首页> 外文期刊>Journal of Agricultural and Food Chemistry >Preparation of alpha-Linolenic-Acid-Loaded Water-in-Oil-in-Water Microemulsion and Its Potential as a Fluorescent Delivery Carrier with a Free Label
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Preparation of alpha-Linolenic-Acid-Loaded Water-in-Oil-in-Water Microemulsion and Its Potential as a Fluorescent Delivery Carrier with a Free Label

机译:用自由标记制备α-亚麻酸酸加载的水包油水包内微乳液及其作为荧光输送载体的潜力

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Our previous work has demonstrated that alpha-linolenic acid (ALA)-loaded oil-in-water (O/W) microemulsion could enhance ALA antioxidant capacity. Meanwhile, we also observed that synthesized microemulsion itself had fluorescence. In this work, we have prepared a multiple water-in-oil-in-water (W/O/W) microemulsion to further enhance ALA antioxidant capacity and activate this delivery carrier application potential with a free label. The compositions of primary water-in-oil (W/O) microemulsion were obtained using pseudo-ternary phase diagrams, and then W/O/W microemulsion was prepared adopting the "two-step heterotherm method". The conductivity of W/O/W microemulsion was measured to lie between 250.0 and 350.0 mu s/cm. The spherical droplets with a mean particle diameter of 10.0-20.0 nm were confirmed by transmission electron microscopy and dynamic light scattering. Nuclear magnetic resonance confirmed that ALA diffused to the multiple water oily interface simultaneously. In addition, the in vitro release and antioxidant capacity measurements of ALA-loaded W/O/W microemulsion concluded the sustained-release effect and excellent antioxidant capacity. The fluorescent intensity of W/O/W microemulsion was markedly increased in comparison to O/W microemulsion. The synthesized microemulsion could lead to important applications and have advantages of a label-free fluorescent carrier for optical imaging purposes.
机译:我们以前的工作表明,α-亚麻酸(ALA) - 水 - 水(O / W)微乳液可以提高ALA抗氧化能力。同时,我们还观察到合成的微乳液本身具有荧光。在这项工作中,我们制备了多种水包内水(W / O / W)微乳液,以进一步增强ALA抗氧化能力,并用自由标记激活该递送载体施用电位。使用伪三元相图获得初级水含油(W / O)微乳液的组合物,然后制备采用“两步异液方法”的W / O / W微乳液。测量W / O / W微乳液的电导率,以在250.0至350.0μmS/ cm之间。通过透射电子显微镜和动态光散射确认平均粒径为10.0-20.0nm的球形液滴。核磁共振证实ALA同时扩散到多水油性界面。此外,Ala负载的W / O / W微乳液的体外释放和抗氧化能力测量得出了持续释放效果和优异的抗氧化能力。与O / W微乳液相比,W / O / W微乳液的荧光强度显着增加。合成的微乳液可能导致重要的应用,并具有无标记的荧光载体的优点,用于光学成像目的。

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