首页> 外文期刊>Journal of medicinal food >TRAMP Prostate Tumor Growth Is Slowed by Walnut Diets Through Altered IGF-1 Levels, Energy Pathways, and Cholesterol Metabolism
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TRAMP Prostate Tumor Growth Is Slowed by Walnut Diets Through Altered IGF-1 Levels, Energy Pathways, and Cholesterol Metabolism

机译:通过改变IGF-1水平,能量途径和胆固醇代谢,核桃饮食会降低TRAMP前列腺肿瘤的生长。

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Dietary changes could potentially reduce prostate cancer morbidity and mortality. Transgenic adenocarcinoma of the mouse prostate (TRAMP) prostate tumor responses to a 100 g of fat/kg diet (whole walnuts, walnut oil, and other oils; balanced for macronutrients, tocopherols [alpha-and gamma]) for 18 weeks ad libitum were assessed. TRAMP mice (n=17 per group) were fed diets with 100 g fat from either whole walnuts (diet group WW), walnut-like fat (diet group WLF, oils blended to match walnut's fatty acid profile), or as walnut oil (diet group WO, pressed from the same walnuts as WW). Fasted plasma glucose was from tail vein blood, blood was obtained by cardiac puncture, and plasma stored frozen until analysis. Prostate (genitourinary intact [GUI]) was weighed and stored frozen at -80 degrees C. Plasma triglyceride, lipoprotein cholesterol, plasma multianalyte levels (Myriad RBM Rat Metabolic MAP), prostate (GUI), tissue metabolites (Metabolon, Inc., Durham, NC, USA), and mRNA (by Illumina NGS) were determined. The prostate tumor size, plasma insulin-like growth factor-1 (IGF-1), high density lipoprotein, and total cholesterol all decreased significantly (P<.05) in both WW and WO compared to WLF. Both WW and WO versus WLF showed increased insulin sensitivity (Homeostasis Model Assessment [HOMA]), and tissue metabolomics found reduced glucose-6-phosphate, succinylcarnitine, and 4-hydroxybutyrate in these groups suggesting effects on cellular energy status. Tissue mRNA levels also showed changes suggestive of altered glucose metabolism with WW and WO diet groups having increased PCK1 and CIDEC mRNA expression, known for their roles in gluconeogenesis and increased insulin sensitivity, respectively. WW and WO group tissues also had increased MSMB mRNa a tumor suppressor and decreased COX-2 mRNA, both reported to inhibit prostate tumor growth. Walnuts reduced prostate tumor growth by affecting energy metabolism along with decreased plasma IGF-1 and cholesterol. These effects are not due to the walnut's N-3 fatty acids, but due to component(s) found in the walnut's fat component.
机译:饮食变化可能会降低前列腺癌的发病率和死亡率。随意摄食18周的老鼠对100 g脂肪/ kg饮食(全核桃,核桃油和其他油;均衡的大量营养素,生育酚α和γ平衡)的小鼠前列腺转基因腺癌​​(TRAMP)前列腺癌反应为评估。每天给TRAMP小鼠(每组n = 17)饲喂100克全核桃(饮食组WW)的脂肪,核桃样脂肪(饮食组WLF,混合以符合核桃的脂肪酸特性的油)或核桃油(饮食组WO,由与WW相同的核桃压制而成)。空腹血浆葡萄糖来自尾静脉血液,通过心脏穿刺获得血液,血浆被冷冻保存直至分析。称量前列腺(泌尿生殖系统完整[GUI]),并在-80摄氏度下冷冻保存。血浆甘油三酸酯,脂蛋白胆固醇,血浆多分析物水平(Myriad RBM Rat代谢MAP),前列腺(GUI),组织代谢物(Metabolon,Inc.,Durham) ,美国北卡罗来纳州)和mRNA(由Illumina NGS确定)。与WLF相比,WW和WO中的前列腺肿瘤大小,血浆胰岛素样生长因子-1(IGF-1),高密度脂蛋白和总胆固醇均显着降低(P <.05)。 WW和WO与WLF均显示出胰岛素敏感性增加(稳态模型评估[HOMA]),组织代谢组学发现这些组中的6-磷酸葡萄糖,琥珀酰肉碱和4-羟基丁酸酯减少,提示对细胞能量状态的影响。组织mRNA水平也显示出变化,表明WW和WO饮食组具有增加的PCK1和CIDEC mRNA表达的WW和WO饮食组,分别以其在糖异生和胰岛素敏感性中的作用而闻名。 WW和WO组组织还具有增加的MSMB mRNa(一种抑癌药)和降低的COX-2 mRNA,据报道均抑制前列腺肿瘤的生长。核桃通过影响能量代谢以及降低血浆IGF-1和胆固醇来减少前列腺肿瘤的生长。这些影响不是由于核桃的N-3脂肪酸,而是由于核桃脂肪成分中的一种或多种成分。

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