文献检索文档翻译深度研究
Suppr Zotero 插件Zotero 插件
邀请有礼套餐&价格历史记录

新学期,新优惠

限时优惠:9月1日-9月22日

30天高级会员仅需29元

1天体验卡首发特惠仅需5.99元

了解详情
不再提醒
插件&应用
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
高级版
套餐订阅购买积分包
AI 工具
文献检索文档翻译深度研究
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2025

宿主和肠道微生物色氨酸代谢与 2 型糖尿病:基于队列研究的宿主遗传学、饮食、肠道微生物组和循环代谢物的综合分析。

Host and gut microbial tryptophan metabolism and type 2 diabetes: an integrative analysis of host genetics, diet, gut microbiome and circulating metabolites in cohort studies.

机构信息

Department of Epidemiology and Population Health, Yeshiva University Albert Einstein College of Medicine, Bronx, New York, USA

Department of Nutrtion, Harvard University T H Chan School of Public Health, Boston, Massachusetts, USA.

出版信息

Gut. 2022 Jun;71(6):1095-1105. doi: 10.1136/gutjnl-2021-324053. Epub 2021 Jun 14.


DOI:10.1136/gutjnl-2021-324053
PMID:34127525
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8697256/
Abstract

OBJECTIVE: Tryptophan can be catabolised to various metabolites through host kynurenine and microbial indole pathways. We aimed to examine relationships of host and microbial tryptophan metabolites with incident type 2 diabetes (T2D), host genetics, diet and gut microbiota. METHOD: We analysed associations between circulating levels of 11 tryptophan metabolites and incident T2D in 9180 participants of diverse racial/ethnic backgrounds from five cohorts. We examined host genome-wide variants, dietary intake and gut microbiome associated with these metabolites. RESULTS: Tryptophan, four kynurenine-pathway metabolites (kynurenine, kynurenate, xanthurenate and quinolinate) and indolelactate were positively associated with T2D risk, while indolepropionate was inversely associated with T2D risk. We identified multiple host genetic variants, dietary factors, gut bacteria and their potential interplay associated with these T2D-relaetd metabolites. Intakes of fibre-rich foods, but not protein/tryptophan-rich foods, were the dietary factors most strongly associated with tryptophan metabolites. The fibre-indolepropionate association was partially explained by indolepropionate-associated gut bacteria, mostly fibre-using . We identified a novel association between a host functional variant (determining lactase persistence) and serum indolepropionate, which might be related to a host gene-diet interaction on gut , a probiotic bacterium significantly associated with indolepropionate independent of other fibre-related bacteria. Higher milk intake was associated with higher levels of gut and serum indolepropionate only among genetically lactase non-persistent individuals. CONCLUSION: Higher milk intake among lactase non-persistent individuals, and higher fibre intake were associated with a favourable profile of circulating tryptophan metabolites for T2D, potentially through the host-microbial cross-talk shifting tryptophan metabolism toward gut microbial indolepropionate production.

摘要

目的:色氨酸可通过宿主犬尿酸和微生物吲哚途径代谢为各种代谢物。我们旨在研究宿主和微生物色氨酸代谢物与 2 型糖尿病(T2D)发病的关系,以及与宿主遗传、饮食和肠道微生物群的关系。

方法:我们分析了来自五个队列的 9180 名不同种族/族裔背景参与者循环中 11 种色氨酸代谢物与 T2D 发病之间的关系。我们研究了与这些代谢物相关的宿主全基因组变异、饮食摄入和肠道微生物组。

结果:色氨酸、四种犬尿酸途径代谢物(犬尿酸、犬尿酸盐、黄尿酸盐和喹啉酸盐)和吲哚乳酸与 T2D 风险呈正相关,而吲哚丙酸与 T2D 风险呈负相关。我们确定了多个与这些与 T2D 相关的代谢物相关的宿主遗传变异、饮食因素、肠道细菌及其潜在相互作用。富含纤维的食物摄入,而不是富含蛋白质/色氨酸的食物摄入,是与色氨酸代谢物最密切相关的饮食因素。纤维-吲哚丙酸的相关性部分可以通过与吲哚丙酸相关的肠道细菌来解释,这些细菌主要是利用纤维的。我们发现了一个宿主功能变异(决定乳糖酶持续存在)与血清吲哚丙酸之间的新关联,这可能与宿主基因-饮食相互作用有关,这种相互作用与肠道中的一种益生菌有关,这种益生菌与其他纤维相关细菌无关,独立于其他纤维相关细菌与吲哚丙酸显著相关。只有在乳糖酶非持续存在的个体中,较高的牛奶摄入量与较高的肠道和血清吲哚丙酸水平相关。

结论:乳糖酶非持续存在的个体中较高的牛奶摄入量以及较高的纤维摄入量与 T2D 循环色氨酸代谢物的有利特征相关,这可能是通过宿主-微生物的交叉对话,将色氨酸代谢向肠道微生物吲哚丙酸的产生转移。

相似文献

[1]
Host and gut microbial tryptophan metabolism and type 2 diabetes: an integrative analysis of host genetics, diet, gut microbiome and circulating metabolites in cohort studies.

Gut. 2022-6

[2]
Gut Microbiota and Blood Metabolites Related to Fiber Intake and Type 2 Diabetes.

Circ Res. 2024-3-29

[3]
Variant of the lactase LCT gene explains association between milk intake and incident type 2 diabetes.

Nat Metab. 2024-1

[4]
Interplay between diet, circulating indolepropionate concentrations and cardiometabolic health in US populations.

Gut. 2023-11-24

[5]
Serum metabolites reflecting gut microbiome alpha diversity predict type 2 diabetes.

Gut Microbes. 2020-11-1

[6]
Emerging effects of tryptophan pathway metabolites and intestinal microbiota on metabolism and intestinal function.

Amino Acids. 2022-1

[7]
Impact of HIV and Type 2 diabetes on Gut Microbiota Diversity, Tryptophan Catabolism and Endothelial Dysfunction.

Sci Rep. 2018-4-30

[8]
Dietary fruit and vegetable intake, gut microbiota, and type 2 diabetes: results from two large human cohort studies.

BMC Med. 2020-12-3

[9]
Associations of gut microbiota features and circulating metabolites with systemic inflammation in children.

BMJ Open Gastroenterol. 2024-8-29

[10]
Oral tryptophan activates duodenal aryl hydrocarbon receptor in healthy subjects: a crossover randomized controlled trial.

Am J Physiol Gastrointest Liver Physiol. 2024-6-1

引用本文的文献

[1]
The Impact of Low-Lactose, High Galacto-Oligosaccharides Milk on Gut Microbiome and Plasma Metabolome in Healthy Adults: A Randomized, Double-Blind, Controlled Clinical Trial Complemented by Ex Vivo Experiments.

Curr Dev Nutr. 2025-7-24

[2]
Multi-omics investigation of spontaneous T2DM macaque emphasizes gut microbiota could up-regulate the absorption of excess palmitic acid in the T2DM progression.

Elife. 2025-8-29

[3]
Interplays of Genotype, Alcohol Consumption, and Gut Microbiota in Relation to Insulin Resistance.

Nutrients. 2025-8-18

[4]
Baihu Jia Renshen Decoction Improves Type 1 Diabetic Rats by Modulating Metabolic Profile.

Int J Endocrinol. 2025-8-18

[5]
Citrus Pectin Supplementation Alleviated Hepatic Lipid Accumulation through Gut Microbiota Indole Lactic Acid Promoting Hepatic Bile Acid Synthesis and Excretion.

Int J Biol Sci. 2025-7-28

[6]
Pentosan polysulfate alleviates interstitial cystitis/bladder pain syndrome by modulating bile acid metabolism and activating the TGR5 receptor through gut microbiota regulation.

Bladder (San Franc). 2025-3-24

[7]
Human Digestive Physiology and Evolutionary Diet: A Metabolomic Perspective on Carnivorous and Scavenger Adaptations.

Metabolites. 2025-7-4

[8]
Amino acid intake, plasma metabolites, and incident type 2 diabetes risk: a systematic approach in prospective cohort studies.

Nutr J. 2025-7-16

[9]
Association Between Plant-Based Diets and Metabolic Syndrome in Zhejiang, China: A Cross-Sectional Study.

Nutrients. 2025-6-28

[10]
Impact of gut microbiome on atrial fibrillation: Mechanistic insights and future directions in individualized medicine.

World J Cardiol. 2025-6-26

本文引用的文献

[1]
Serum sphingolipids and incident diabetes in a US population with high diabetes burden: the Hispanic Community Health Study/Study of Latinos (HCHS/SOL).

Am J Clin Nutr. 2020-7-1

[2]
Microbiota-Related Metabolites and the Risk of Type 2 Diabetes.

Diabetes Care. 2020-6

[3]
Role of gut microbiota in type 2 diabetes pathophysiology.

EBioMedicine. 2020-1-3

[4]
Gut microbiome composition in the Hispanic Community Health Study/Study of Latinos is shaped by geographic relocation, environmental factors, and obesity.

Genome Biol. 2019-11-1

[5]
Longitudinal multi-omics of host-microbe dynamics in prediabetes.

Nature. 2019-5-29

[6]
Circulating levels of the anti-oxidant indoleproprionic acid are associated with higher gut microbiome diversity.

Gut Microbes. 2019-4-29

[7]
Evaluating the Information Content of Shallow Shotgun Metagenomics.

mSystems. 2018-11-13

[8]
Distinguishing genetic correlation from causation across 52 diseases and complex traits.

Nat Genet. 2018-10-29

[9]
Fine-mapping type 2 diabetes loci to single-variant resolution using high-density imputation and islet-specific epigenome maps.

Nat Genet. 2018-10-8

[10]
Microbial tryptophan catabolites in health and disease.

Nat Commun. 2018-8-17

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

推荐工具

医学文档翻译智能文献检索