首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >The In vitro Effects of Nano-encapsulated Conjugated Linoleic Acid on Stability of Conjugated Linoleic Acid and Fermentation Profiles in the Rumen
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The In vitro Effects of Nano-encapsulated Conjugated Linoleic Acid on Stability of Conjugated Linoleic Acid and Fermentation Profiles in the Rumen

机译:纳米共轭亚油酸对瘤胃共轭亚油酸稳定性和发酵特性的体外影响

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摘要

This study was aimed to evaluate the stability of conjugated linoleic acids (CLAs) by nano-encapsulation against in vitro ruminal biohydrogenation by microbial enzymatic conversion. CLAs (free fatty acid form of CLA [CLA-FFA], nano-encapsulated CLA-FFA, triglyceride form of CLA [CLA-TG], and nano-encapsulated CLA-TG) were used in the in vitro fermentation experiments. When Butyrivibrio fibrisolvens (B. fibrisolvens) was incubated with CLA-FFAs, the concentrations of cis-9, trans-11 CLA and vaccenic acid (VA) slightly was decreased and increased by nano-encapsulation, respectively. When B. fibrisolvens was incubated with CLA-TG, the concentrations of cis-9, trans-11 CLA and VA decreased, but these were increased when B. fibrisolvens was incubated with nano-encapsulated CLA-TG. The nano-encapsulation was more effective against the in vitro biohydrogenation activity of B.fibrisolvens incubated with CLA-FFA than with CLA-TG. In the in vitro ruminal incubation test, the total gas production and concentration of total volatile fatty acids incubated with nano-encapsulated CLA-FFA and CLA-TG were increased significantly after 24 h incubation (p<0.05). Nano-encapsulated CLA-FFA might, thus, improve the ruminal fermentation characteristics without adverse effects on the incubation process. In addition, nano-encapsulated CLA-FFA increased the population of Fibrobacter succinogenes and decreased the population of B. fibrisolvens population. These results indicate that nano-encapsulation could be applied to enhance CLA levels in ruminants by increasing the stability of CLA without causing adverse effects on ruminal fermentation.
机译:这项研究的目的是评估通过纳米包封的共轭亚油酸(CLA)的抗微生物瘤胃体外瘤胃生物氢化的稳定性。在体外发酵实验中使用了CLA(CLA [CLA-FFA]的游离脂肪酸形式,CLA-FFA的纳米囊化形式,CLA [CLA-TG]的甘油三酸酯形式和纳米囊化的CLA-TG形式)。当纤维溶丁酸梭菌(B. fibrisolvens)与CLA-FFA一起孵育时,顺式9,反式11 CLA和牛痘酸(VA)的浓度分别通过纳米包囊法略有降低和升高。当将纤溶双歧杆菌与CLA-TG一起孵育时,顺式9,反式11 CLA和VA的浓度降低,但是当将纤溶双歧杆菌与纳米囊封的CLA-TG一起孵育时,这些浓度增加。与用CLA-TG温育相比,纳米囊封法更有效地抵抗了用CLA-FFA温育的纤溶芽孢杆菌的体外生物氢化活性。在体外瘤胃温育试验中,在24小时温育后,用纳米囊封的CLA-FFA和CLA-TG温育的总产气量和总挥发性脂肪酸的浓度均显着增加(p <0.05)。因此,纳米封装的CLA-FFA可以改善瘤胃发酵特性,而不会对孵育过程产生不利影响。另外,纳米囊化的CLA-FFA增加了琥珀酸纤维芽孢杆菌的种群,并减少了纤维溶解芽孢杆菌的种群。这些结果表明,纳米封装可以通过提高CLA的稳定性而不会对瘤胃发酵产生不利影响的方法来提高反刍动物的CLA水平。

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