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添加益生元可改善生酮饮食对代谢的影响,但对婴儿痉挛综合征啮齿动物模型的癫痫发作无影响。

Addition of Prebiotics to the Ketogenic Diet Improves Metabolic Profile but Does Not Affect Seizures in a Rodent Model of Infantile Spasms Syndrome.

机构信息

Department of Biochemistry and Molecular Biology, Cumming School of Medicine, University of Calgary, 3330 Hospital Drive NW, Calgary, AB T2N 4N1, Canada.

Faculty of Kinesiology, University of Calgary, 2500 University Drive NW, Calgary, AB T2N 1N4, Canada.

出版信息

Nutrients. 2022 May 26;14(11):2210. doi: 10.3390/nu14112210.

Abstract

The ketogenic diet (KD) is an effective treatment for infantile spasms syndrome (IS). However, the KD has implications for somatic growth, development, and the gut microbiota. The impact of incorporating a prebiotic fiber (PRE, oligofructose-enriched inulin, 0.8 g/dL) into a KD diet on spasms, developmental milestones, fecal gut microbiota, metabolites, and hippocampal mitochondrial metabolism were examined. Following IS induction, animals were randomized to KD or KD + PRE diets. A third group without IS and suckled by dams was included as a normally developing reference group (R). PRE inclusion decreased ketones and increased circulating glucose levels but had no impact on spasms. In the liver, PRE increased triglyceride concentrations, decreased carnitine levels, and downregulated genes encoding enzymes responsible for ketogenesis. In the hippocampus, PRE increased glutathione levels but did not affect the maximal respiratory capacity of mitochondria. Analysis of the gut microbiota showed that KD + PRE increased microbial richness and the relative abundance of and . No differences in developmental milestones (i.e., surface righting, negative geotaxis, and open field behavior) were observed between KD and KD + PRE, except for ultrasonic vocalizations that were more frequent in KD + PRE. In summary, PRE did not impact spasms or developmental outcomes, but was effective in improving both metabolic parameters and gut microbiota diversity.

摘要

生酮饮食(KD)是婴儿痉挛症(IS)的有效治疗方法。然而,KD 会对躯体生长、发育和肠道微生物群产生影响。本研究旨在探究在 KD 饮食中添加一种益生元纤维(PRE,富含低聚果糖的菊粉,0.8 g/dL)对痉挛、发育里程碑、粪便肠道微生物群、代谢产物和海马线粒体代谢的影响。在诱导 IS 后,动物被随机分为 KD 或 KD+PRE 饮食组。还包括一组未发生 IS 且由母鼠哺乳的动物作为正常发育的参考组(R)。PRE 的添加降低了酮体水平并增加了循环葡萄糖水平,但对痉挛无影响。在肝脏中,PRE 增加了甘油三酯浓度,降低了肉碱水平,并下调了参与酮体生成的酶的基因表达。在海马体中,PRE 增加了谷胱甘肽水平,但没有影响线粒体的最大呼吸能力。肠道微生物群分析显示,KD+PRE 增加了微生物丰富度和相对丰度较高的 和 的含量。KD 和 KD+PRE 之间在发育里程碑(即表面翻正、负趋地性和旷场行为)方面没有差异,除了 KD+PRE 中更频繁的超声发声。总之,PRE 对痉挛或发育结果没有影响,但能有效改善代谢参数和肠道微生物群多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/410f/9182787/efcd0110f656/nutrients-14-02210-g001.jpg

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