Alteration in Plasma Metabolome in High-Fat Diet-Fed Monocyte Chemotactic Protein-1 Knockout Mice Bearing Pulmonary Metastases of Lewis Lung Carcinoma.

IF 2.3 Q3 NUTRITION & DIETETICS Nutrition and Metabolic Insights Pub Date : 2022-08-04 eCollection Date: 2022-01-01 DOI:10.1177/11786388221111126
Lin Yan, Bret M Rust, Sneha Sundaram, Matthew J Picklo, Michael R Bukowski
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Abstract

Both clinical and laboratory studies have shown that monocyte chemotactic protein-1 (MCP-1) is involved in cancer spread. To understand the role of MCP-1 in metabolism in the presence of metastasis, we conducted an untargeted metabolomic analysis of primary metabolism on plasma collected from a study showing that MCP-1 deficiency reduces spontaneous metastasis of Lewis lung carcinoma (LLC) to the lungs in mice fed a high-fat diet (HFD). In a 2 × 2 design, wild-type (WT) or Mcp-1 knockout (Mcp-1 -/-) mice maintained on the AIN93G standard diet or HFD were subcutaneously injected with LLC cells to induce lung metastasis. We identified 87 metabolites for metabolomic analysis from this study. Amino acid metabolism was altered considerably in the presence of LLC metastases with the aminoacyl-tRNA biosynthesis pathways as the leading pathway altered. The HFD modified lipid and energy metabolism, evidenced by lower contents of arachidonic acid, cholesterol, and long-chain saturated fatty acids and higher contents of glucose and pyruvic acid in mice fed the HFD. These findings were supported by network analysis showing alterations in fatty acid synthesis and glycolysis/gluconeogenesis pathways between the 2 diets. Furthermore, elevations of the citrate cycle intermediates (citric acid, fumaric acid, isocitric acid, and succinic acid) and glyceric acid in Mcp-1 -/- mice, regardless of diet, suggest the involvement of MCP-1 in mitochondrial energy metabolism during LLC metastasis. The present study demonstrates that MCP-1 deficiency and the HFD altered plasma metabolome in mice bearing LLC metastases. These findings can be useful in understanding the impact of obesity on prevention and treatment of cancer metastasis.

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高脂饮食喂养的单核细胞趋化蛋白-1基因敲除小鼠血浆代谢组的变化(携带路易斯肺癌肺转移灶)。
临床和实验室研究都表明,单核细胞趋化蛋白-1(MCP-1)参与了癌症扩散。为了了解 MCP-1 在转移过程中的代谢作用,我们对从一项研究中收集的血浆进行了非靶向的初级代谢组学分析,该研究表明,MCP-1 缺乏可减少以高脂肪饮食(HFD)喂养的小鼠的刘易斯肺癌(LLC)向肺部的自发转移。在一个 2 × 2 设计中,以 AIN93G 标准饮食或高脂饮食饲养的野生型(WT)或 Mcp-1 基因敲除(Mcp-1 -/-)小鼠皮下注射 LLC 细胞以诱导肺转移。我们从这项研究中确定了 87 种代谢物进行代谢组学分析。在LLC细胞转移的情况下,氨基酸代谢发生了很大的改变,氨基酰-tRNA生物合成途径是改变的主要途径。高纤维食物改变了脂质和能量代谢,表现为喂食高纤维食物的小鼠花生四烯酸、胆固醇和长链饱和脂肪酸含量较低,葡萄糖和丙酮酸含量较高。这些发现得到了网络分析的支持,网络分析显示两种饮食之间脂肪酸合成和糖酵解/糖元生成途径发生了改变。此外,Mcp-1 -/-小鼠体内柠檬酸循环中间产物(柠檬酸、富马酸、异柠檬酸和琥珀酸)和甘油酸的升高与饮食无关,这表明MCP-1参与了有限责任公司转移过程中的线粒体能量代谢。本研究表明,MCP-1缺乏和高密度脂蛋白膳食改变了LLC转移小鼠的血浆代谢组。这些发现有助于了解肥胖对预防和治疗癌症转移的影响。
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来源期刊
Nutrition and Metabolic Insights
Nutrition and Metabolic Insights NUTRITION & DIETETICS-
CiteScore
3.30
自引率
0.00%
发文量
27
审稿时长
8 weeks
期刊介绍: Nutrition and Metabolic Insights is a peer-reviewed, open-access online journal focusing on all aspects of nutrition and metabolism. This encompasses nutrition, including the biochemistry of metabolism, exercise and associated physical processes and also includes clinical articles that relate to metabolism, such as obesity, lipidemias and diabetes. It includes research at the molecular, cellular and organismal levels. This journal welcomes new manuscripts for peer review on the following topics: Nutrition, including the biochemistry of metabolism, Exercise and associated physical processes, Clinical articles that relate to metabolism, such as obesity, lipidemias and diabetes, Research at the molecular, cellular and organismal levels, Other areas of interest include gene-nutrient interactions, the effects of hormones, models of metabolic function, macronutrient interactions, outcomes of changes in diet, and pathophysiology.
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