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Mineral part of deer antler as production basis for biologically active substances

机译:鹿茸的矿物质部分作为生物活性物质的生产基础

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An analysis of the structure and chemical composition of the deer antlers of the Altai is carried out. It is shown that the mineral substance of soft antlers is structurally x-ray amorphous with gradual crystallization of hydroxyapatite as antlers become ossified with age or when the analyzed region approaches the frontal bone. The internal structure of the antler is represented by a highly porous material with an average pore diameter of about 100 μ m in the presence of pores with a diameter less than 10 nm. According to the chemical composition, the mineral part of the young 2-3 terminal antlers as compared to the ordinary bone is substantially impoverished with calcium and phosphorus, but is enriched with such impurities as silicon, aluminum, and alkaline elements. This hampers the crystallization of hydroxyapatite and forms distinct structures. On the basis of the data obtained, a model for the formation of antlers is proposed, which includes the formation at the early stages in the mineral part of zeolite-like x-ray amorphous structures that ensure the catalytic synthesis and accumulation of biologically active substances, in particular, lipids. With the aging of the antlers and the subsequent addition of calcium, a hydroxyapatite mineral corresponding to the composition of the ordinary bone is formed.
机译:对阿尔泰鹿角的结构和化学成分进行了分析。结果表明,随着年龄的增长或当分析区域接近额骨时,鹿茸的矿物质在结构上是X射线无定形的,且羟基磷灰石会逐渐结晶。鹿角的内部结构由高度多孔的材料代表,在存在直径小于10 nm的孔的情况下,平均孔径为约100μm。根据化学组成,与普通骨骼相比,幼小的2-3尾角鹿角的矿物质部分基本上富含钙和磷,但富含硅,铝和碱性元素等杂质。这阻碍了羟基磷灰石的结晶并形成独特的结构。根据获得的数据,提出了一种鹿角形成模型,该模型包括在沸石状X射线无定形结构的矿物部分的早期形成,以确保生物活性物质的催化合成和积累。 ,尤其是脂质。随着鹿角的衰老并随后添加钙,形成了与普通骨骼组成相对应的羟基磷灰石矿物。

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