Suppr超能文献

制备具有壳-基质结构的耐酸微胶囊以提高嗜热链球菌IFFI 6038的稳定性

Preparation of Acid-Resistant Microcapsules with Shell-Matrix Structure to Enhance Stability of Streptococcus Thermophilus IFFI 6038.

作者信息

Zhou Huan Bin, Chen Jiashu, Li Shunyi, Zhang Jianpan, Zhu Chun E, Ran Hao, Luo Meihua, Pan Xin, Hu Haiyan, Wu Chuanbin

机构信息

School of Pharmaceutical Sciences, Sun Yat-sen Univ., Guangzhou, 510006, PR, China.

Inst. for Biomedical and Pharmaceutical Sciences, Guangdong Univ. of Technology, Guangzhou, 510006, PR, China.

出版信息

J Food Sci. 2017 Aug;82(8):1978-1984. doi: 10.1111/1750-3841.13774. Epub 2017 Jul 11.

Abstract

Microencapsulation is an effective technology used to protect probiotics against harsh conditions. Extrusion is a commonly used microencapsulation method utilized to prepare probiotics microcapsules that is regarded as economical and simple to operate. This research aims to prepare acid-resistant probiotic microcapsules with high viability after freeze-drying and optimized storage stability. Streptococcus thermophilus IFFI 6038 (IFFI 6038) cells were mixed with trehalose and alginate to fabricate microcapsules using extrusion. These capsules were subsequently coated with chitosan to obtain chitosan-trehalose-alginate microcapsules with shell-matrix structure. Chitosan-alginate microcapsules (without trehalose) were also prepared using the same method. The characteristics of the microcapsules were observed by measuring the freeze-dried viability, acid resistance, and long-term storage stability of the cells. The viable count of IFFI 6038 in the chitosan-trehalose-alginate microcapsules was 8.34 ± 0.30 log CFU g after freeze-drying (lyophilization), which was nearly 1 log units g greater than the chitosan-alginate microcapsules. The viability of IFFI 6038 in the chitosan-trehalose-alginate microcapsules was 6.45 ± 0.09 log CFU g after 120 min of treatment in simulated gastric juices, while the chitosan-alginate microcapsules only measured 4.82 ± 0.22 log CFU g . The results of the long-term storage stability assay indicated that the viability of IFFI 6038 in chitosan-trehalose-alginate microcapsules was higher than in chitosan-alginate microcapsules after storage at 25 °C. Trehalose played an important role in the stability of IFFI 6038 during storage. The novel shell-matrix chitosan-trehalose-alginate microcapsules showed optimal stability and acid resistance, demonstrating their potential as a delivery vehicle to transport probiotics.

摘要

微胶囊化是一种用于保护益生菌免受恶劣条件影响的有效技术。挤压法是一种常用的微胶囊化方法,用于制备益生菌微胶囊,该方法被认为经济且易于操作。本研究旨在制备冻干后具有高活力且储存稳定性得到优化的耐酸益生菌微胶囊。将嗜热链球菌IFFI 6038(IFFI 6038)细胞与海藻糖和海藻酸盐混合,采用挤压法制备微胶囊。随后用壳聚糖对这些胶囊进行包衣,以获得具有壳-基质结构的壳聚糖-海藻糖-海藻酸盐微胶囊。还使用相同方法制备了壳聚糖-海藻酸盐微胶囊(不含海藻糖)。通过测量细胞的冻干活力、耐酸性和长期储存稳定性来观察微胶囊的特性。壳聚糖-海藻糖-海藻酸盐微胶囊中IFFI 6038的冻干活菌数为8.34±0.30 log CFU/g,比壳聚糖-海藻酸盐微胶囊高出近1 log CFU/g。在模拟胃液中处理120分钟后,壳聚糖-海藻糖-海藻酸盐微胶囊中IFFI 6038的活力为6.45±0.09 log CFU/g,而壳聚糖-海藻酸盐微胶囊仅为4.82±0.22 log CFU/g。长期储存稳定性试验结果表明,在25℃储存后,壳聚糖-海藻糖-海藻酸盐微胶囊中IFFI 6038的活力高于壳聚糖-海藻酸盐微胶囊。海藻糖在IFFI 6038储存期间的稳定性中起重要作用。新型壳-基质壳聚糖-海藻糖-海藻酸盐微胶囊表现出最佳的稳定性和耐酸性,证明了其作为运输益生菌的递送载体的潜力。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验