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3D 打印 MCT 油凝胶作为姜黄素和白藜芦醇的共递送载体。

3D printed MCT oleogel as a co-delivery carrier for curcumin and resveratrol.

机构信息

Computational Modeling and Nanoscale Processing Unit, National Institute of Food Technology, Entrepreneurship and Management - Thanjavur, Ministry of Food Processing Industries, Government of India, Thanjavur, Tamil Nadu, 613005, India.

Computational Modeling and Nanoscale Processing Unit, National Institute of Food Technology, Entrepreneurship and Management - Thanjavur, Ministry of Food Processing Industries, Government of India, Thanjavur, Tamil Nadu, 613005, India.

出版信息

Biomaterials. 2022 Aug;287:121616. doi: 10.1016/j.biomaterials.2022.121616. Epub 2022 Jun 2.

Abstract

Designing a suitable matrix to protect sensitive bioactive compounds is an important stage in nutraceutical development. In this study, emulsion templated medium-chain triglycerides (MCT) oleogel was developed as co-delivery carriers for synergistic nutraceuticals, curcumin, and resveratrol and to 3D print in customized shapes for personalized nutrition. To obtain the stable emulsion, gelatin and gellan gum were added such that their protein-polysaccharide interaction helps in the structuring of the oil phase. Increasing the amount of gellan gum had a positive effect on stabilizing the emulsion but became the critical parameter during 3D printing. Hence, gellan gum of 1.5% (w/v) and gelatin at 10% (w/v) of water were considered optimum to produce a stable 30% O/W emulsion for 3D printing. Upon analyzing the in-vitro digestion behavior of the oleogel, it was observed that the bioactives were protected under oral and gastric conditions and allowed intestinal targeted delivery. The total bioaccessible fraction increased up to 1.13-fold and 1.2-fold for curcumin and resveratrol respectively compared to control (MCT oil). The FFAs release profile also indicated that gelators play an important role in lipase activity. Also, the ex-vivo everted gut sac analysis showed enhanced permeation of about 1.83 times and 1.13 times for curcumin and resveratrol respectively. Thus, this study provides useful insights into the 3D printing of emulsion templated oleogel as personalized nutraceutical carriers.

摘要

设计合适的基质来保护敏感的生物活性化合物是营养保健品开发的重要阶段。在这项研究中,乳液模板化的中链甘油三酯(MCT)油凝胶被开发为协同营养保健品姜黄素和白藜芦醇的共递体载体,并可定制形状用于个性化营养。为了获得稳定的乳液,添加了明胶和结冷胶,使得它们的蛋白质-多糖相互作用有助于油相的结构化。增加结冷胶的用量对稳定乳液有积极的影响,但在 3D 打印过程中成为关键参数。因此,考虑到 1.5%(w/v)的结冷胶和 10%(w/v)的水的明胶可用于生产稳定的 30%O/W 乳液用于 3D 打印。分析油凝胶的体外消化行为时,发现生物活性物质在口腔和胃条件下得到保护,并允许肠道靶向递送。与对照(MCT 油)相比,姜黄素和白藜芦醇的总可及分数分别增加了 1.13 倍和 1.2 倍。FFAs 释放曲线也表明凝胶剂在脂肪酶活性中起着重要作用。此外,离体外翻肠囊分析表明,姜黄素和白藜芦醇的渗透分别增强了约 1.83 倍和 1.13 倍。因此,这项研究为乳液模板化油凝胶作为个性化营养保健品载体的 3D 打印提供了有用的见解。

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