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含二胺氧化酶的羧甲基淀粉/海藻酸盐微球用于肠道靶向

Carboxymethyl starch/alginate microspheres containing diamine oxidase for intestinal targeting.

作者信息

Blemur Lindsay, Le Tien Canh, Marcocci Lucia, Pietrangeli Paola, Mateescu Mircea Alexandru

机构信息

Department of Chemistry & Centre BioMed, Université du Québec à Montreal, Montreal, QC, Canada.

Department of Biochemical Sciences, "A. Rossi-Fanelli," University of Rome "La Sapienza,", Rome, Italy.

出版信息

Biotechnol Appl Biochem. 2016 May;63(3):344-53. doi: 10.1002/bab.1369. Epub 2015 Jun 29.

Abstract

The association of carboxymethyl starch (CMS) and alginate is proposed as a novel matrix for the entrapment of bioactive agents in microspheres affording their protection against gastrointestinal degradation. In this study, the enzyme diamine oxidase (DAO) from white pea (Lathyrus sativus) was immobilized by inclusion in microspheres formed by ionotropic gelation of CMS/alginate by complexation with Ca(2+) . The association of CMS to alginate generated a more compact structure presenting a lesser porosity, thus decreasing the access of gastric fluid inside the microspheres and preventing the loss of entrapped enzyme. Moreover, the immobilized enzyme remained active and was able to oxidize the polyamine substrates even in the presence of degrading proteases of pancreatin. The inclusion yield in terms of entrapped protein was of about 82%-95%. The DAO entrapped in calcium CMS/alginate beads retained up to 70% of its initial activity in simulated gastric fluid (pH 2.0). In simulated intestinal fluid (pH 7.2) with pancreatin, an overall retention of 65% of activity for the immobilized DAO was observed over 24 H, whereas in similar conditions the free enzyme was totally inactivated. Our project proposes the vegetal DAO as an antihistaminic agent orally administered to treat food histaminosis and colon inflammation.

摘要

羧甲基淀粉(CMS)与海藻酸盐的结合被提议作为一种新型基质,用于在微球中包裹生物活性剂,使其免受胃肠道降解。在本研究中,通过与Ca(2+)络合,将白豌豆(山黧豆)中的二胺氧化酶(DAO)通过离子凝胶法包埋在由CMS/海藻酸盐形成的微球中进行固定。CMS与海藻酸盐的结合产生了一种更致密的结构,孔隙率更低,从而减少了胃液进入微球内部的机会,并防止了包埋酶的损失。此外,固定化酶保持活性,即使在存在胰蛋白酶降解蛋白酶的情况下也能够氧化多胺底物。以包埋蛋白计的包封率约为82%-95%。包埋在钙CMS/海藻酸盐珠中的DAO在模拟胃液(pH 2.0)中保留了高达70%的初始活性。在含有胰蛋白酶的模拟肠液(pH 7.2)中,固定化DAO在24小时内的活性总体保留率为65%,而在类似条件下,游离酶完全失活。我们的项目提出将植物DAO作为一种口服抗组胺剂,用于治疗食物组胺中毒和结肠炎症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad47/5034832/3318c48d8a08/BAB-63-344-g001.jpg

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