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人源化饮食模式对人源化小鼠定殖效率和肠道微生物多样性的影响

Effect of a Humanized Diet Profile on Colonization Efficiency and Gut Microbial Diversity in Human Flora-Associated Mice.

作者信息

Dong Sashuang, Zeng BenHua, Hu Ling, Zhang Yuling, Xiong Jiaqi, Deng Jing, Huang Liyan, Liao ZhenLin, Wang Jie, Wei Hong, Fang Xiang

机构信息

College of Food Science, South China Agricultural University, Guangzhou, China.

Department of Laboratory Animal Science, College of Basic Medicine Science, Third Military Medical University, Chongqing, China.

出版信息

Front Nutr. 2021 Feb 23;8:633738. doi: 10.3389/fnut.2021.633738. eCollection 2021.

Abstract

Human flora-associated (HFA) mouse models allow us to design interventions for human disease research to test specific hypotheses and explore the complex commensal microbiome while avoiding the ethical limitations of using humans as models to directly study intestinal flora diseases. However, few studies have investigated the effect of a humanized diet profile (coarse-feed diet; CFD) on colonization efficiency and gut microbial diversity in HFA mice. We tested the colonization efficiency and gut microbial diversity in germ-free Kunming (KM) mice fed a CFD or a purified feed diet (PFD) at 1, 2, and 4 weeks. Although the colonization efficiencies differed significantly (67.50-70.00% vs. 72.69-85.96%) in the HFA mice, the colonization efficiency of the PFD-fed HFA mice (85.96%) was significantly higher than that of the CFD-fed mice (69.61%) at 2 weeks. At 4 weeks, the colonization efficiency of the PFD-fed mice (72.69%) was comparable to that of the CFD-fed mice (70.00%). Additionally, the gut microbial diversity of the CFD-fed HFA mice was similar to that of a human fecal donor. Regarding the Kyoto Encyclopedia of Genes and Genomes colonic microbiota metabolic pathways, the CFD-fed HFA mice showed more similarities to the human donor than to the PFD-fed mice in amino sugar and nucleotide sugar metabolism, biosynthesis of amino acids, carbon metabolism, purine metabolism, and phosphotransferase systems. In conclusion, the humanized diet profiles of the CFD and PFD could help establish human microbiotas in mice. Constructing HFA mouse models fed a CFD for 4 weeks may be useful in researching human-derived intestinal diseases.

摘要

人类菌群相关(HFA)小鼠模型使我们能够设计用于人类疾病研究的干预措施,以检验特定假设并探索复杂的共生微生物组,同时避免将人类用作模型直接研究肠道菌群疾病时的伦理限制。然而,很少有研究调查人性化饮食模式(粗饲料饮食;CFD)对HFA小鼠定植效率和肠道微生物多样性的影响。我们测试了在1周、2周和4周时喂食CFD或纯化饲料饮食(PFD)的无菌昆明(KM)小鼠的定植效率和肠道微生物多样性。尽管HFA小鼠的定植效率存在显著差异(67.50 - 70.00%对72.69 - 85.96%),但在2周时,喂食PFD的HFA小鼠的定植效率(85.96%)显著高于喂食CFD的小鼠(69.61%)。在4周时,喂食PFD的小鼠的定植效率(72.69%)与喂食CFD的小鼠(70.00%)相当。此外,喂食CFD的HFA小鼠的肠道微生物多样性与人类粪便供体相似。关于京都基因与基因组百科全书结肠微生物群代谢途径,在氨基糖和核苷酸糖代谢、氨基酸生物合成、碳代谢、嘌呤代谢和磷酸转移酶系统方面,喂食CFD的HFA小鼠与人类供体的相似性高于与喂食PFD的小鼠。总之,CFD和PFD的人性化饮食模式有助于在小鼠中建立人类微生物群。构建喂食CFD 4周的HFA小鼠模型可能有助于研究人类来源的肠道疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a71/7940529/ed1e14c84e52/fnut-08-633738-g0001.jpg

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