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首页> 外文期刊>Food & Function >Nanoencapsulation of docosahexaenoic acid (DHA) using a combination of food grade polymeric wall materials and its application for improvement in bioavailability and oxidative stability
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Nanoencapsulation of docosahexaenoic acid (DHA) using a combination of food grade polymeric wall materials and its application for improvement in bioavailability and oxidative stability

机译:使用食品级聚合物壁材料的组合及其应用提高生物利用度和氧化稳定性的二十二碳甲酸(DHA)纳米胶囊

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摘要

Docosahexaenoic acid (DHA) is a vital structural component of neuronal tissue, which is critically required during pre- and post-natal brain development. Its liquid nature, fishy odor, poor bioavailability and oxidative stability are the major challenges in the development of a pharmaceutically elegant and stable formulation. In the present study, nanocapsules of DHA from microalgae oil were prepared using different combinations of wall materials (carbohydrates, polymers, gum and proteins). The encapsulation using spray drying was done to prepare a pharmaceutically stable DHA formulation. The optimized formulation had a nanometric particle size (780 nm), spherical shape, an encapsulation efficacy of 98.46 +/- 1.1% and good oxidative stability, both under refrigerated and accelerated storage conditions. Brunauer-Emmett Teller (BET) analysis of the powder depicted a higher surface area and pore diameter and a lower particle size range. An ex vivo intestinal permeability study demonstrated a two fold increase in absorption in comparison with a commercial DHA formulation. Furthermore, an in vivo biodistribution study demonstrated a 2.9 fold increase in brain DHA concentration in comparison with pure DHA oil. In vivo testing for memory enhancement effects using Normal Object Recognition (NOR) and Morris water maze models with histopathological studies demonstrated memory enhancement with an increase in the proliferation of neurons in the hippocampus area. Thus, this study indicated that combinations of wall materials were better for the effective encapsulation of DHA oil for improving its bioavailability, shelf life and oxidative stability.
机译:二十二碳六烯酸(DHA)是神经元组织的重要结构组分,在预先和后脑后发育过程中受到严重所需的。它的液体性质,腥味,差的生物利用度和氧化稳定性是发育药学上优雅且稳定的配方的主要挑战。在本研究中,使用不同组合的壁材料(碳水化合物,聚合物,胶和蛋白)制备来自微藻油的DHA纳米胶囊。使用喷雾干燥的包封进行制备药学上稳定的DHA配方。优化的配方具有纳米粒径(780nm),球形,封装效果为98.46 +/- 1.1%,良好的氧化稳定性,均在冷藏和加速储存条件下。 Brunauer-Emmett Teller(BET)分析粉末描绘了较高的表面积和孔径和粒径范围。与商业DHA配方相比,前体内肠道渗透性研究表明,吸收的吸收增加了两倍。此外,与纯DHA油相比,体内生物分布研究表明脑DHA浓度增加2.9倍。在使用正常物体识别(NOR)和Morris水迷宫模型的内存增强效果的体内测试中,具有组织病理学研究的内记忆增强,随着海马地区的神经元的增殖增加。因此,该研究表明,壁材料的组合优质性地用于改善其生物利用度,保质期和氧化稳定性的DHA油的有效包封。

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    《Food & Function》 |2018年第4期|共15页
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  • 正文语种 eng
  • 中图分类 食品工业;
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