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Trace and mineral elements in royal jelly and homeostatic effects.

机译:蜂王浆中的微量元素和矿物质元素以及体内平衡作用。

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Royal jelly from Apis mellifera is a highly active natural biological substance and is probably one of the most interesting raw substances in natural product chemistry. Trace elements play a key role in the biomedical activities associated with royal jelly, as these elements have a multitude of known and unknown biological functions. For this reason concentrations of 28 trace (Al, Ba, Sr, Bi, Cd, Hg, Pb, Sn, Te, Tl, W, Sb, Cr, Ni, Ti, V, Co, Mo) and mineral (P, S, Ca, Mg, K, Na, Zn, Fe, Cu, Mn) elements were systematically investigated in botanically and geologically defined royal jelly samples. In addition, concentrations of 14 trace elements were measured in the associated honey samples--honey being the precursor of royal jelly. Concentrations of K, Na, Mg, Ca, P, S, Cu, Fe, Zn, Al, Ba and Sr in royal jelly were determined by inductively coupled plasma optical emission spectroscopy (ICP-OES), while concentrations of Bi, Cd, Hg, Pb, Sn, Te, Tl, W, Sb, Cr, Mn, Ni, Ti, V, Co and Mo in royal jelly were determined by double focusing magnetic sector field inductively coupled plasma mass spectrometry (SF-ICP-MS). In the honey samples, trace and mineral element concentrations strongly depended on botanical and geological origin, and substantial variation was found. In contrast, the concentrations of trace and mineral elements were highly constant in the associated royal jelly samples. The most important results were the homeostatic adjustments of trace and mineral element concentrations in royal jelly. This effect was evidently produced in the endocrine glands of nurse bees, which are adapted for needs of bee larvae. In conclusion, this research yielded a surprising and completely new finding--that royal jelly, as a form of lactation on the insect level, shows the same homeostatic adjustment as mammalian and human breast milk.
机译:蜜蜂蜜蜂蜂王浆是一种高活性的天然生物物质,可能是天然化学中最有趣的原料之一。微量元素在与蜂王浆有关的生物医学活动中起着关键作用,因为这些元素具有多种已知和未知的生物学功能。因此,含有28种痕量(铝,钡,锶,铋,镉,汞,铅,锡,碲,T,钨,锑,铬,镍,钛,钒,钴,钼)和矿物质(磷,硫,Ca,Mg,K,Na,Zn,Fe,Cu,Mn)元素在植物和地质学确定的蜂王浆样品中进行了系统研究。此外,在相关的蜂蜜样品中还测量了14种微量元素的浓度-蜂蜜是蜂王浆的前身。通过电感耦合等离子体发射光谱法(ICP-OES)测定蜂王浆中K,Na,Mg,Ca,P,S,Cu,Fe,Zn,Al,Ba和Sr的浓度,而Bi,Cd,蜂王浆中的Hg,Pb,Sn,Te,Tl,W,Sb,Cr,Mn,Ni,Ti,V,Co和Mo通过双聚焦磁场扇形电感耦合等离子体质谱法(SF-ICP-MS)测定。在蜂蜜样品中,微量元素和矿物质元素的浓度强烈依赖于植物和地质来源,并且发现了很大的差异。相反,在相关的蜂王浆样品中,微量元素和矿物质元素的浓度高度恒定。最重要的结果是蜂王浆中微量元素和矿物质元素浓度的体内平衡调节。显然,这种效果是在适应蜜蜂幼虫需要的哺乳蜜蜂的内分泌腺中产生的。总之,这项研究产生了令人惊讶且全新的发现-蜂王浆作为昆虫一级的泌乳形式,显示出与哺乳动物和人类母乳相同的体内调节作用。

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