Prediabetic changes in gene expression induced by aspartame and monosodium glutamate in Trans fat-fed C57Bl/6 J mice.
トランス脂肪酸を摂取したC57Bl/6 Jマウスにおいてアスパルテームとグルタミン酸ナトリウムが誘導する前糖尿病状態の遺伝子発現変化 (機械翻訳の邦題)
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- 研究デザイン
- その他の原著論文
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- 出版年
- 2013
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- doi.org
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- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
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- 記録状態
- 公開
日本語要約(機械生成)
ヒトの食事は過去40年で大きく変化し、トランス脂肪酸や食品添加物の摂取が増加した。本研究では、トランス脂肪酸含有食を摂取したC57Bl/6 Jマウスを用いて、アスパルテーム(ASP)とグルタミン酸ナトリウム(MSG)の単独または併用が肝臓と脂肪組織の遺伝子発現に及ぼす影響を検討した。その結果、MSG単独では肝臓の中性脂肪と血清レプチンが増加し、ASPとMSGの併用では内臓脂肪蓄積、血清遊離脂肪酸、空腹時血糖、HOMA-IR、総コレステロール、TNFαが最も上昇した。遺伝子発現解析では、肝臓と脂肪組織でPPARGC1aの発現低下と、PPARα、δ、γを含む関連ネットワークの変化が認められた。また、ASPとMSGの併用により、肝臓と脂肪組織に共通する73個の遺伝子が上方制御され、51個が下方制御された。これらの結果から、ASPとMSGの併用は、トランス脂肪酸摂取マウスにおいて肥満や糖代謝異常、遺伝子発現変化を引き起こす可能性が示唆された。
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抄録
Background: The human diet has altered markedly during the past four decades, with the introduction of Trans hydrogenated fat, which extended the shelf-life of dietary oils and promoted a dramatic increase in elaidic acid (Trans-18.1) consumption. Food additives such as monosodium glutamate (MSG) and aspartame (ASP) were introduced to increase food palatability and reduce caloric intake. Nutrigenomics studies in small-animal models are an established platform for analyzing the interactions between various macro- and micronutrients. We therefore investigated the effects of changes in hepatic and adipose tissue gene expression induced by the food additives ASP, MSG or a combination of both additives in C57Bl/6 J mice fed a Trans fat-enriched diet.Methods: Hepatic and adipose tissue gene expression profiles, together with body characteristics, glucose parameters, serum hormone and lipid profiles were examined in C57Bl/6 J mice consuming one of the following four dietary regimens, commencing in utero via the mother's diet: [A] Trans fat (TFA) diet; [B] MSG + TFA diet; [C] ASP + TFA diet; [D] ASP + MSG + TFA diet.Results: Whilst dietary MSG significantly increased hepatic triglyceride and serum leptin levels in TFA-fed mice, the combination of ASP + MSG promoted the highest increase in visceral adipose tissue deposition, serum free fatty acids, fasting blood glucose, HOMA-IR, total cholesterol and TNFα levels. Microarray analysis of significant differentially expressed genes (DEGs) showed a reduction in hepatic and adipose tissue PPARGC1a expression concomitant with changes in PPARGC1a-related functional networks including PPARα, δ and γ. We identified 73 DEGs common to both adipose and liver which were upregulated by ASP + MSG in Trans fat-fed mice; and an additional 51 common DEGs which were downregulated.Conclusion: The combination of ASP and MSG may significantly alter adiposity, glucose homeostasis, hepatic and adipose tissue gene expression in TFA-fed C57Bl/6 J mice.
DOI 10.1186/1743-7075-10-44
PMID 23783067
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