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采用超细颗粒处理系统制备嗜热链球菌 IFFI 6038 微胶囊的评价。

Evaluation of Streptococcus thermophilus IFFI 6038 Microcapsules Prepared Using an Ultra-fine Particle Processing System.

机构信息

School of Pharmaceutical Sciences, Sun Yat-Sen University, No.132, Waihuan East Road, Guangzhou Higher Education Mega Center, Guangzhou, 510006, People's Republic of China.

Institute for Biomedical and Pharmaceutical Sciences, Guangdong University of Technology, Guangzhou, 510006, People's Republic of China.

出版信息

AAPS PharmSciTech. 2018 Apr;19(3):1020-1028. doi: 10.1208/s12249-017-0907-x. Epub 2017 Nov 6.

Abstract

Microencapsulation technology has the potential to protect probiotics and to deliver them to the gut, and extrusion is one of the most commonly used methods. However, the rather large diameters of 1~5 mm produced tend to cause oral grittiness and result in low compliance. In this article, Streptococcus thermophilus IFFI 6038 (IFFI 6038) microcapsules were prepared using an ultra-fine particle processing system (UPPS) previously developed by this research group. IFFI 6038 suspension was pumped by a peristaltic pump to the feeding inlet nozzle and then dispersed into micro-droplets by a rotating disk, followed by solidification. Trehalose (16%) was used as a cryoprotectant to protect IFFI 6038 from damage by lyophilization used in the process. Alginate (3%) resulted in IFFI 6038 microcapsules with a median particle diameter (d ) of 29.32 ± 0.12 μm and a span value of 1.00 ± 0.02, indicating uniform particle size distribution. To evaluate the potential of microencapsulation in protecting IFFI 6038 from the gastric conditions, the viable counts of IFFI 6038 following incubation of IFFI 6038 microcapsules in simulated gastric juices for 120 min were determined and compared with those of free IFFI 6038. The stability of microencapsulated IFFI 6038 upon storage for 3 months at 4°C and 25°C, respectively, was also determined. The results showed that microcapsules prepared by UPPS protected IFFI 6038 from gastric conditions. The results from a rat diarrhea model showed that microcapsules prepared by the UPPS method were able to effectively improve the diarrhea conditions in rats.

摘要

微胶囊技术具有保护益生菌并将其递送到肠道的潜力,挤出法是最常用的方法之一。然而,所产生的 1~5mm 相当大的直径往往会导致口腔粗糙感,从而导致低顺应性。在本文中,使用本研究小组先前开发的超微颗粒处理系统 (UPPS) 制备了嗜热链球菌 IFFI 6038 (IFFI 6038) 微胶囊。IFFI 6038 悬浮液通过蠕动泵泵送到进料入口喷嘴,然后通过旋转盘分散成微滴,随后固化。海藻糖(16%)用作保护剂,以防止 IFFI 6038 在冻干过程中受到损伤。海藻酸钠(3%)导致 IFFI 6038 微胶囊的中值粒径(d)为 29.32±0.12μm,跨度值为 1.00±0.02,表明粒径分布均匀。为了评估微胶囊化在保护 IFFI 6038 免受胃条件影响的潜力,在模拟胃液中孵育 120 分钟后,测定 IFFI 6038 微胶囊中 IFFI 6038 的活菌数,并与游离 IFFI 6038 进行比较。还分别确定了在 4°C 和 25°C 下储存 3 个月时微囊化 IFFI 6038 的稳定性。结果表明,UPPS 制备的微胶囊可以保护 IFFI 6038 免受胃条件的影响。大鼠腹泻模型的结果表明,UPPS 方法制备的微胶囊能够有效改善大鼠的腹泻状况。

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