Citation:
WANG Lina, HUANG Junrong, ZHANG Li, FENG Feng, LING Yun, CHU Xiaogang, LI Hongliang. Determination of lutein in infant formula milk powder using ultra-high performance liquid chromatography[J]. Chinese Journal of Chromatography,
;2013, 31(12): 1228-1231.
doi:
10.3724/SP.J.1123.2013.10007
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An ultra-high performance liquid chromatography (U-HPLC) method for the determination of lutein in the infant formula milk powder was developed. The sample was extracted with acetone and defatted using freezing centrifugation method. The U-HPLC separation was achieved using a YMC Carotenoid C30 column (150 mm×4.6 mm, 3 μm) with the mixture of methanol/methyl tert-butyl ether (70:30, v/v) as the mobile phase under isocratic elution. The flow rate was 0.5 mL/min and the column oven temperature was 25 ℃. The injection volume was 5 μL. It was detected on a photodiode array detector at a wavelength of 445 nm. The results showed that the linear range was 20-500 μg/L (r=0.999 9), and the limit of quantification was 20 μg/L. The mean recoveries of lutein varied from 97.9% to 104.4% spiked at 50, 250 and 2000 μg/kg. The established method is simple, accurate and sensitive for the rapid determination of lutein in infant formula milk powder.
-
-
- [1]
-
[2]
[2] Kijlstra A, Tian Y, Kelly E R, et al. Prog Retin Eye Res, 2012, 31(4): 303

-
[3]
[3] Canfield L M, Clandinin M T, Davies D P, et al. Eur J Nutr, 2003, 42(3): 133
-
[4]
[4] Ministry of Health. 2007 No. 8 Bulletin of the Ministry of Health of the People's Republic of China (卫生部. 中华人民共和国卫生部公告2007年第8号). (2007-04-11). http://www.moh.gov.cn/mohbgt/pw10706/200804/18897.shtml
- [5]
-
[6]
[6] Masino F, Ulrici A, Antonelli A. Eur Food Res Technol, 2008, 226: 569

-
[7]
[7] GB/T 23209-2008
-
[8]
[8] Shan Y, Yang J B, E L M, et al. Food Science and Technology (单艺, 杨金宝, 鄂来明, 等. 食品科技), 2011, 36(10): 276
-
[9]
[9] Huang B F, Zheng K, Tan Y, et al. Chinese Journal of Health Laboratory Technology (黄百芬, 郑凯, 谭莹, 等. 中国卫生检验杂志), 2012, 22(9): 2043
-
[10]
[10] Chen W Q, Wang J, Huang L Y, et al. Journal of Analytical Science (陈万勤, 王瑾, 黄丽英, 等. 分析科学学报), 2013, 29(1): 109
-
[11]
[11] Kelm M A, Flanagan V P, Pawlosky R J, et al. Lipids, 2001, 36(11): 1277

-
[12]
[12] Song B J, Jouni Z E, Ferruzzi M G. Nutrition, 2013, 29(1): 195

-
[13]
[13] Young J C, Abdel-Aal E S M, Rabalski I, et al. J Agric Food Chem, 2007, 55: 4965

-
[14]
[14] Subagio A, Wakaki H, Morita N. Biosci Biotechnol Biochem, 1999, 63(10): 1784

-
[15]
[15] Du G C, Guo Q Q, Teng D W, et al. Fine Chemicals (杜桂彩, 郭群群, 滕大为, 等. 精细化工), 2004, 21(6): 447
-
[16]
[16] Chen Z H, Lei T. Food Science (陈志行, 雷婷. 食品科学), 2004, 25(6): 88
-
[17]
[17] Li D J, Fang G Z, Liu C Q, et al. Chemistry and Industry of Forest Products (李大婧, 方桂珍, 刘春泉, 等. 林产化学与工业), 2007, 27(1): 112
-
[18]
[18] Huang F F, Zhao J Y. China Dairy Industry (黄菲菲, 赵嘉胤. 中国乳品工业), 2010, 38(6): 54
-
[19]
[19] Gao Y C, Yin L L, Chen L, et al. China Dairy Industry (高迎春, 尹伶灵, 陈玲, 等. 中国乳品工业), 2012, 40(4): 48
-
[20]
[20] Mitri K, Shegokar R, Gohla S, et al. Int J Pharm, 2011, 420(1): 141

-
[21]
[21] Shi S Z, Chen F S. Journal of Henan University of Technology: Natural Science Edition (史双枝, 陈复生. 河南工业大学学报: 自然科学版), 2009, 30(3): 16
- [22]
-
[23]
[23] Hui B D, Zhang X, Wen J. Food Science (惠伯棣, 张西, 文镜. 食品科学), 2005, 26(1): 264
-
[24]
[24] Yu S X, Feng S, Sun Y S, et al. Chinese Journal of Chromatography (于淑新, 冯思, 孙元社, 等. 色谱), 2011, 29(3): 239

-
-
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