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甜味剂通过肠道黏膜微生物群对宿主生理的影响:以七味白术散中的添加甜味剂对抗生素相关性腹泻小鼠肠道黏膜微生物群的影响为例。

Effects of sweeteners on host physiology by intestinal mucosal microbiota: Example-addition sweeteners in Qiweibaizhu Powder on intestinal mucosal microbiota of mice with antibiotic-associated diarrhea.

作者信息

Qiao Bo, Liu Jing, Xiao Nenqun, Tan Zhoujin, Peng Maijiao

机构信息

College of Chinese Medicine, Hunan University of Chinese Medicine, Changsha, China.

College of Pharmacy, Hunan University of Chinese Medicine, Changsha, China.

出版信息

Front Nutr. 2022 Oct 20;9:1038364. doi: 10.3389/fnut.2022.1038364. eCollection 2022.

Abstract

In recent years, sweeteners have gained massive popularity under the trend of limiting sugar intake. Our previous study found that Qiweibaizhu Powder (QWBZP) could improve gut microbiota dysbiosis and has good efficacy in treating antibiotic-associated diarrhea (AAD). In this study, we investigated the effects of sucrose, sorbitol, xylitol, and saccharin on the intestinal mucosal microbiota of AAD mice treated with QWBZP. When the AAD model was constructed by being gavaged mixed antibiotic solution, Kunming mice were randomly assigned to seven groups: the control (mn) group, the ADD (mm) group, the QWBZP (mq) group, the saccharin + QWBZP (mc) group, the sucrose + QWBZP (ms) group, the xylito + QWBZP (mx) group, and the sorbitol + QWBZP (msl) group. Subsequently, 16S rRNA gene amplicon sequencing was used to analyze the intestinal mucosal microbiota composition and abundance. The results showed that feces from AAD mice were diluted and wet and improved diarrhea symptoms with QWBZP and sorbitol. In contrast, the addition of sucrose, saccharin, and xylitol delayed the healing of diarrhea. The relative abundance of intestinal mucosal microbiota showed , , and were characteristic bacteria of the mx group, , and S24-7_group as the typical bacteria of the mn group, _innocuum_group as the distinct bacteria of the mm group. and as the characteristic bacteria of the ms group. Correlation analysis of typical bacterial genera with metabolic functions shows that negatively correlates with D-Glutamine and D-glutamate metabolism. _S24-7_group has a significant negative correlation with the Synthesis and degradation of ketone bodies. The study confirmed that sucrose, sorbitol, xylitol, and saccharin might further influence metabolic function by altering the intestinal mucosal microbiota. Compared to the other sweetener, adding sorbitol to QWBZP was the best therapeutic effect for AAD and increased the biosynthesis and degradation activities. It provides the experimental basis for applying artificial sweeteners in traditional Chinese medicine (TCM) as a reference for further rational development and safe use of artificial sweeteners.

摘要

近年来,在限制糖摄入的趋势下,甜味剂广受欢迎。我们之前的研究发现,七味白术散(QWBZP)可以改善肠道微生物群失调,并且在治疗抗生素相关性腹泻(AAD)方面具有良好疗效。在本研究中,我们调查了蔗糖、山梨醇、木糖醇和糖精对用QWBZP治疗的AAD小鼠肠道黏膜微生物群的影响。通过灌胃混合抗生素溶液构建AAD模型时,将昆明小鼠随机分为七组:对照组(mn)、AAD组(mm)、QWBZP组(mq)、糖精+QWBZP组(mc)、蔗糖+QWBZP组(ms)、木糖醇+QWBZP组(mx)和山梨醇+QWBZP组(msl)。随后,采用16S rRNA基因扩增子测序分析肠道黏膜微生物群的组成和丰度。结果显示,AAD小鼠的粪便变稀且湿润,QWBZP和山梨醇可改善腹泻症状。相比之下,添加蔗糖、糖精和木糖醇会延迟腹泻的愈合。肠道黏膜微生物群的相对丰度显示,mx组的特征菌为 、 ,mn组的典型菌为 、S24 - 7_group,mm组的独特菌为_innocuum_group,ms组的特征菌为 和 。典型细菌属与代谢功能的相关性分析表明, 与D - 谷氨酰胺和D - 谷氨酸代谢呈负相关。_S24 - 7_group与酮体的合成与降解呈显著负相关。该研究证实,蔗糖、山梨醇、木糖醇和糖精可能通过改变肠道黏膜微生物群进一步影响代谢功能。与其他甜味剂相比,在QWBZP中添加山梨醇对AAD的治疗效果最佳,并增加了生物合成和降解活性。它为将人工甜味剂应用于中药提供了实验依据,为进一步合理开发和安全使用人工甜味剂提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f41/9631320/c633f5a8244d/fnut-09-1038364-g001.jpg

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