A red wine intervention does not modify plasma trimethylamine N-oxide but is associated with broad shifts in the plasma metabolome and gut microbiota composition

被引:13
|
作者
Haas, Elisa A. [1 ]
Saad, Mario J. A. [2 ]
Santos, Andrey [2 ]
Vitulo, Nicola [3 ]
Lemos, Wilson J. F., Jr. [4 ]
Martins, Aline M. A. [5 ]
Picossi, Carolina R. C. [6 ]
Favarato, Desiderio [1 ]
Gaspar, Renato S. [1 ]
Magro, Daniela O. [2 ]
Libby, Peter [7 ]
Laurindo, Francisco R. M. [1 ]
Da Luz, Protasio L. [1 ]
机构
[1] Univ Sao Paulo, Hosp Clin HCFMUSP, Fac Med, Inst Coracao InCor, Sao Paulo, SP, Brazil
[2] State Univ Campinas UNICAMP, Dept Internal Med, Campinas, SP, Brazil
[3] Verona Univ, Dept Biotechnol, Verona, Italy
[4] AIT Austrian Inst Technol GmbH, Ctr Hlth & Bioresources, Bioresources Unit, Tulln, Austria
[5] Univ Brasilia UnB, Dept Med Sci, Brasilia, DF, Brazil
[6] Univ Sao Paulo, Inst Chem, Sao Paulo, SP, Brazil
[7] Harvard Med Sch, Brigham & Womens Hosp, Dept Med, Div Cardiovasc Med, Boston, MA 02115 USA
关键词
gut microbiota; metabolomics; trimethylamine N-oxide (TMAO); coronary artery disease; wine; redox; INTESTINAL MICROBIOTA; CARDIOVASCULAR HEALTH; ALCOHOL; POLYPHENOLS; PHOSPHATIDYLCHOLINE; ETHANOL;
D O I
10.1093/ajcn/nqac286
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Background Gut microbiota profiles are closely related to cardiovascular diseases through mechanisms that include the reported deleterious effects of metabolites, such as trimethylamine N-oxide (TMAO), which have been studied as diagnostic and therapeutic targets. Moderate red wine (RW) consumption is reportedly cardioprotective, possibly by affecting the gut microbiota. Objectives To investigate the effects of RW consumption on the gut microbiota, plasma TMAO, and the plasma metabolome in men with documented coronary artery disease (CAD) using a multiomics assessment in a crossover trial. Methods We conducted a randomized, crossover, controlled trial involving 42 men (average age, 60 y) with documented CAD comparing 3-wk RW consumption (250 mL/d, 5 d/wk) with an equal period of alcohol abstention, both preceded by a 2-wk washout period. The gut microbiota was analyzed via 16S rRNA high-throughput sequencing. Plasma TMAO was evaluated by LC-MS/MS. The plasma metabolome of 20 randomly selected participants was evaluated by ultra-high-performance LC-MS/MS. The effect of RW consumption was assessed by individual comparisons using paired tests during the abstention and RW periods. Results Plasma TMAO did not differ between RW intervention and alcohol abstention, and TMAO concentrations showed low intraindividual concordance over time, with an intraclass correlation coefficient of 0.049 during the control period. After RW consumption, there was significant remodeling of the gut microbiota, with a difference in beta diversity and predominance of Parasutterella, Ruminococcaceae, several Bacteroides species, and Prevotella. Plasma metabolomic analysis revealed significant changes in metabolites after RW consumption, consistent with improved redox homeostasis. Conclusions Modulation of the gut microbiota may contribute to the putative cardiovascular benefits of moderate RW consumption. The low intraindividual concordance of TMAO presents challenges regarding its role as a cardiovascular risk biomarker at the individual level. This study was registered at clinical trials.gov as NCT03232099.
引用
收藏
页码:1515 / 1529
页数:15
相关论文
共 20 条
  • [1] Effects of Lifestyle Intervention on Plasma Trimethylamine N-Oxide in Obese Adults
    Erickson, Melissa L.
    Malin, Steven K.
    Wang, Zeneng
    Brown, J. Mark
    Hazen, Stanley L.
    Kirwan, John P.
    NUTRIENTS, 2019, 11 (01)
  • [2] Diabetes is Associated with Higher Trimethylamine N-oxide Plasma Levels
    Dambrova, M.
    Latkovskis, G.
    Kuka, J.
    Strele, I.
    Konrade, I.
    Grinberga, S.
    Hartmane, D.
    Pugovics, O.
    Erglis, A.
    Liepinsh, E.
    EXPERIMENTAL AND CLINICAL ENDOCRINOLOGY & DIABETES, 2016, 124 (04) : 251 - 256
  • [3] Plasma trimethylamine N-oxide, a gut microbe generated phosphatidylcholine metabolite, is associated with autism spectrum disorders
    Quan, Lijuan
    Yi, Jinping
    Zhao, Yue
    Zhang, Feng
    Shi, Xiao-Tong
    Feng, Zhen
    Miller, Haylie L.
    NEUROTOXICOLOGY, 2020, 76 : 93 - 98
  • [4] Alzheimer's disease and gut microbiota: does trimethylamine N-oxide (TMAO) play a role?
    Cardoza, Pablo Arrona
    Spillane, Micheil B.
    Marroquin, Elisa Morales
    NUTRITION REVIEWS, 2022, 80 (02) : 271 - 281
  • [5] Plasma trimethylamine N-oxide concentration is associated with choline, phospholipids, and methyl metabolism
    Obeid, Rima
    Awwad, Hussain M.
    Rabagny, Yannick
    Graeber, Stefan
    Herrmann, Wolfgang
    Geisel, Juergen
    AMERICAN JOURNAL OF CLINICAL NUTRITION, 2016, 103 (03) : 703 - 711
  • [6] Bifidobacterium breve and Bifidobacterium longum Attenuate Choline-Induced Plasma Trimethylamine N-Oxide Production by Modulating Gut Microbiota in Mice
    Wang, Qianqian
    Guo, Min
    Liu, Yang
    Xu, Mengshu
    Shi, Liuting
    Li, Xiu
    Zhao, Jianxin
    Zhang, Hao
    Wang, Gang
    Chen, Wei
    NUTRIENTS, 2022, 14 (06)
  • [7] Inulin Supplementation Does Not Reduce Plasma Trimethylamine N-Oxide Concentrations in Individuals at Risk for Type 2 Diabetes
    Baugh, Mary Elizabeth
    Steele, Cortney N.
    Angiletta, Christopher J.
    Mitchell, Cassie M.
    Neilson, Andrew P.
    Davy, Brenda M.
    Hulver, Matthew W.
    Davy, Kevin P.
    NUTRIENTS, 2018, 10 (06):
  • [8] High plasma levels of trimethylamine N-oxide are associated with poor outcome in intracerebral hemorrhage patients
    Zhai, Qijin
    Sun, Taipeng
    Sun, Chuanfu
    Yan, Luxia
    Wang, Xiang
    Wang, Yuqian
    Sun, Junshan
    Zhao, Ying
    NEUROLOGICAL SCIENCES, 2021, 42 (03) : 1009 - 1016
  • [9] Vitamin D Decreases Plasma Trimethylamine-N-oxide Level in Mice by Regulating Gut Microbiota
    Wang, Xin
    Li, Xueqi
    Dong, Yumei
    BIOMED RESEARCH INTERNATIONAL, 2020, 2020
  • [10] Gut Colonization with Methanogenic Archaea Lowers Plasma Trimethylamine N-oxide Concentrations in Apolipoprotein e-/- Mice
    Ramezani, Ali
    Nolin, Thomas D.
    Barrows, Ian R.
    Serrano, Myrna G.
    Buck, Gregory A.
    Regunathan-Shenk, Renu
    West, Raymond E., III
    Latham, Patricia S.
    Amdur, Richard
    Raj, Dominic S.
    SCIENTIFIC REPORTS, 2018, 8