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Determination of Labile and Structurally Bound Trace Elements of Bone Tissue by Atomic Absorption Spectrometry

机译:原子吸收光谱法测定骨组织的不稳定和结构结合痕量元素

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摘要

A method of chemical separation of the components of bone tissue, based on their selective solubility, with the subsequent determination of trace elements by atomic absorption spectrometry, is proposed. The total concentrations of Mg, Zn, Fe, Sr, Cu, Mn, and Pb, and the concentrations of these elements in solutions with pH 6.5, 10, and 12 after their interaction with the bone preparation were determined. The obtained concentrations of the soluble fractions of trace elements are critically analyzed taking into account the possible reactions of formation and precipitation in alkaline solutions of new insoluble phases. Based on the obtained data, the ability of elements to form mobile fractions in the composition of bone tissue can be represented as follows: Mg > Zn Fe > Sr > Cu. At the same time, noncrystalline Mg is predominantly localized in water or biological liquids of the bone, and noncrystalline Zn in the alkali-soluble organic component of the bone. Pb and Mn are practically not detected in solutions, i.e., localized in the crystalline phase.
机译:提出了一种基于其选择性溶解度,随后通过原子吸收光谱法测定微量元素的骨组织成分的化学分离方法。测定与骨制剂相互作用后,测定Mg,Zn,Fe,Sr,Cu,Mn和Pb的总浓度,Mn,Sr,Cu,Mn和Pb的浓度,与pH6.5,10和12中的溶液中的浓度。考虑到新的不溶性阶段碱性溶液中的形成和沉淀的可能反应,所以所得可溶性级数的可溶性部分的浓度分析。基于所获得的数据,元素在骨组织组合物中形成移动级分的能力可以如下:Mg> Zn Fe> Sr> Cu。同时,非晶体Mg主要是骨的水或生物液体中的,并且在骨的碱可溶性有机组分中的非晶体Zn。 Pb和Mn实际上未在溶液中未检测到,即晶相的局部化。

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