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采用二甲基氨基肉桂醛(DMACA)作为显色试剂的微板分光光度法分析膳食补充剂中的吲哚-3-甲醇。

A microplate spectrophotometric method for analysis of indole-3-carbinol in dietary supplements using -dimethylaminocinnamaldehyde (DMACA) as a chromogenic reagent.

机构信息

School of Science, Mae Fah Luang University, Chiang Rai 57100, Thailand.

Center of Chemical Innovation for Sustainability (CIS), Mae Fah Luang University, Chiang Rai 57100, Thailand.

出版信息

Anal Methods. 2022 Sep 15;14(35):3366-3374. doi: 10.1039/d2ay01129h.

Abstract

This work presents the development of a microplate spectrophotometric method for determination of indole-3-carbinol in dietary supplements. The colorimetric procedure is based on the reaction of indole-3-carbinol with the -dimethylaminocinnamaldehyde (DMACA) reagent under acidic conditions. The absorbance of the colored product measured at 675 nm was used to determine the target analyte. To achieve optimal spectrophotometric performance, the DMACA reagent concentration, the hydrochloric acid concentration, and the reaction time were optimized. The developed technique performed well under the optimal conditions, with a linear calibration range of 30 to 300 mg L and a high correlation coefficient ( = 0.9954). The limit of detection and limit of quantification were 7.8 mg L and 26.2 mg L, respectively. This approach demonstrated good repeatability (intra- and inter-day precision) with a % RSD lower than 9.4%, good accuracy with acceptable relative recoveries in the range of 98 to 106%, and high sample throughput (24 detection per min). This simple, rapid, and multi-sample analysis approach for routine analysis of indole-3-carbinol has the potential to be used for the quality control of dietary supplements.

摘要

本工作开发了一种用于测定膳食补充剂中吲哚-3-甲醇的微孔板分光光度法。比色法基于吲哚-3-甲醇在酸性条件下与 -二甲基氨基肉桂醛(DMACA)试剂的反应。在 675nm 处测量的显色产物的吸光度用于测定目标分析物。为了获得最佳的分光光度性能,优化了 DMACA 试剂浓度、盐酸浓度和反应时间。在最佳条件下,所开发的技术表现良好,线性校准范围为 30 至 300mg/L,相关系数高(=0.9954)。检测限和定量限分别为 7.8mg/L 和 26.2mg/L。该方法表现出良好的重复性(日内和日间精密度),%RSD 低于 9.4%,准确性良好,回收率在 98%至 106%范围内可接受,且具有高样品通量(每分钟 24 次检测)。这种简单、快速、多样品分析方法有望用于膳食补充剂的质量控制。

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