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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >In Male Rats with Concurrent Iron and (n-3) Fatty Acid Deficiency, Provision of Either Iron or (n-3) Fatty Acids Alone Alters Monoamine Metabolism and Exacerbates the Cognitive Deficits Associated with Combined Deficiency
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In Male Rats with Concurrent Iron and (n-3) Fatty Acid Deficiency, Provision of Either Iron or (n-3) Fatty Acids Alone Alters Monoamine Metabolism and Exacerbates the Cognitive Deficits Associated with Combined Deficiency

机译:在患有铁和(n-3)脂肪酸缺乏症的雄性大鼠中,单独提供铁或(n-3)脂肪酸会改变单胺代谢并加剧与联合缺乏症相关的认知缺陷

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摘要

Concurrent deficiencies of iron (Fe) (ID) and (n-3) fatty acids [(n-3)FAD)] in rats can alter brain monoamine pathways and impair learning and memory. We examined whether repletion with Fe and DHA/EPA, alone and in combination, corrects the deficits in brain monoamine activity (by measuring monoamines and related gene expression) and spatial working and reference memory [by Morris water maze (MWM) testing] associated with deficiency. Using a 2 × 2 design, male rats with concurrent ID and (n-3)FAD [ID+(n-3)FAD] were fed an Fe+DHA/EPA, Fe+(n-3)FAD, ID+DHA/EPA, or ID+(n-3)FAD diet for 5 wk [postnatal d 56–91]. Biochemical measures and MWM performance after repletion were compared to age-matched control rats. The provision of Fe in combination with DHA/EPA synergistically increased Fe concentrations in the olfactory bulb (OB) (Fe x DHA/EPA interaction). Similarly, provision of DHA/EPA in combination with Fe resulted in higher brain DHA concentrations than provision of DHA alone in the frontal cortex (FC) and OB (P 0.05). Dopamine (DA) receptor D1 was upregulated in the hippocampus of Fe+DHA/EPA rats (fold-change = 1.25; P 0.05) and there were significant Fe x DHA/EPA interactions on serotonin (5-HT) in the OB and on the DA metabolite dihydroxyphenylacetic acid in the FC and striatum. Working memory performance was impaired in ID+DHA/EPA rats compared with controls (P 0.05). In the reference memory task, Fe+DHA/EPA improved learning behavior, but Fe or DHA/EPA alone did not. These findings suggest that feeding either Fe or DHA/EPA alone to adult rats with both ID and (n-3)FAD affects the DA and 5-HT pathways differently than combined repletion and exacerbates the cognitive deficits associated with combined deficiency.
机译:大鼠中铁(Fe)(ID)和(n-3)脂肪酸[(n-3)FAD)]的同时缺乏会改变脑单胺途径并损害学习和记忆。我们检查了单独和组合使用Fe和DHA / EPA的补充是否可以纠正与以下因素有关的大脑单胺活性(通过测量单胺和相关基因表达)以及空间工作和参考记忆的不足(通过莫里斯水迷宫(MWM)测试)不足。使用2×2设计,给具有并发ID和(n-3)FAD [ID +(n-3)FAD]的雄性大鼠喂食Fe + DHA / EPA,Fe +(n-3)FAD,ID + DHA / EPA或5周内ID +(n-3)FAD饮食[产后d 56–91]。充血后的生化指标和MWM性能与年龄匹配的对照组大鼠进行了比较。 Fe与DHA / EPA结合使用可协同增加嗅球(OB)中的Fe浓度(Fe x DHA / EPA相互作用)。类似地,与额叶皮质(FC)和OB中单独提供DHA相比,提供DHA / EPA与铁相结合会导致更高的大脑DHA浓度(P <0.05)。在Fe + DHA / EPA大鼠的海马中多巴胺(DA)受体D1上调(倍数= 1.25; P <0.05),并且在OB和5-羟色胺(5-HT)中存在显着的Fe x DHA / EPA相互作用。在FC和纹状体中的DA代谢产物二羟基苯基乙酸上。与对照组相比,ID + DHA / EPA大鼠的工作记忆能力受损(P <0.05)。在参考记忆任务中,Fe + DHA / EPA改善了学习行为,但单独使用Fe或DHA / EPA并没有改善学习行为。这些发现表明,给患有ID和(n-3)FAD的成年大鼠单独饲喂Fe或DHA / EPA,与联合补充相比,对DA和5-HT途径的影响不同,并且加剧了联合缺乏相关的认知缺陷。

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