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载羧甲基几丁质的植物源中空微胶囊用于β-半乳糖苷酶的递送和稳定。

Carboxymethylpachymaran entrapped plant-based hollow microcapsules for delivery and stabilization of β-galactosidase.

机构信息

College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Food Funct. 2019 Aug 1;10(8):4782-4791. doi: 10.1039/c9fo00649d. Epub 2019 Jul 17.

Abstract

β-Galactosidase (β-Gal) as a dietary supplement can alleviate symptoms of lactose intolerance. However, β-Gal is deactivated due to the highly acidic conditions and proteases in the digestive tract. In this work, β-Gal was encapsulated into L. clavatum sporopollenin exine capsules (SECs) to fabricate an oral-controlled release system and increase the stability of β-Gal in the digestive tract. The SEC extraction process was optimized. A 3-hour vacuum loading was determined as the optimal loading time. Five different initial ratios of SECs : β-Gal were optimized with the maximum enzyme retention rate reaching 79.40 ± 1.96%. Furthermore, β-Gal-loaded SECs entrapped in carboxymethylpachymaran (CMP) could control the release of β-Gal under simulated gastrointestinal conditions (SGC). The optimal enzyme retention rate reached 65.33 ± 1.46% within 24 h under SGC. Collectively, these results indicated that the entrapped SECs could be used as an effective oral delivery vehicle of β-Gal to improve its performance as a dietary supplement in the digestion of lactose.

摘要

β-半乳糖苷酶(β-Gal)作为膳食补充剂可以缓解乳糖不耐受的症状。然而,由于消化道中的高度酸性条件和蛋白酶,β-Gal 会失活。在这项工作中,β-Gal 被包封到裂褶菌孢子外壁体(SECs)中,以构建口服控释系统并提高β-Gal 在消化道中的稳定性。优化了 SEC 的提取工艺。确定 3 小时真空加载为最佳加载时间。优化了 5 种不同初始 SECs:β-Gal 比例,最大酶保留率达到 79.40±1.96%。此外,包封在羧甲基几丁质(CMP)中的负载β-Gal 的 SEC 可以在模拟胃肠道条件(SGC)下控制β-Gal 的释放。在 SGC 下 24 小时内,最佳酶保留率达到 65.33±1.46%。总的来说,这些结果表明,包封的 SEC 可用作β-Gal 的有效口服递送载体,以提高其作为膳食补充剂在乳糖消化中的性能。

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