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Improvement of beta-Carotene Bioaccessibility from Dietary Supplements Using Excipient Nanoemulsions

机译:使用赋形剂纳米乳液改善膳食补充剂中β-胡萝卜素的生物利用率

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The influence of excipient nanoemulsions on beta-carotene bioaccessibility from commercial dietary supplements (tablets or soft gels) was studied employing an in vitro gastrointestinal tract (GIT) model. Excipient nanoemulsions were formulated from long or medium chain triglycerides (LCT or MCT) to determine the impact of lipid type on carotenoid bioaccessibility. Dietary supplements were tested using the GIT model in the absence or presence of excipient nanoemulsions. beta-carotene bioaccessibility from tablets (0.3%) or soft gels (2.4%) was low when tested in isolation. LCT nanoemulsions greatly improved beta-carotene bioaccessibility from tablets (20%) and slightly improved it from soft gels (5%), whereas MCT nanoemulsions only slightly improved bioaccessibility. These results were attributed to the ability of large carotenoid molecules to be incorporated into large mixed micelles formed by LCT digestion but not by small ones formed by MCT digestion. Our results indicate that excipient nanoemulsions have considerable potential for improving nutraceutical bioavailability from, dietary supplements.
机译:使用体外胃肠道(GIT)模型研究了赋形剂纳米乳剂对商业饮食补品(片剂或软凝胶)中β-胡萝卜素生物可及性的影响。用长链或中链甘油三酸酯(LCT或MCT)配制赋形剂纳米乳剂,以确定脂质类型对类胡萝卜素生物可及性的影响。在不存在或不存在赋形剂纳米乳剂的情况下,使用GIT模型测试膳食补充剂。单独测试时,片剂(0.3%)或软凝胶(2.4%)的β-胡萝卜素生物可及性较低。 LCT纳米乳剂极大地改善了片剂中β-胡萝卜素的生物可及性(20%),而软凝胶则微弱地改善了其(5%),而MCT纳米乳剂仅稍微改善了生物可及性。这些结果归因于大类胡萝卜素分子被掺入通过LCT消化形成的大混合胶束中的能力,而不是被MCT消化形成的小胶束中掺入的能力。我们的结果表明,赋形剂纳米乳剂具有改善膳食补充剂营养保健生物利用度的巨大潜力。

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