El-Sherbiny M, Cieslak A, Pers-Kamczyc E, Szczechowiak J, Kowalczyk D, Szumacher-Strabel M
Department of Animal Nutrition and Feed Management, Poznan University of Life Sciences, 60637 Poznan, Poland; Department of Dairy Sciences, National Research Centre, 12622 Giza, Egypt.
Department of Animal Nutrition and Feed Management, Poznan University of Life Sciences, 60637 Poznan, Poland.
J Dairy Sci. 2016 Jan;99(1):399-407. doi: 10.3168/jds.2015-9328. Epub 2015 Nov 5.
Two consecutive rumen batch cultures were used to study the effect of nanoemulsified oils as a new type of supplement, on the in vitro fatty acid proportion and vaccenic acid formation. Three levels (3, 5, and 7%) of 2 different oil blends [soybean:fish oil (SF) or rapeseed-fish oil (RF)] were used. Both oil blends were used either in the raw form (SF or RF, respectively) or in the nanoemulsified form (NSF or NRF, respectively). The diets were the control (0%), which consisted of a dry total mixed ration without any supplements, the control plus 3, 5, or 7% of the SF or RF oil blend in appropriate form (raw or nanoemulsified). For each treatment, 6 incubation vessels were used. Each batch culture was incubated for 24h and conducted twice in 2 consecutive days. All supplements were calculated as a percentage of the substrate dry matter (400mg). Nanoemulsified supplements were recalculated to make sure the oil amount was equal to the raw oil supplementation levels. The results from both experiments indicated that the proportions of vaccenic acid and cis-9,trans-11 C18:2 increased when a raw oil blend was supplemented; on the other hand, no influence of nanoemulsified form of oil blend was observed on the proportion cis-9,trans-11 C18:2. Generally, supplementation with the nanoemulsified oil blends had less effect on biohydrogenation intermediates than the raw form of oil blends. However, the nanoemulsified form had a greater effect on the increase of n-3 and n-6 fatty acids. Nanoemulsified oil blends had a positive effect on decreasing the transformation rate of polyunsaturated fatty acids to saturated fatty acids in the biohydrogenation environment. Supplements of nanoemulsified oil blends tended to be more effective than supplements of raw oils in preserving a greater proportion of polyunsaturated fatty acids in the fermentation culture.
采用两个连续的瘤胃批次培养试验,研究新型补充剂纳米乳化油对体外脂肪酸比例和共轭亚油酸形成的影响。使用了两种不同油混合物的三个水平(3%、5%和7%),即大豆油:鱼油(SF)或菜籽油-鱼油(RF)。两种油混合物均以原料形式(分别为SF或RF)或纳米乳化形式(分别为NSF或NRF)使用。日粮为对照(0%),由不含任何补充剂的干全混合日粮组成,对照加上以适当形式(原料或纳米乳化)添加的3%、5%或7%的SF或RF油混合物。对于每种处理,使用6个培养容器。每个批次培养孵育24小时,连续两天进行两次。所有补充剂均以底物干物质(400毫克)的百分比计算。对纳米乳化补充剂进行重新计算,以确保油量与原料油补充水平相等。两个实验的结果均表明,添加原料油混合物时,共轭亚油酸和顺-9,反-11 C18:2的比例增加;另一方面,未观察到纳米乳化形式的油混合物对顺-9,反-11 C18:2比例有影响。一般来说,与原料形式的油混合物相比,添加纳米乳化油混合物对生物氢化中间体的影响较小。然而,纳米乳化形式对n-3和n-6脂肪酸的增加有更大影响。纳米乳化油混合物对在生物氢化环境中降低多不饱和脂肪酸向饱和脂肪酸的转化率有积极作用。在发酵培养物中,纳米乳化油混合物补充剂在保留更大比例的多不饱和脂肪酸方面往往比原料油补充剂更有效。