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亚麻籽油、巴鲁油和椰子油:基于 NMR 的代谢组学、体内白细胞浸润潜力及其油特征。还有争议吗?

Linseed, Baru, and Coconut Oils: NMR-Based Metabolomics, Leukocyte Infiltration Potential In Vivo, and Their Oil Characterization. Are There Still Controversies?

机构信息

Post-Graduate Program in Health and Development in the Mid-West Region, Federal University of Mato Grosso do Sul, Campo Grande 79070-900, MS, Brazil.

Chemistry Institute, Federal University of Mato Grosso do Sul, Campo Grande 79070-900, MS, Brazil.

出版信息

Nutrients. 2022 Mar 10;14(6):1161. doi: 10.3390/nu14061161.

Abstract

Different fatty acid proportions produce potential inflammatory and metabolic changes in organisms. However, the evidence for how each fatty acid mediates the metabolic pathway, and its lipid stability remains controversial. To resolve this controversy, the present study investigated the metabolic effects of cold-pressed linseed (LG), coconut (CG), and baru (BG) oils in comparison to those of soybean oil (SG) in mice, in terms of their oil characterization and stability. The quality analysis showed less oxidative behavior among PUFA-rich oils (SO, BO, and LO, with induction periods lower than 2 h compared to 39.8 h for CG), besides the high contents of tocopherols and carotenoids in SG and LG. In the experimental study, CG presented higher triglyceride (257.93 ± 72.30) and VLDL-cholesterol levels (51.59 ± 14.46, p < 0.05), while LG reduced LDL levels (59.29 ± 7.56, p < 0.05) when compared to SG (183.14 ± 22.06, 36.63 ± 4.41 and 131.63 ± 29.0, respectively). For visceral fats, the adiposity index was lower for BG (7.32 ± 3.13) and CG (9.58 ± 1.02, p < 0.05) in relation to SG (12.53 ± 2.80), and for leukocyte recruitment, CG presented lower polymorphonuclear (PMN) (p < 0.0001) and mononuclear (MN) (p < 0.05) cell infiltration, demonstrating anti-inflammatory potential. In NMR-based metabolomics, although CG presented higher values for the glucose, lactate, and LDL/VLDL ratio, this group also evidenced high levels of choline, a lipotropic metabolite. Our study emphasized the controversies of saturated fatty acids, which impair serum lipids, while alfa-linolenic acid presented cardioprotective effects. However, coconut oil also has a positive immunomodulatory pathway and was found to reduce visceral bodyfat in mice. Therefore, for future applications, we suggest a combination of lauric and al-fa-linolenic acid sources, which are present in coconut and linseed oil, respectively. This combination could be less obesogenic and inflammatory and exert cardioprotective action.

摘要

不同脂肪酸比例会导致生物体产生潜在的炎症和代谢变化。然而,关于每种脂肪酸如何介导代谢途径及其脂质稳定性的证据仍存在争议。为了解决这一争议,本研究比较了冷压亚麻籽油(LG)、椰子油(CG)和巴鲁油(BG)与大豆油(SG)在油特性和稳定性方面对小鼠的代谢影响。质量分析表明,富含多不饱和脂肪酸的油(SO、BO 和 LO)的氧化行为较少,诱导期低于 2 小时,而 CG 则为 39.8 小时,此外,SG 和 LG 中的生育酚和类胡萝卜素含量较高。在实验研究中,CG 呈现出更高的甘油三酯(257.93±72.30)和 VLDL-胆固醇水平(51.59±14.46,p<0.05),而 LG 则降低了 LDL 水平(59.29±7.56,p<0.05)与 SG(183.14±22.06、36.63±4.41 和 131.63±29.0)相比。对于内脏脂肪,BG(7.32±3.13)和 CG(9.58±1.02,p<0.05)的肥胖指数低于 SG(12.53±2.80),对于白细胞募集,CG 表现出较低的多形核(PMN)(p<0.0001)和单核(MN)(p<0.05)细胞浸润,显示出抗炎潜力。在基于 NMR 的代谢组学中,尽管 CG 呈现出更高的葡萄糖、乳酸和 LDL/VLDL 比值,但该组还表现出高水平的胆碱,一种脂肪代谢物。我们的研究强调了饱和脂肪酸的争议,它们会损害血清脂质,而阿尔法亚麻酸则具有心脏保护作用。然而,椰子油也具有积极的免疫调节途径,并且在小鼠中被发现可减少内脏体脂肪。因此,对于未来的应用,我们建议将月桂酸和阿尔法亚麻酸这两种分别存在于椰子油和亚麻籽油中的来源结合起来。这种组合可能不太肥胖和炎症,并具有心脏保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d6a/8950264/52054edffcbf/nutrients-14-01161-g001.jpg

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