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首页> 外文期刊>Poultry Science >Alginate-whey protein dry powder optimized for target delivery of essential oils to the intestine of chickens
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Alginate-whey protein dry powder optimized for target delivery of essential oils to the intestine of chickens

机译:优化的海藻酸盐乳清蛋白干粉,可将精油目标递送至鸡肠

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摘要

In poultry production, there is a lack of effective and convenient approaches to deliver bioactive compounds such as some essential oils, which have been proposed as alternatives to antibiotic growth promoters. The objective of this research was to develop a method for target delivery of essential oils in feed to the lower intestines of chickens. Carvacrol was used as a model essential oil, and 2 food-grade biopolymers, alginate and whey protein, were selected to encapsulate carvacrol in microparticles. The effects of a medium molecular weight alginate, a low molecular weight alginate (LBA), and whey protein concentrations on the properties of carvacrol-loaded microparticles were investigated using response surface methodology. The encapsulation efficiencies for all the tested formulations were a parts per thousand yen98% and carvacrol content in the dry microparticles was 72 +/- 2% (wt/wt). The microparticles showed good gastric resistance and rapid intestinal release under simulated gastrointestinal conditions. Alginate concentrations had the strongest influence on the gastric resistance of microparticles, whereas whey protein was the dominant parameter in controlling the intestinal release. The concentration of LBA was found to be the critical factor affecting the mechanical strength of the microparticles. A predicted optimum formulation from in vitro optimization was tested in chickens. It was found that a negligible amount of carvacrol was detected in the intestines of chickens fed with unencapsulated carvacrol. Microparticles of predicted optimum formulation delivered a remarkably higher concentration of carvacrol to the jejunum and ileum regions. The high concentration was sustained for more than 3 h after oral administration. The in vivo release of carvacrol from the microparticles appeared faster than release from in vitro simulation. Nonetheless, the in vitro simulation provided good indications of the in vivo performance, and thus may serve as a useful tool for formula optimization. In conclusion, the current study indicates that alginate-whey protein microparticles could be used as a target delivery carrier in the feed to enhance the intestinal delivery of essential oils in poultry production.
机译:在家禽生产中,缺乏有效而便利的方法来递送生物活性化合物,例如一些香精油,已提出了替代抗生素生长促进剂的方法。这项研究的目的是开发一种将鸡精饲料中的精油靶向输送到鸡的下肠的方法。香芹酚用作模型香精油,并选择了2种食品级生物聚合物(藻酸盐和乳清蛋白)将香芹酚封装在微粒中。使用响应表面方法研究了中等分子量藻酸盐,低分子量藻酸盐(LBA)和乳清蛋白浓度对载有香芹酚的微粒的性能的影响。所有测试制剂的包封效率均为千分之一98%,并且干燥微粒中香芹酚含量为72 +/- 2%(wt / wt)。在模拟胃肠道条件下,微粒表现出良好的胃抵抗力和快速的肠道释放。藻酸盐浓度对微粒的胃抵抗力影响最大,而乳清蛋白是控制肠释放的主要参数。发现LBA的浓度是影响微粒的机械强度的关键因素。在鸡中测试了通过体外优化预测的最佳配方。发现在喂食未封装的香芹酚的鸡的肠道中检出的香芹酚含量可忽略不计。预测最佳配方的微粒向空肠和回肠区域输送的香芹酚浓度明显更高。口服后,高浓度持续3小时以上。从微粒体内释放香芹酚比从体外模拟释放更快。然而,体外模拟提供了体内性能的良好指示,因此可以用作配方优化的有用工具。总之,当前的研究表明,藻酸盐-乳清蛋白微粒可以用作饲料中的目标传递载体,以增强家禽生产中精油的肠道传递。

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