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首页> 外文期刊>Analytical and bioanalytical chemistry >Comparison of copper and zinc in vitro bioaccessibility from cyanobacteria rich in proteins and a synthetic supplement containing gluconate complexes: LC-MS mapping of bioaccessible copper complexes
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Comparison of copper and zinc in vitro bioaccessibility from cyanobacteria rich in proteins and a synthetic supplement containing gluconate complexes: LC-MS mapping of bioaccessible copper complexes

机译:富含蛋白质的蓝细菌和含有葡萄糖酸盐复合物的合成补品对铜和锌的体外生物利用度的比较:生物可利用铜复合物的LC-MS绘图

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An analytical procedure was proposed to estimate bioaccessibility of copper and zinc in Spirulina Pacifica tablets with respect to that of copper and zinc in gluconate complexes. Spirulina is the common name for diet supplements produced primarily from two species of cyanobacteria, namely Arthrospira platensis and Arthrospira maxima. Spirulina tablets are an excellent source of proteins, vitamins and minerals. To obtain information about the bioavailability of these elements, an in vitro bioaccessibility test was performed by application of a two-step protocol which simulated the gastric (pepsin) and intestinal (pancreatin) digestion. The species obtained were investigated by size exclusion chromatography on a chromatograph coupled to a mass spectrometer with inductively coupled plasma (SEC-ICP-MS) and an on-capillary liquid chromatograph coupled to an electrospray mass spectrometer (mu-HPLC-ESI-MS). Both copper and zinc were found to be highly bioaccessible in Spirulina tablets (90-111 %) and those containing gluconate complexes (103 % for Cu and 62 % for Zn). In Spirulina tablets, copper was found to form two types of complex: (1) polar ones with glycine and aspartic acid and (2) more hydrophobic ones containing amino acids with cyclic hydrocarbons (phenylalanine, histidine, proline and tyrosine). Zinc and copper were also proved to form complexes during the digestion process with products of pepsin digestion, but the stability of these complexes is lower than that of the complexes formed in Spirulina. The results proving the involvement of proteins in the enhancement of copper and zinc bioaccessibility will be useful for the design of new copper and zinc supplements.
机译:提出了一种分析方法来估计螺旋藻片中铜和锌相对于葡萄糖酸盐复合物中铜和锌的生物可及性。螺旋藻是主要由两种蓝细菌(即节肢螺旋藻和最大节杆菌)生产的膳食补充剂的通用名称。螺旋藻片是蛋白质,维生素和矿物质的极佳来源。为了获得有关这些元素的生物利用度的信息,通过应用模拟胃(胃蛋白酶)和肠(胰酶)消化的两步方案进行了体外生物利用度测试。通过尺寸排阻色谱法在与电感耦合等离子体质谱仪相连的色谱仪(SEC-ICP-MS)和在电喷雾质谱仪上耦合的毛细管上液相色谱仪(mu-HPLC-ESI-MS)上研究获得的物质。在螺旋藻片中(90-111%)和含有葡萄糖酸盐复合物的铜和锌(铜为103%,锌为62%),铜和锌都具有很高的生物可利用性。在螺旋藻片剂中,发现铜形成两种类型的复合物:(1)与甘氨酸和天冬氨酸的极性复合物,(2)含氨基酸与环烃(苯丙氨酸,组氨酸,脯氨酸和酪氨酸)的疏水性更强的复合物。还证明锌和铜在消化过程中与胃蛋白酶消化的产物形成复合物,但这些复合物的稳定性低于螺旋藻中形成的复合物的稳定性。证明蛋白质参与提高铜和锌生物可及性的结果将对设计新的铜和锌补充剂有用。

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