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本文引用的文献

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Obesity-related derangements in metabolic regulation.与肥胖相关的代谢调节紊乱。
Annu Rev Biochem. 2006;75:367-401. doi: 10.1146/annurev.biochem.75.103004.142512.
2
Increasing dietary palmitic acid decreases fat oxidation and daily energy expenditure.增加膳食中的棕榈酸会降低脂肪氧化和每日能量消耗。
Am J Clin Nutr. 2005 Aug;82(2):320-6. doi: 10.1093/ajcn.82.2.320.
3
Leptin and the control of metabolism: role for stearoyl-CoA desaturase-1 (SCD-1).瘦素与代谢控制:硬脂酰辅酶A去饱和酶-1(SCD-1)的作用。
J Nutr. 2004 Sep;134(9):2455S-2463S. doi: 10.1093/jn/134.9.2455S.
4
Effects of leptin, troglitazone, and dietary fat on stearoyl CoA desaturase.
Biochem Biophys Res Commun. 2002 Oct 11;297(5):1259-63. doi: 10.1016/s0006-291x(02)02375-6.
5
Fat and carbohydrate balances during adaptation to a high-fat.适应高脂肪饮食期间的脂肪和碳水化合物平衡
Am J Clin Nutr. 2000 Feb;71(2):450-7. doi: 10.1093/ajcn/71.2.450.
6
Fractional oxidation of chylomicron-derived oleate is greater than that of palmitate in healthy adults fed frequent small meals.在频繁进食少量餐食的健康成年人中,乳糜微粒衍生油酸的部分氧化大于棕榈酸的部分氧化。
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7
Regulation of skeletal muscle UCP-2 and UCP-3 gene expression by exercise and denervation.运动和去神经支配对骨骼肌UCP - 2和UCP - 3基因表达的调控
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8
Use of food quotients to predict respiratory quotients for the doubly-labelled water method of measuring energy expenditure.使用食物商数预测双标水法测量能量消耗时的呼吸商数。
Hum Nutr Clin Nutr. 1986 Sep;40(5):381-91.
9
Nutrient balance and energy expenditure during ad libitum feeding of high-fat and high-carbohydrate diets in humans.人类自由进食高脂和高碳水化合物饮食期间的营养平衡与能量消耗
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急性喂食期间棕榈酸酯和油酸酯对呼吸商的影响。

Effects of palmitate and oleate on the respiratory quotient during acute feeding.

作者信息

Kien C Lawrence, Bunn Janice Y

机构信息

Department of Pediatrics and Medicine, E203 Given Building, 89 Beaumont Avenue, University of Vermont College of Medicine, Burlington, VT 05405-0068, USA.

出版信息

Obesity (Silver Spring). 2007 Jul;15(7):1640-2. doi: 10.1038/oby.2007.195.

DOI:10.1038/oby.2007.195
PMID:17636080
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1986785/
Abstract

OBJECTIVE

Using tracers, we showed, over 9 hours, that palmitic acid (PA) is oxidized at a lower rate than oleic acid (OA). Our subsequent clinical trial showed that enriching the diet for 28 days with PA, relative to OA, lowered fatty acid (FA) oxidation. However, because this conclusion was based on indirect calorimetry for 7 hours after a test meal, transient differences in the kinetics of oxidation of OA and PA could explain these results. Thus, we hypothesized that increasing PA vs. OA would decrease FA oxidation during the first day of feeding the diets.

RESEARCH METHODS AND PROCEDURES

A double-masked trial was conducted in 20 adults, who, after a baseline diet, were randomized to one of two experimental formula diets: high (HI) OA (PA=1.7% kcal, OA=31.4% kcal; N=11) or HI PA (PA=16.8% kcal, OA=16.4% kcal; N=9). Respiratory quotient (RQ) was measured over the first 14 hours of feeding the experimental diets (7:00 am to 9:00 pm). To determine whether these subjects were representative of the subjects in the previous trial, we assessed RQ 28 days after beginning either diet.

RESULTS

During the first 14 hours of feeding the diets, time (p=0.026) but not diet group had an effect on the difference between the RQ post-feeding and the fasting pre-value. However, RQ in the fed state was significantly higher in the HI PA group after 28 days of feeding.

DISCUSSION

Chronically increasing dietary PA for 28 days, but not acute meal feeding, lowers total FA oxidation.

摘要

目的

我们使用示踪剂在9小时内发现,棕榈酸(PA)的氧化速率低于油酸(OA)。我们随后的临床试验表明,与OA相比,用PA丰富饮食28天会降低脂肪酸(FA)氧化。然而,由于这一结论是基于试餐后7小时的间接量热法得出的,OA和PA氧化动力学的短暂差异可能解释了这些结果。因此,我们假设在喂食饮食的第一天,增加PA相对于OA的含量会降低FA氧化。

研究方法和步骤

对20名成年人进行了一项双盲试验,这些成年人在基线饮食后,被随机分配到两种实验配方饮食中的一种:高(HI)OA组(PA = 1.7%千卡,OA = 31.4%千卡;N = 11)或HI PA组(PA = 16.8%千卡,OA = 16.4%千卡;N = 9)。在喂食实验饮食的前14小时(上午7:00至晚上9:00)测量呼吸商(RQ)。为了确定这些受试者是否代表先前试验中的受试者,我们在开始任何一种饮食28天后评估RQ。

结果

在喂食饮食的前14小时内,时间(p = 0.026)而非饮食组对喂食后RQ与空腹前值之间的差异有影响。然而,喂食28天后,HI PA组进食状态下的RQ显著更高。

讨论

长期增加饮食中PA含量28天,而非急性餐食喂养,会降低总FA氧化。