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Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study

Although previous studies suggest that amino acids (AAs) and microbiota-related metabolites (MRMs) are associated with type 2 diabetes mellitus (T2DM), the results remain unclear among normoglycemic populations. We test 28 serum AAs and 22 MRMs in 3,414 subjects with incident diabetes and matched no...

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Autores principales: Wang, Shuangyuan, Li, Mian, Lin, Hong, Wang, Guixia, Xu, Yu, Zhao, Xinjie, Hu, Chunyan, Zhang, Yi, Zheng, Ruizhi, Hu, Ruying, Shi, Lixin, Du, Rui, Su, Qing, Wang, Jiqiu, Chen, Yuhong, Yu, Xuefeng, Yan, Li, Wang, Tiange, Zhao, Zhiyun, Liu, Ruixin, Wang, Xiaolin, Li, Qi, Qin, Guijun, Wan, Qin, Chen, Gang, Xu, Min, Dai, Meng, Zhang, Di, Tang, Xulei, Gao, Zhengnan, Shen, Feixia, Luo, Zuojie, Qin, Yingfen, Chen, Li, Huo, Yanan, Li, Qiang, Ye, Zhen, Zhang, Yinfei, Liu, Chao, Wang, Youmin, Wu, Shengli, Yang, Tao, Deng, Huacong, Zhao, Jiajun, Lai, Shenghan, Mu, Yiming, Chen, Lulu, Li, Donghui, Xu, Guowang, Ning, Guang, Wang, Weiqing, Bi, Yufang, Lu, Jieli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9512668/
https://www.ncbi.nlm.nih.gov/pubmed/35998626
http://dx.doi.org/10.1016/j.xcrm.2022.100727
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author Wang, Shuangyuan
Li, Mian
Lin, Hong
Wang, Guixia
Xu, Yu
Zhao, Xinjie
Hu, Chunyan
Zhang, Yi
Zheng, Ruizhi
Hu, Ruying
Shi, Lixin
Du, Rui
Su, Qing
Wang, Jiqiu
Chen, Yuhong
Yu, Xuefeng
Yan, Li
Wang, Tiange
Zhao, Zhiyun
Liu, Ruixin
Wang, Xiaolin
Li, Qi
Qin, Guijun
Wan, Qin
Chen, Gang
Xu, Min
Dai, Meng
Zhang, Di
Tang, Xulei
Gao, Zhengnan
Shen, Feixia
Luo, Zuojie
Qin, Yingfen
Chen, Li
Huo, Yanan
Li, Qiang
Ye, Zhen
Zhang, Yinfei
Liu, Chao
Wang, Youmin
Wu, Shengli
Yang, Tao
Deng, Huacong
Zhao, Jiajun
Lai, Shenghan
Mu, Yiming
Chen, Lulu
Li, Donghui
Xu, Guowang
Ning, Guang
Wang, Weiqing
Bi, Yufang
Lu, Jieli
author_facet Wang, Shuangyuan
Li, Mian
Lin, Hong
Wang, Guixia
Xu, Yu
Zhao, Xinjie
Hu, Chunyan
Zhang, Yi
Zheng, Ruizhi
Hu, Ruying
Shi, Lixin
Du, Rui
Su, Qing
Wang, Jiqiu
Chen, Yuhong
Yu, Xuefeng
Yan, Li
Wang, Tiange
Zhao, Zhiyun
Liu, Ruixin
Wang, Xiaolin
Li, Qi
Qin, Guijun
Wan, Qin
Chen, Gang
Xu, Min
Dai, Meng
Zhang, Di
Tang, Xulei
Gao, Zhengnan
Shen, Feixia
Luo, Zuojie
Qin, Yingfen
Chen, Li
Huo, Yanan
Li, Qiang
Ye, Zhen
Zhang, Yinfei
Liu, Chao
Wang, Youmin
Wu, Shengli
Yang, Tao
Deng, Huacong
Zhao, Jiajun
Lai, Shenghan
Mu, Yiming
Chen, Lulu
Li, Donghui
Xu, Guowang
Ning, Guang
Wang, Weiqing
Bi, Yufang
Lu, Jieli
author_sort Wang, Shuangyuan
collection PubMed
description Although previous studies suggest that amino acids (AAs) and microbiota-related metabolites (MRMs) are associated with type 2 diabetes mellitus (T2DM), the results remain unclear among normoglycemic populations. We test 28 serum AAs and 22 MRMs in 3,414 subjects with incident diabetes and matched normoglycemic controls from the China Cardiometabolic Disease and Cancer Cohort (4C) Study. In fully adjusted logistic regression models, per SD increment of branched-chain AAs, aromatic AAs, asparagine, alanine, glutamic acid, homoserine, 2-aminoadipic acid, histidine, methionine, and proline are positively associated with incident T2DM. In the MRM panel, serum carnitines, N-acetyltryptophan, and uric acid are positively associated with incident T2DM. Causal mediation analyses indicate 34 significant causal mediation linkages, with 88.2% through obesity and lipids. Variances explained in the serum metabolites are modestly limited in the comprehensive catalog of risk factor–metabolite–diabetes associations. These findings reveal that systematic AAs and MRMs change profile before T2DM onset and support a potential role of metabolic alterations in the pathogenesis of diabetes.
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spelling pubmed-95126682022-09-28 Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study Wang, Shuangyuan Li, Mian Lin, Hong Wang, Guixia Xu, Yu Zhao, Xinjie Hu, Chunyan Zhang, Yi Zheng, Ruizhi Hu, Ruying Shi, Lixin Du, Rui Su, Qing Wang, Jiqiu Chen, Yuhong Yu, Xuefeng Yan, Li Wang, Tiange Zhao, Zhiyun Liu, Ruixin Wang, Xiaolin Li, Qi Qin, Guijun Wan, Qin Chen, Gang Xu, Min Dai, Meng Zhang, Di Tang, Xulei Gao, Zhengnan Shen, Feixia Luo, Zuojie Qin, Yingfen Chen, Li Huo, Yanan Li, Qiang Ye, Zhen Zhang, Yinfei Liu, Chao Wang, Youmin Wu, Shengli Yang, Tao Deng, Huacong Zhao, Jiajun Lai, Shenghan Mu, Yiming Chen, Lulu Li, Donghui Xu, Guowang Ning, Guang Wang, Weiqing Bi, Yufang Lu, Jieli Cell Rep Med Article Although previous studies suggest that amino acids (AAs) and microbiota-related metabolites (MRMs) are associated with type 2 diabetes mellitus (T2DM), the results remain unclear among normoglycemic populations. We test 28 serum AAs and 22 MRMs in 3,414 subjects with incident diabetes and matched normoglycemic controls from the China Cardiometabolic Disease and Cancer Cohort (4C) Study. In fully adjusted logistic regression models, per SD increment of branched-chain AAs, aromatic AAs, asparagine, alanine, glutamic acid, homoserine, 2-aminoadipic acid, histidine, methionine, and proline are positively associated with incident T2DM. In the MRM panel, serum carnitines, N-acetyltryptophan, and uric acid are positively associated with incident T2DM. Causal mediation analyses indicate 34 significant causal mediation linkages, with 88.2% through obesity and lipids. Variances explained in the serum metabolites are modestly limited in the comprehensive catalog of risk factor–metabolite–diabetes associations. These findings reveal that systematic AAs and MRMs change profile before T2DM onset and support a potential role of metabolic alterations in the pathogenesis of diabetes. Elsevier 2022-08-22 /pmc/articles/PMC9512668/ /pubmed/35998626 http://dx.doi.org/10.1016/j.xcrm.2022.100727 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Wang, Shuangyuan
Li, Mian
Lin, Hong
Wang, Guixia
Xu, Yu
Zhao, Xinjie
Hu, Chunyan
Zhang, Yi
Zheng, Ruizhi
Hu, Ruying
Shi, Lixin
Du, Rui
Su, Qing
Wang, Jiqiu
Chen, Yuhong
Yu, Xuefeng
Yan, Li
Wang, Tiange
Zhao, Zhiyun
Liu, Ruixin
Wang, Xiaolin
Li, Qi
Qin, Guijun
Wan, Qin
Chen, Gang
Xu, Min
Dai, Meng
Zhang, Di
Tang, Xulei
Gao, Zhengnan
Shen, Feixia
Luo, Zuojie
Qin, Yingfen
Chen, Li
Huo, Yanan
Li, Qiang
Ye, Zhen
Zhang, Yinfei
Liu, Chao
Wang, Youmin
Wu, Shengli
Yang, Tao
Deng, Huacong
Zhao, Jiajun
Lai, Shenghan
Mu, Yiming
Chen, Lulu
Li, Donghui
Xu, Guowang
Ning, Guang
Wang, Weiqing
Bi, Yufang
Lu, Jieli
Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title_full Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title_fullStr Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title_full_unstemmed Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title_short Amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic Chinese adults: Findings from the 4C study
title_sort amino acids, microbiota-related metabolites, and the risk of incident diabetes among normoglycemic chinese adults: findings from the 4c study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9512668/
https://www.ncbi.nlm.nih.gov/pubmed/35998626
http://dx.doi.org/10.1016/j.xcrm.2022.100727
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