沃罗涅日地区普通蓍草中常量和微量元素积累的特点

N. Dyakova
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The microelement of medicinal plant raw materials was determined by mass spectroscopy with inductively coupled plasma on the ELAN-DRC device. Results. It was found that the content of microelement complex is 3.28%, 59 elements were determined. Macronutrients account for 93.78% of the total elemental composition of common yarrow herb. The basis of macronutrients is potassium (more than 14 mg/g), and calcium (more than 10 mg/g). Essential microelements make up 5.51% of the total mineral complex of the common yarrow herb. Among them the highest content was noted for silicon (more than 1.6 mg/g), iron (more than 0.1 mg/g). The content of the rationed heavy metals and arsenic in the herb common yarrow corresponds to the requirements of the normative documentation. The proportion of toxic and understudied elements in the total mineral complex of common yarrow herb is 0.71%. The highest content was noted for aluminum (116.5 µg/g), strontium (81.6 µg/g), titanium (12.5 µg/g), rubidium (9.5 µg/g), barium (9.31 µg/g). The high ability of common yarrow herb to accumulate phosphorus, potassium, copper, zinc, molybdenum, strontium from soil was shown. Conclusion. 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引用次数: 0

摘要

野生原料的金属有机形态在植物体内具有较高的效率和生物利用度,因此对其元素组成的研究具有现实意义。沃罗涅日地区药用植物原料中元素含量的现有数据表明,研究主要针对少数元素进行,这无法确定植物的全部化学成分,也无法描述植物中整个矿物复合物积累的特异性。目标。本研究旨在研究沃罗涅日地区天然草本植物中常见蓍草中常量元素和微量元素的积累情况。材料和方法。药用植物原料的制备是在沃罗涅日州自然生物圈保护区植物开花期间进行的。采用电感耦合等离子体质谱法在ELAN-DRC装置上测定了药用植物原料中的微量元素。结果。微量元素络合物的含量为3.28%,共测定了59种元素。常量营养素占普通蓍草总元素组成的93.78%。常量营养素的基础是钾(超过14毫克/克)和钙(超过10毫克/克)。必需微量元素占普通蓍草总矿物质复合物的5.51%。其中硅(超过1.6 mg/g)、铁(超过0.1 mg/g)含量最高。普通蓍草中重金属和砷的定量含量符合规范文件的要求。普通蓍草总矿物复合体中有毒元素和未研究元素所占比例为0.71%。铝(116.5µg/g)、锶(81.6µg/g)、钛(12.5µg/g)、铷(9.5µg/g)、钡(9.31µg/g)的含量最高。结果表明,普通蓍草对土壤中磷、钾、铜、锌、钼、锶具有较高的富集能力。结论。获得的数据非常有趣,可以作为进一步研究的基础,目的是将其结果用于医疗和制药实践,以创造药物和生物活性添加剂,以纠正人体内元素含量的生理规范。
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Peculiarities of macroand microelement accumulation in common yarrow herb of the Voronezh region
Researches of elemental composition of wild-growing raw materials are actual and significant because of high efficiency and bioavailability of their metal-organic forms contained in plants. Available data on the content of elements in medicinal plant raw materials of the Voronezh region showed that studies are conducted mainly on a few elements, which does not allow to determine the full chemical composition of plants and to describe the specificity of accumulation of the whole complex of minerals in them. Objective. The aim of the investigation was to study the accumulation of macro- and microelements in common yarrow herb of natural phytocenosis of the Voronezh region. Materials and methods. Preparation of medicinal plant raw materials was carried out during the flowering of the plant in the Voronezh State Natural Biosphere Reserve. The microelement of medicinal plant raw materials was determined by mass spectroscopy with inductively coupled plasma on the ELAN-DRC device. Results. It was found that the content of microelement complex is 3.28%, 59 elements were determined. Macronutrients account for 93.78% of the total elemental composition of common yarrow herb. The basis of macronutrients is potassium (more than 14 mg/g), and calcium (more than 10 mg/g). Essential microelements make up 5.51% of the total mineral complex of the common yarrow herb. Among them the highest content was noted for silicon (more than 1.6 mg/g), iron (more than 0.1 mg/g). The content of the rationed heavy metals and arsenic in the herb common yarrow corresponds to the requirements of the normative documentation. The proportion of toxic and understudied elements in the total mineral complex of common yarrow herb is 0.71%. The highest content was noted for aluminum (116.5 µg/g), strontium (81.6 µg/g), titanium (12.5 µg/g), rubidium (9.5 µg/g), barium (9.31 µg/g). The high ability of common yarrow herb to accumulate phosphorus, potassium, copper, zinc, molybdenum, strontium from soil was shown. Conclusion. The data obtained are of great interest and can serve as a basis for further research with the aim of using their results in medical and pharmaceutical practice to create drugs and biologically active additives for correcting physiological norms of element content in the human body.
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