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从食品加工中回收的蛋白质组成的低蛋白饮食支持生长,但与无蛋白饮食相比,年轻雌性大鼠的肝脏出现轻微脂肪变性。

Low-Protein Diets Composed of Protein Recovered from Food Processing Supported Growth, but Induced Mild Hepatic Steatosis Compared with a No-Protein Diet in Young Female Rats.

机构信息

Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, United States; Department of Biology, University of the Ozarks, Clarksville, AR, United States.

Division of Plant and Soil Sciences, West Virginia University, Morgantown, WV, United States.

出版信息

J Nutr. 2023 Jun;153(6):1668-1679. doi: 10.1016/j.tjnut.2023.03.028. Epub 2023 Mar 27.

Abstract

BACKGROUND

Living in low-income countries often restricts the consumption of adequate protein and animal protein.

OBJECTIVES

This study aimed to investigate the effects of feeding low-protein diets on growth and liver health using proteins recovered from animal processing.

METHODS

Female Sprague-Dawley rats (aged 28 d) were randomly assigned (n = 8 rats/group) to be fed standard purified diets with 0% or 10% kcal protein that was comprised of either carp, whey, or casein.

RESULTS

Rats that were fed low-protein diets showed higher growth but developed mild hepatic steatosis compared to rats that were fed a no-protein diet, regardless of the protein source. Real-time quantitative polymerase chain reactions targeting the expression of genes involved in liver lipid homeostasis were not significantly different among groups. Global RNA-sequencing technology identified 9 differentially expressed genes linked to folate-mediated 1-carbon metabolism, endoplasmic reticulum (ER) stress, and metabolic diseases. Canonical pathway analysis revealed that mechanisms differed depending on the protein source. ER stress and dysregulated energy metabolism were implicated in hepatic steatosis in carp- and whey-fed rats. In contrast, impaired liver one-carbon methylations, lipoprotein assembly, and lipid export were implicated in casein-fed rats.

CONCLUSIONS

Carp sarcoplasmic protein showed comparable results to commercially available casein and whey protein. A better understanding of the molecular mechanisms in hepatic steatosis development can assist formulation of proteins recovered from food processing into a sustainable source of high-quality protein.

摘要

背景

生活在低收入国家往往限制了对充足蛋白质和动物蛋白的消费。

目的

本研究旨在使用从动物加工中回收的蛋白质,研究低蛋白饮食对生长和肝脏健康的影响。

方法

将 28 日龄雌性 Sprague-Dawley 大鼠(n = 8 只/组)随机分为两组,分别喂食标准纯化饲料,其中蛋白质含量为 0%或 10%,这两种饲料的蛋白质来源分别为鲤鱼、乳清或酪蛋白。

结果

与无蛋白饮食组相比,喂食低蛋白饮食的大鼠生长更快,但出现轻度肝脂肪变性,而与蛋白质来源无关。针对参与肝脏脂质稳态的基因表达的实时定量聚合酶链反应在各组之间没有显著差异。全转录组 RNA 测序技术鉴定了 9 个与叶酸介导的一碳代谢、内质网(ER)应激和代谢疾病相关的差异表达基因。通路分析表明,机制因蛋白质来源而异。鲤鱼和乳清喂养的大鼠中,ER 应激和代谢紊乱与肝脂肪变性有关。相反,酪蛋白喂养的大鼠中,肝一碳甲基化、脂蛋白组装和脂质输出受损与肝脂肪变性有关。

结论

鲤鱼肌浆蛋白与市售的酪蛋白和乳清蛋白具有相似的结果。更好地了解肝脂肪变性发展的分子机制,可以帮助将从食品加工中回收的蛋白质制成可持续的高质量蛋白质来源。

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