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中国精品科技期刊2020
王琳, 王雪, 田静秒, 宋云飞, 闫叶娜. 表面增强拉曼光谱检测保健品中的盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍[J]. 食品工业科技, 2016, (13): 295-298. DOI: 10.13386/j.issn1002-0306.2016.13.052
引用本文: 王琳, 王雪, 田静秒, 宋云飞, 闫叶娜. 表面增强拉曼光谱检测保健品中的盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍[J]. 食品工业科技, 2016, (13): 295-298. DOI: 10.13386/j.issn1002-0306.2016.13.052
WANG Lin, WANG Xue, TIAN Jing- miao, SONG Yun- fei, YAN Ye- na. Surface- Enhanced Raman Spectroscopy( SERS) assay method for pioglitazone hydrochloride,rosiglitazone hydrochloride and phenformin hydrochloride in health care products[J]. Science and Technology of Food Industry, 2016, (13): 295-298. DOI: 10.13386/j.issn1002-0306.2016.13.052
Citation: WANG Lin, WANG Xue, TIAN Jing- miao, SONG Yun- fei, YAN Ye- na. Surface- Enhanced Raman Spectroscopy( SERS) assay method for pioglitazone hydrochloride,rosiglitazone hydrochloride and phenformin hydrochloride in health care products[J]. Science and Technology of Food Industry, 2016, (13): 295-298. DOI: 10.13386/j.issn1002-0306.2016.13.052

表面增强拉曼光谱检测保健品中的盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍

Surface- Enhanced Raman Spectroscopy( SERS) assay method for pioglitazone hydrochloride,rosiglitazone hydrochloride and phenformin hydrochloride in health care products

  • 摘要: 目的:建立一种用于检测盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍的快速分析方法。方法:采用表面增强拉曼光谱(SERS)分析方法检测盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍。结果:该方法检测盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍,检测浓度分别为4、4、1μg/m L。该方法的检测结果受p H的影响,p H2.0时,上述三种降糖药的表面增强拉曼效应较显著。该方法可以用于检测保健品中添加的盐酸吡咯列酮,盐酸罗格列酮与盐酸苯乙双胍,检测浓度分别为200、200、100μg/m L。结论:该方法操作简便,所用时间短,前处理与检测时间一共只需15 min,适合现场快速筛查。 

     

    Abstract: Objective: A fast assay method for pioglitazone hydrochloride,rosiglitazone hydrochloride and phenformin hydrochloride was developed.Method: A Surface- Enhanced Raman Spectroscopy( SERS) assay method was used to detect the pioglitazone hydrochloride,rosiglitazone hydrochloride and phenformin hydrochloride. Result: The concentration of the SERS method for pioglitazone hydrochloride and rosiglitazone hydrochloride was 4 μg / m L,and for phenformin hydrochloride was 1 μg / m L. The SERS spectrums under three different p H conditions were studied,and the results showed that the p H of the system had obvious effect on the SERS,and the SERS was most enhanced when the p H was 2.0. For detecting health care products,the concentration of the SERS method for pioglitazone hydrochloride and rosiglitazone hydrochloride was 200 μg / m L,and for phenformin hydrochloride was100 μg / m L.The SERS method was simple and rapid and could be finished in fifteen minutes.Conclusion: The SERS method could be a convenient tool for field detection of health care products.

     

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