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比较大鼠对深度水解乳清蛋白浓缩物与天然乳清蛋白浓缩物急性喂食的血清反应:代谢组学方法。

Comparing serum responses to acute feedings of an extensively hydrolyzed whey protein concentrate versus a native whey protein concentrate in rats: a metabolomics approach.

作者信息

Roberts Michael D, Cruthirds Clayton L, Lockwood Christopher M, Pappan Kirk, Childs Thomas E, Company Joseph M, Brown Jacob D, Toedebusch Ryan G, Booth Frank W

机构信息

a Department of Biomedical Sciences, College of Veterinary Medicine, University of Missouri, E102 Veterinary Medicine Building, 1600 East Rollins, Columbia, MO 65211, USA.

出版信息

Appl Physiol Nutr Metab. 2014 Feb;39(2):158-67. doi: 10.1139/apnm-2013-0148. Epub 2013 Jul 30.

DOI:10.1139/apnm-2013-0148
PMID:24476471
Abstract

We examined how gavage feeding extensively hydrolyzed whey protein (WPH) versus a native whey protein concentrate (WPC) transiently affected serum biochemical profiles in rodents. Male Wistar rats (250-300 g) were 8 h fasted and subsequently fed isonitrogenous amounts of WPH or WPC, or remained unfed (control). Animals were sacrificed 15 min, 30 min, and 60 min post-gavage for serum extraction, and serum was analyzed using untargeted global metabolic profiling via gas chromatography/mass spectrometry (MS) and liquid chromatography/MS/MS platforms. We detected 333 serum metabolites amongst the experimental and control groups. Both WPH and WPC generally increased amino acids (1.2-2.8-fold), branched-chain amino acids (1.2-1.7-fold), and serum di- and oligo-peptides (1.1-2.7-fold) over the 60 min time course compared with control (q < 0.05). However, WPH increased lysine (false discovery rate using a q-value <0.05) and tended to increase isoleucine and valine 15 min post-feeding (q < 0.10) as well as aspartylleucine 30 min post-feeding compared with WPC (q < 0.05). While both protein sources led to a dramatic increase in free fatty acids compared with control (up to 6-fold increases, q < 0.05), WPH also uniquely resulted in a 30 min post-feeding elevation in free fatty acids compared with WPC (q < 0.05), an effect which may be due to the robust 30 min postprandial increase in epinephrine in the WPH cohort. These data provide a unique postprandial time-course perspective on how WPH versus WPC feedings affect circulating biochemicals and will guide future research comparing these 2 protein sources.

摘要

我们研究了通过灌胃给予广泛水解乳清蛋白(WPH)与天然乳清蛋白浓缩物(WPC)对啮齿动物血清生化指标的短期影响。将雄性Wistar大鼠(250 - 300克)禁食8小时,随后给予等氮量的WPH或WPC,或不喂食(对照)。灌胃后15分钟、30分钟和60分钟处死动物以提取血清,并通过气相色谱/质谱(MS)和液相色谱/MS/MS平台使用非靶向全局代谢谱分析血清。我们在实验组和对照组中检测到333种血清代谢物。与对照组相比,在60分钟的时间进程中,WPH和WPC通常都会使氨基酸增加(1.2 - 2.8倍)、支链氨基酸增加(1.2 - 1.7倍)以及血清二肽和寡肽增加(1.1 - 2.7倍)(q < 0.05)。然而,与WPC相比,WPH在喂食后15分钟时会增加赖氨酸(使用q值的错误发现率<0.05),并倾向于增加异亮氨酸和缬氨酸(q < 0.10),在喂食后30分钟时会增加天冬氨酰亮氨酸(q < 0.05)。虽然与对照组相比,两种蛋白质来源都会导致游离脂肪酸显著增加(高达6倍的增加,q < 0.05),但与WPC相比,WPH在喂食后30分钟时还会使游离脂肪酸独特地升高(q < 0.05),这种效应可能是由于WPH组在餐后30分钟时肾上腺素的强劲增加所致。这些数据提供了关于WPH与WPC喂养如何影响循环生化物质的独特餐后时间进程观点,并将指导未来比较这两种蛋白质来源的研究。

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