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硒膳食补充剂的物种形成;S-(甲基硒代)半胱氨酸及其他硒化合物的形成。

Speciation of selenium dietary supplements; formation of S-(methylseleno)cysteine and other selenium compounds.

作者信息

Amoako Prince O, Uden Peter C, Tyson Julian F

机构信息

Department of Chemistry, University of Massachusetts Amherst, 710 N. Pleasant St., Amherst, MA 01003-9336, USA.

出版信息

Anal Chim Acta. 2009 Oct 12;652(1-2):315-23. doi: 10.1016/j.aca.2009.08.013. Epub 2009 Aug 19.

DOI:10.1016/j.aca.2009.08.013
PMID:19786198
Abstract

Speciation of selenium is of interest because it is both essential and toxic to humans, depending on the species and the amount ingested. Following indications that selenium supplementation could reduce the incidence of some cancers, selenium-enriched yeast and other materials have been commercialized as supplements. Most dramatically however, the SELECT trial that utilized l-selenomethionine as the active supplement was terminated in 2008 and there is much debate regarding both the planning and the results of efficacy studies. Further, since dietary supplements are not regulated as pharmaceuticals, there are concerns about the quality, storage conditions, stability and selenium content in selenium supplements. Enzymatic hydrolysis enabled selenium speciation profiles to be obtained by high performance liquid chromatography with inductively coupled plasma mass spectrometry (HPLC-ICP-MS) and following derivatization gas chromatography with atomic emission detection (GC-AED). Coated fiber solid phase microextraction (SPME) was used to extract volatile selenium species for determination by GC-AED and GC-MS. Similar speciation patterns were observed between yeast-based supplements subject to extended storage and those heated briefly at elevated temperatures. All the yeast-based supplements and one yeast-free supplement formed S-(methylseleno)cysteine on heating. Evidence was obtained in support of the hypotheses that S-(methylseleno)cysteine is formed from a reaction between dimethyldiselenide and cysteine or cystine.

摘要

硒的形态研究备受关注,因为根据其形态和摄入量的不同,硒对人类既必不可少又具有毒性。有迹象表明补充硒可以降低某些癌症的发病率,之后富硒酵母和其他物质已作为补充剂商业化。然而,最引人注目的是,使用L-硒代蛋氨酸作为活性补充剂的SELECT试验于2008年终止,关于功效研究的规划和结果存在诸多争议。此外,由于膳食补充剂不像药品那样受到监管,人们对硒补充剂的质量、储存条件、稳定性和硒含量存在担忧。酶解使得通过高效液相色谱-电感耦合等离子体质谱(HPLC-ICP-MS)以及衍生化后的气相色谱-原子发射检测(GC-AED)获得硒的形态分布。采用涂层纤维固相微萃取(SPME)提取挥发性硒形态,通过GC-AED和GC-MS进行测定。在经过长时间储存的酵母基补充剂和在高温下短暂加热的酵母基补充剂之间观察到相似的形态模式。所有酵母基补充剂和一种无酵母补充剂在加热时都会形成S-(甲基硒代)半胱氨酸。有证据支持以下假设:S-(甲基硒代)半胱氨酸是由二甲基二硒化物与半胱氨酸或胱氨酸之间的反应形成的。

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