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从水相和酶介质中解毒 Hg(II):原态与定制化的钙藻酸盐水凝胶。

Detoxification of Hg(II) from aqueous and enzyme media: Pristine vs. tailored calcium alginate hydrogels.

机构信息

Department of Chemistry, University of Calcutta, 92 APC Road, Kolkata 700 009, India.

Department of Chemistry, University of Calcutta, 92 APC Road, Kolkata 700 009, India.

出版信息

Int J Biol Macromol. 2016 Oct;91:165-73. doi: 10.1016/j.ijbiomac.2016.05.049. Epub 2016 May 18.

Abstract

Calcium alginate (CA) hydrogels were tailored using phenolic compounds (PC) like, thymol, morin, catechin, hesperidin, during their preparation. The PC incorporated gels show modified surface features as indicated by scanning electron microscopic images (SEM). The rheological studies show that excepting the hesperidin incorporated gels all the other kinds including calcium alginate pristine have similar mechanical strength. The hesperidine incorporated CA gels had the maximum capacity to adsorb Hg. The Freundlich adsorption isotherms show higher values of adsorption capacity for all PC incorporated CA beads than the pristine CA (PCA). The hesperidin incorporated CA gels were found to show the best adsorption condition at neutral pH and an optimum contact time of 2.5h at 25°C. Considering the possibility of ingested Hg detoxification from human alimentary tract, the hesperidin and morin incorporated CA beads were further modified through incorporation of cod liver oil as the digestion time of fat in stomach is higher. In vitro uptake capacities of Hg in pepsin and pancreatin containing enzyme media were studied with hesperidin and morin incorporated beads and their corresponding fat incorporated beads also. In the pepsin medium, there was no uptake by hesperidin and fat-hesperidin incorporated beads, which is possibly due to the higher acidity of the medium. But in pancreatin medium Hg was taken up by both kinds of beads. Morin and morin-fat incorporated beads were efficient to uptake Hg from both the pepsin and pancreatin medium. The tailored CA beads may therefore serve as efficient scaffolds to rescue Hg ingested individuals.

摘要

海藻酸钙 (CA) 水凝胶是通过在制备过程中加入酚类化合物(PC),如百里香酚、桑色素、儿茶素、橙皮苷等来进行定制的。扫描电子显微镜图像(SEM)表明,加入 PC 的凝胶表现出了改良的表面特征。流变学研究表明,除了橙皮苷加入的凝胶外,其他所有种类的凝胶,包括原始的海藻酸钙,都具有相似的机械强度。橙皮苷加入的 CA 凝胶具有最大的吸附汞能力。Freundlich 吸附等温线表明,所有加入 PC 的 CA 珠都比原始 CA(PCA)具有更高的吸附容量值。橙皮苷加入的 CA 凝胶在中性 pH 和 25°C 下 2.5 小时的最佳接触时间下显示出最佳的吸附条件。考虑到从人体消化道中解毒摄入的汞的可能性,通过将鱼肝油掺入到 CA 珠中来进一步修饰橙皮苷和桑色素加入的 CA 珠,因为胃中脂肪的消化时间更长。在含有胃蛋白酶和胰酶的酶介质中,研究了橙皮苷和桑色素加入的珠及其相应的脂肪加入的珠对 Hg 的体外摄取能力。在胃蛋白酶介质中,橙皮苷和脂肪-橙皮苷加入的珠没有摄取 Hg,这可能是由于介质的酸度较高。但是在胰酶介质中,两种珠都能摄取 Hg。橙皮苷和橙皮苷-脂肪加入的珠能有效地从胃蛋白酶和胰蛋白酶介质中摄取 Hg。因此,定制的 CA 珠可能作为有效的支架来拯救摄入 Hg 的个体。

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