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1.天津农学院农学与资源环境学院,天津 300392
2.天津农学院食品科学与生物工程学院,天津 300392
*黄海东(1972-),男,浙江台州人,教授,研究方向为植物内生菌、微生物多糖。E-mail:hdhuang@tjau.edu.cn
纸质出版日期:2023-01-20,
收稿日期:2022-04-18,
修回日期:2022-05-22,
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陆贺港, 李晓雁, 田添, 杨红澎, 吴疆, 黄海东. 氯化钙/三赞胶微胶囊的制备及其对核黄素的控制释放[J]. 高分子通报, 2023,36(1):82-90.
LU He-gang, LI Xiao-yan, TIAN Tian, YANG Hong-peng, WU Jiang, HUANG Hai-dong. Preparation and Controlled Release of Riboflavin in Sanxan Microcapsules by Calcium Chloride Added[J]. Polymer Bulletin, 2023,36(1):82-90.
陆贺港, 李晓雁, 田添, 杨红澎, 吴疆, 黄海东. 氯化钙/三赞胶微胶囊的制备及其对核黄素的控制释放[J]. 高分子通报, 2023,36(1):82-90. DOI: 10.14028/j.cnki.1003-3726.2023.01.007.
LU He-gang, LI Xiao-yan, TIAN Tian, YANG Hong-peng, WU Jiang, HUANG Hai-dong. Preparation and Controlled Release of Riboflavin in Sanxan Microcapsules by Calcium Chloride Added[J]. Polymer Bulletin, 2023,36(1):82-90. DOI: 10.14028/j.cnki.1003-3726.2023.01.007.
为实现核黄素在肠道中的可控释放
本研究利用三赞胶的pH 响应性
使用滴球法制备三赞胶水凝胶微胶囊
以核黄素为负载药物
氯化钙为调控因子
研究了微胶囊的物性与释放特性。结果表明:0.3%三赞胶在0.06 mol/L盐酸固定液中可以形成稳定的凝胶结构
添加氯化钙后微胶囊的硬度增加但弹性降低。氯化钙添加量由0逐渐增加至10%
三赞胶微胶囊在十二指肠中的释放率无显著变化
空肠释放率由42.5%逐渐降低至24.1%
在氯化钙添加量2%及以上时可在回肠释放
且释放率由21.6%逐渐降低至14.9%。粘度特性与SEM 图像分析表明
添加氯化钙提高三赞胶溶液的粘度
降低微胶囊的孔隙度是控制核黄素释放的主要原因。本研究通过调整三赞胶微胶囊中的氯化钙添加量
实现了核黄素在肠道中的可控释放
表明可控释三赞胶微胶囊在口服递送领域具有广阔的应用前景。
Controlled release hydrogel was an ideal delivery carrier. In order to achieve controlled release of riboflavin in intestinal tract
in this work
sanxan microcapsules was prepared using an extrusion dripping method based on the pH-responsiveness of sanxan. Physical and
in vitro
release properties of sanxan microcapsules was measured
where riboflavin was used as loading drug and calcium chloride as regulatory factor. The results showed that stable sanxan hydrogel was prepared by 0.06 mol/L HCl fixed solution and 0.3% sanxan solution
and the toughness of microcapsules increased but the elasticity decreased after calcium chloride was added. There was no significant change in the release rate of sanxan microcapsules in duodenum
and the release rate of jejunum decreased from 42.5% to 24.1%
when the addition of calcium chloride increased from 0% to 10%. Ileum release occurred when calcium chloride supplemental level was 2% or above
and the release rate gradually decreased from 21.6% to 14.9%. The viscosity characteristics and SEM image analysis showed that the viscosity of sanxan solution increased and the porosity of microcapsules was reduced with calcium chloride added
which was the main reason to control the release of riboflavin. Controlled release of riboflavin in intestinal tract was achieved by adjusting the addition amount of calcium chloride in sanxan microcapsules
indicating that controlled release of sanxan microcapsules has broad application prospects for oral delivery.
三赞胶氯化钙微胶囊核黄素控释
SanxanCaCl2pH-ResponsivenessRiboflavinControl release
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