol-rochelle salt free environment giving correlation coefficient 0.999 and absorptivity nearly two thirds the obtained in case of use DNS assay with added phenol for enhancing absorptivity and rochelle salt for produced color stabilization for the same detection range 0.1-0.5 mg/ml according to Miller procedures. The sensitivity and the reduced form color stability of this proton transfer salt could be interpreted on both of its molecular structure has a double oxidizing groups as well as it has an intense color as compared with DNS and a good reduced form solubility respectively. •DNS in reducing sugar quantification, Miller procedures involving phenol and rochelle salt addition.•AED in reducing sugar quantification as the same detection range as DNS with the elimination of phenol and rochelle salt from the assay.•A greener convenient route in reducing sugar quantification.

摘要

3,5-二硝基水杨酸(DNS)还原糖测定法是生物质水解产物、发酵样品、制糖工业以及生物技术实验室中定量总还原糖最便捷的方法。二聚体质子转移盐2-氨基乙铵2-(乙氧羰基)-4,6-二硝基苯酚盐(AED)是DNS的一种颜色很深的衍生物,其还原形式的深色在还原糖定量方面表现出优越性能,采用与DNS相同的实用方法,无需苯酚和酒石酸钾钠添加剂,从而提供了一条比使用DNS测定法更环保的总体方法。该质子转移盐已进行X射线成像并保存在剑桥晶体学数据中心CCDC 1441586中,并且在盐和氢氧化钠浓度与DNS测定法相同以及后者无苯酚-酒石酸钾钠环境的条件下,将DNS与该盐进行了比较,相关系数为0.999,吸光度几乎是在使用添加苯酚以提高吸光度和酒石酸钾钠以稳定显色的DNS测定法时在相同检测范围0.1 - 0.5 mg/ml下所获得吸光度的三分之二。这种质子转移盐的灵敏度和还原形式的颜色稳定性可以从其分子结构具有两个氧化基团以及与DNS相比具有深色且还原形式具有良好溶解性两方面来解释。•DNS用于还原糖定量,米勒方法涉及添加苯酚和酒石酸钾钠。•AED用于还原糖定量,检测范围与DNS相同,且测定中无需苯酚和酒石酸钾钠。•还原糖定量的一种更环保便捷的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f23/6008280/460da1e16f2f/fx1.jpg

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