Aldai Noelia, Hervás Gonzalo, Belenguer Alvaro, Frutos Pilar, Mantecón Angel R, Kramer John K G
Food Science and Technology, Faculty of Pharmacy, Universidad del País Vasco/Euskal Herriko Unibertsitatea, Vitoria, Spain.
Lipids. 2012 Aug;47(8):821-5. doi: 10.1007/s11745-012-3688-8. Epub 2012 Jun 14.
Rumen metabolism (e.g., biohydrogenation) of dietary unsaturated fatty acids (FA) is one of the main reasons why ruminant fats tend to be highly saturated and contain many isomerized FA intermediates. The process by which long-chain (20- to 24-carbon FA) polyunsaturated FA (LC-PUFA) are metabolized by rumen bacteria is not as well understood as that of linoleic or linolenic acids. In order to better understand the fate of LC-PUFA in the rumen several concentrations of docosahexaenoic acid (DHA) were evaluated in in vitro batch incubations ranging from 100 to 1,500 μg per 6 mL of incubation volume using rumen fluid from sheep and incubated for 0, 1, 2, 3, and 6 h. From the results, it was shown that DHA was extensively metabolized at low (100 to 300 μg/6 mL incubation volume), but not at high level of inclusion (800 μg). At 300 μg of DHA most of the depleted DHA was recovered as LC-DHA metabolites within the first 6 h of incubation, and at the lowest levels (100 μg of incubation volume) further metabolism is apparent at 6 h. Using SP-2560 GC columns several LC-DHA metabolites were shown to elute after 24:0 and just past DHA, a region generally free of interfering FA. The present in vitro study would appear to be a useful method to evaluate the production of DHA metabolites in combination with its depletion.
瘤胃对日粮中不饱和脂肪酸(FA)的代谢(如生物氢化作用)是反刍动物脂肪往往高度饱和且含有许多异构化FA中间体的主要原因之一。与亚油酸或亚麻酸相比,瘤胃细菌对长链(20至24个碳原子的FA)多不饱和FA(LC-PUFA)的代谢过程了解得还不够深入。为了更好地了解LC-PUFA在瘤胃中的去向,使用绵羊瘤胃液在体外分批培养中评估了几种浓度的二十二碳六烯酸(DHA),培养体积为每6 mL 100至1500 μg,并分别培养0、1、2、3和6小时。结果表明,DHA在低添加水平(每6 mL培养体积100至300 μg)下被广泛代谢,但在高添加水平(800 μg)下则不然。在300 μg DHA时,大部分消耗的DHA在培养的前6小时内以LC-DHA代谢产物的形式回收,而在最低水平(每6 mL培养体积100 μg)下,6小时时进一步的代谢很明显。使用SP-2560气相色谱柱,几种LC-DHA代谢产物在24:0之后且刚好在DHA之后洗脱,该区域通常没有干扰性FA。本体外研究似乎是一种结合DHA消耗情况来评估其代谢产物生成的有用方法。