Institute of Animal Science, Physiology Unit, University of Bonn, Bonn, Germany.
Research Institute for Farm Animal Biology (FBN), 18196, Dummerstorf, Germany.
Sci Rep. 2022 Apr 5;12(1):5648. doi: 10.1038/s41598-022-09437-w.
Essential fatty acids (EFA) and conjugated linoleic acids (CLA) are unsaturated fatty acids with immune-modulatory effects, yet their synergistic effect is poorly understood in dairy cows. This study aimed at identifying differentially abundant proteins (DAP) and their associated pathways in dairy cows supplied with a combination of EFA and CLA during the transition from antepartum (AP) to early postpartum (PP). Sixteen Holstein cows were abomasally infused with coconut oil as a control (CTRL) or a mixture of EFA (linseed + safflower oil) and CLA (Lutalin, BASF) (EFA + CLA) from - 63 to + 63 days relative to parturition. Label-free quantitative proteomics was performed on plasma samples collected at days - 21, + 1, + 28, and + 63. During the transition time, DAP, consisting of a cluster of apolipoproteins (APO), including APOE, APOH, and APOB, along with a cluster of immune-related proteins, were related to complement and coagulation cascades, inflammatory response, and cholesterol metabolism. In response to EFA + CLA, specific APO comprising APOC3, APOA1, APOA4, and APOC4 were increased in a time-dependent manner; they were linked to triglyceride-enriched lipoprotein metabolisms and immune function. Altogether, these results provide new insights into metabolic and immune adaptation and crosstalk between them in transition dairy cows divergent in EFA + CLA status.
必需脂肪酸(EFA)和共轭亚油酸(CLA)是具有免疫调节作用的不饱和脂肪酸,但它们在奶牛中的协同作用尚不清楚。本研究旨在鉴定在产前(AP)到产后早期(PP)过渡期间,同时补充 EFA 和 CLA 的奶牛中差异丰度蛋白(DAP)及其相关途径。从分娩前-63 天到+63 天,16 头荷斯坦奶牛通过皱胃输注椰子油作为对照(CTRL)或 EFA(亚麻籽油+红花油)和 CLA(Lutalin,BASF)混合物(EFA+CLA)。在-21 天、+1 天、+28 天和+63 天采集血浆样本进行无标记定量蛋白质组学分析。在过渡期间,DAP 由一组载脂蛋白(APO)组成,包括 APOE、APOH 和 APOB,以及一组与补体和凝血级联、炎症反应和胆固醇代谢相关的免疫相关蛋白。对 EFA+CLA 的反应中,特定的 APO 包括 APOC3、APOA1、APOA4 和 APOC4,呈时间依赖性增加;它们与富含甘油三酯的脂蛋白代谢和免疫功能有关。总之,这些结果为代谢和免疫适应以及在 EFA+CLA 状态不同的过渡奶牛之间的相互作用提供了新的见解。