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Studying the real-time interplay between triglyceride digestion and lipophilic micronutrient bioaccessibility using droplet microfluidics. 1 lab on a chip method

机译:使用液滴微流控技术研究甘油三酸酯消化与亲脂性微营养素生物可及性之间的实时相互作用。 1个片上实验室方法

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This article is the first part of a series reporting on real-time digestion kinetics of triglyceride droplets containing different lipophilic micronutrients. This part focuses on the design, fabrication, and operation of a poly-dimethylsiloxane microfluidic device which enables the generation and digestion of oil droplets. The microchannels were made hydrophilic to obtain oil droplets in an aqueous continuous phase. Optimized chip design and outlet control were implemented to provide efficient oil droplet generation, manipulation, and immobilization on a single chip. Highly monodisperse oil droplets were generated, immobilized in an array of traps and monitored in real time by fluorescence using a confocal microscopy method. The device was used to study the kinetics of beta-carotene release during tricaprylin digestion (intestinal lipolysis and micellar solubilization). The effect of the gastric phase on beta-carotene degradation was also investigated using the same method.
机译:本文是报道含有不同亲脂性微量营养素的甘油三酸酯液滴实时消化动力学的系列文章的第一部分。本部分着重于聚二甲基硅氧烷微流体装置的设计,制造和操作,该装置能够产生和消化油滴。使微通道具有亲水性,以获得连续水相中的油滴。实施了优化的芯片设计和出口控制,以在单个芯片上提供有效的油滴生成,操纵和固定。产生高度单分散的油滴,将其固定在一系列陷阱中,并使用共聚焦显微镜法通过荧光进行实时监控。该装置用于研究甘油三辛酸酯消化(肠脂解和胶束溶解)过程中β-胡萝卜素释放的动力学。还使用相同方法研究了胃相对β-胡萝卜素降解的影响。

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