Determination of Essential and Non-Essential Elements in Dietary Supplements by Microwave-Induced Plasma Optical Emission Spectrometry: Method Development and Study of Non-Spectral Interferences

IF 1.1 Q4 CHEMISTRY, ANALYTICAL Brazilian Journal of Analytical Chemistry Pub Date : 2023-05-15 DOI:10.30744/brjac.2179-3425.ar-129-2022
P. Mello, G. Bitencourt, T. Berón, Aline Müller
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Abstract

Dietary supplements have been used to overcome nutritional deficiencies and the knowledge concerning essential and non-essential elements is an important issue. In this work the suitability of microwave-induced plasma optical emission spectrometry (MIP OES) for the determination of essential and non-essential elements in dietary supplements was evaluated. Twelve dietary supplement samples of several classifications (vitamins/minerals, minerals, amino acids, and botanicals) were digested in their whole form for determination of essential (Ca, Co, Cu, Fe, K, Mg, Mn, Mo, Na, and Zn) and non-essential (Ag, Al, B, Ba, Be, Cd, Cr, La, Li, Ni, Pb, Sr, and V) elements by MIP OES. Potential non-spectral interferences by common concomitants (C, S, K, Na, and Ca) were evaluated, as well as those by residual acidity of digests. The study of non-spectral interferences showed that a signal suppression effect is observed with higher concentrations of Ca, Na, and K. Relatively good robustness was observed considering the presence of C and S, as well as residual HNO3. The limits of quantification (LOQs) were dependent on the sample mass used for decomposition (from 0.6 to 1.6 g in the commercial product) and on the minimum dilution factor. From the results, there was a prevalence of essential and non-essential elements in vitamins and minerals, minerals, and botanicals-based dietary supplements, whereas lower concentrations were found in the dietary supplements based on amino acids. All elements were in a concentration below the recommended dietary allowances (RDAs), exception for those with the concentration intentionally higher. Accuracy of results by MIP OES was evaluated by using standard reference materials (SRM) NIST 1572 and NIST 1575a. In addition, results showed no statistical difference by comparison with those by ICP OES. MIP OES proved to be a suitable technique for the determination of metals in dietary supplements, being a feasible alternative for the quality control of these products.
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微波诱导等离子体发射光谱法测定膳食补充剂中必需和非必需元素:无光谱干扰方法的建立和研究
膳食补充剂已被用于克服营养缺乏和知识的基本和非必需元素是一个重要的问题。本文评价了微波等离子体发射光谱法(MIP OES)测定膳食补充剂中必需元素和非必需元素的适用性。采用MIP OES对12种不同类别(维生素/矿物质、矿物质、氨基酸和植物药)的膳食补充剂样品进行整体消化,测定必需元素(Ca、Co、Cu、Fe、K、Mg、Mn、Mo、Na和Zn)和非必需元素(Ag、Al、B、Ba、Be、Cd、Cr、La、Li、Ni、Pb、Sr和V)的含量。评估了常见伴随物(C, S, K, Na和Ca)以及消化物残留酸度的潜在非光谱干扰。对非光谱干扰的研究表明,在Ca、Na、k浓度较高的情况下,可以观察到信号抑制效果。考虑到C、S的存在,以及残留的HNO3,具有较好的鲁棒性。定量限(loq)取决于用于分解的样品质量(在商业产品中为0.6至1.6 g)和最小稀释系数。从结果来看,维生素和矿物质、矿物质和植物性膳食补充剂中普遍存在必需元素和非必需元素,而以氨基酸为基础的膳食补充剂中含量较低。所有元素的浓度都低于推荐膳食允许量(RDAs),除了那些浓度故意较高的元素。采用标准对照品(SRM) NIST 1572和NIST 1575a评价MIP OES测定结果的准确性。结果与ICP OES比较无统计学差异。MIP OES技术是膳食补充剂中金属含量测定的一种有效方法,是膳食补充剂质量控制的一种可行方法。
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CiteScore
1.60
自引率
14.30%
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期刊介绍: BrJAC is dedicated to the diffusion of significant and original knowledge in all branches of Analytical Chemistry, and is addressed to professionals involved in science, technology and innovation projects at universities, research centers and in industry.
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