Suppr超能文献

黑种草籽油负载海藻酸钠微球的中试规模生产;工艺开发及百里醌的稳定性

Pilot scale manufacturing of black seed oil-loaded alginate beads; process development, and stability of thymoquinone.

作者信息

Alkhatib Hamzeh, Mohamed Farahidah, Alfatama Mulham, Assadpour Elham, Kharazmi Mohammad Saeed, Mahdi Jafari Seid, Islam Sarker Md Zaidul, Kumar Sadasivuni Kishor, Mohmad Sabere Awis Sukarni, Doolaanea Abd Almonem

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, University College of MAIWP International (UCMI), 68100, Kuala Lumpur, Malaysia.

Department of Pharmaceutical Technology, Kulliyyah of Pharmacy, International Islamic University Malaysia, 25200, Kuantan, Pahang, Malaysia.

出版信息

Heliyon. 2024 Sep 10;10(19):e37630. doi: 10.1016/j.heliyon.2024.e37630. eCollection 2024 Oct 15.

Abstract

The approach of ionic gelation was employed at the pilot scale of the 50 kg batch size to manufacture black seed oil (BSO)-loaded alginate (ALG) beads as a natural source supplementing the main bioactive compound of BSO, i.e., thymoquinone (TQ). The BSO-ALG emulsion was prepared by initially emulsifying BSO with alginate solution at the pilot scale in two stages. The final emulsion was then dripped through 12 units of 3D-printed multi-nozzles into a curing bath containing Ca. The dripping flow rate was scaled up to 288 mL/min through the 3D-printed multi-nozzles (22-gauge). The characteristics of pilot scale BSO-ALG beads were similar to those produced at the lab scale; the beads were spherical with a size of 1.84-1.94 mm. The mechanical strength and loss on drying ranged from 143.6 to 172 g and 77.85-81.96 %, respectively. The production yield and encapsulation efficiency were 77.53-83.65 % and 95.36-97.9 %, respectively. Furthermore, the emulsification process did not affect TQ stability, while the curing process reduced TQ concentration from 1.51 % to 1.03 % w/w. Additionally, a substantial drop in TQ concentration in the encapsulated BSO was observed after the drying process, where it reached 0.23 % w/w. Finally, the stability of BSO-ALG beads in both wet and dried forms under real-time and accelerated conditions for 3 months revealed that beads were stable in terms of their organoleptic characteristics, size and sphericity, and loss on drying. Findings from this study enable the large-scale manufacturing of encapsulated BSO and similar bioactive compounds in ALG beads for the first time. These findings are valuable for advancing microencapsulation through ionic gelation and enhancing food preservation and safety.

摘要

离子凝胶法在50千克批次规模的中试生产中被用于制造负载黑种草籽油(BSO)的海藻酸盐(ALG)珠粒,作为补充BSO主要生物活性化合物即百里醌(TQ)的天然来源。BSO-ALG乳液通过在中试规模下分两个阶段将BSO与海藻酸盐溶液初步乳化来制备。然后将最终乳液通过12个3D打印的多喷嘴滴入含有钙的固化浴中。通过3D打印的多喷嘴(22号规格),滴注流速扩大到288毫升/分钟。中试规模的BSO-ALG珠粒的特性与实验室规模生产的珠粒相似;珠粒呈球形,尺寸为1.84 - 1.94毫米。机械强度和干燥失重分别为143.6至172克和77.85 - 81.96%。产率和包封效率分别为77.53 - 83.65%和95.36 - 97.9%。此外,乳化过程不影响TQ的稳定性,而固化过程使TQ浓度从1.51%(w/w)降至1.03%(w/w)。另外,在干燥过程后,观察到包封的BSO中TQ浓度大幅下降,降至0.23%(w/w)。最后,BSO-ALG珠粒在实时和加速条件下3个月的湿态和干态稳定性表明,珠粒在感官特性、尺寸和球形度以及干燥失重方面是稳定的。本研究结果首次实现了在ALG珠粒中大规模制造包封的BSO和类似生物活性化合物。这些发现对于通过离子凝胶法推进微胶囊化以及提高食品保存和安全性具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/230a/11462023/2610d141c6cb/ga1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验