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具有不同表面积与体积比的κ-卡拉胶/橄榄油乳液凝胶片的流变学和挤出打印及其用于释放维生素 C 和姜黄素。

Rheology and Extrusion Printing of κ-Carrageenan/Olive Oil Emulsion Gel Tablets with Varying Surface Area to Volume Ratios for Release of Vitamin C and Curcumin.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat 382355, India.

Dr. Kiran C. Patel Centre for Sustainable Development, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat 382355, India.

出版信息

Langmuir. 2024 Aug 6;40(31):16069-16084. doi: 10.1021/acs.langmuir.4c00894. Epub 2024 Jul 26.

DOI:10.1021/acs.langmuir.4c00894
PMID:39058356
Abstract

In this work, κ-carrageenan and olive oil at different oil to κ-carrageenan ratios (OCR) are homogenized to create emulsion gels. Interestingly, confocal imaging shows that the oil droplets are stabilized in the κ-carrageenan-structured gel matrix without using any surfactants. Rheological studies show that the oil droplets enhanced the oscillatory yield stress and the maximum printable height of the emulsion gels. The creation of the emulsion gels with an OCR of 1:9-3:7 led to an improvement in the structural integrity of extrusion printed structures. The emulsion gel with an OCR of 3:7 efficiently encapsulates vitamin C in the aqueous phase and curcumin in the hydrophobic oil phase, enabling the extrusion 3D printing of tablets with varying surface area to volume (SA/V) ratios. The release of vitamin C and curcumin is influenced by the preparation method of printing versus casting and the SA/V ratio of the tablets. The hollow cylinder with the highest SA/V ratio was observed to have the highest vitamin C release, whereas for curcumin, the printed tablets had a higher release compared to the cast tablet. Additionally, through rheo-dissolution experiments, we observe a lower modulus and higher vitamin C release from the 3D-printed disc versus the higher modulus and lower vitamin C release from the cast disc tablet.

摘要

在这项工作中,κ-卡拉胶和橄榄油以不同的油对 κ-卡拉胶比例(OCR)进行均质化,以创建乳液凝胶。有趣的是,共焦成像显示油滴在没有使用任何表面活性剂的情况下稳定在 κ-卡拉胶结构凝胶基质中。流变学研究表明,油滴增强了乳液凝胶的振荡屈服应力和最大可打印高度。OCR 为 1:9-3:7 的乳液凝胶的形成导致挤出打印结构的结构完整性得到改善。OCR 为 3:7 的乳液凝胶可有效地将维生素 C 包封在水相和姜黄素在疏油相中,从而能够挤出打印具有不同表面积与体积(SA/V)比的片剂。维生素 C 和姜黄素的释放受打印与浇铸的制备方法以及片剂的 SA/V 比的影响。观察到具有最高 SA/V 比的空心圆柱具有最高的维生素 C 释放,而对于姜黄素,与浇铸片剂相比,打印片剂具有更高的释放。此外,通过流变溶解实验,我们观察到与较高的维生素 C 释放相比,3D 打印盘的模量较低,而与较高的维生素 C 释放相比,浇铸盘片剂的模量较低。

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