Intestinal Blastocystis is linked to healthier diets and more favorable cardiometabolic outcomes in 56,989 individuals from 32 countries
Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We perfor...
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Published in | Cell Vol. 187; no. 17; pp. 4554 - 4570.e18 |
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Main Authors | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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United States
Elsevier Inc
22.08.2024
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Abstract | Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We performed a global-scale analysis on 56,989 metagenomes and showed that human Blastocystis exhibits distinct prevalence patterns linked to geography, lifestyle, and dietary habits. Blastocystis presence defined a specific bacterial signature and was positively associated with more favorable cardiometabolic profiles and negatively with obesity (p < 1e–16) and disorders linked to altered gut ecology (p < 1e–8). In a diet intervention study involving 1,124 individuals, improvements in dietary quality were linked to weight loss and increases in Blastocystis prevalence (p = 0.003) and abundance (p < 1e–7). Our findings suggest a potentially beneficial role for Blastocystis, which may help explain personalized host responses to diet and downstream disease etiopathogenesis.
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•Prevalence of Blastocystis in the gut microbiome varies across geography and lifestyle•Healthier plant-based diets are linked with higher gut Blastocystis carriage•Blastocystis-positive subjects tend to have healthier cardiometabolic profiles•Blastocystis presence increases after a diet-improving intervention program
A global-scale metagenomic exploration of Blastocystis was performed from 56,989 individuals across 32 countries. Blastocystis was seen to be widely present in healthy adults, with prevalence and abundance patterns linked to geography, dietary habits, and cardiometabolic profiles. |
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AbstractList | Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We performed a global-scale analysis on 56,989 metagenomes and showed that human Blastocystis exhibits distinct prevalence patterns linked to geography, lifestyle, and dietary habits. Blastocystis presence defined a specific bacterial signature and was positively associated with more favorable cardiometabolic profiles and negatively with obesity (p < 1e–16) and disorders linked to altered gut ecology (p < 1e–8). In a diet intervention study involving 1,124 individuals, improvements in dietary quality were linked to weight loss and increases in Blastocystis prevalence (p = 0.003) and abundance (p < 1e–7). Our findings suggest a potentially beneficial role for Blastocystis, which may help explain personalized host responses to diet and downstream disease etiopathogenesis.
[Display omitted]
•Prevalence of Blastocystis in the gut microbiome varies across geography and lifestyle•Healthier plant-based diets are linked with higher gut Blastocystis carriage•Blastocystis-positive subjects tend to have healthier cardiometabolic profiles•Blastocystis presence increases after a diet-improving intervention program
A global-scale metagenomic exploration of Blastocystis was performed from 56,989 individuals across 32 countries. Blastocystis was seen to be widely present in healthy adults, with prevalence and abundance patterns linked to geography, dietary habits, and cardiometabolic profiles. Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We performed a global-scale analysis on 56,989 metagenomes and showed that human Blastocystis exhibits distinct prevalence patterns linked to geography, lifestyle, and dietary habits. Blastocystis presence defined a specific bacterial signature and was positively associated with more favorable cardiometabolic profiles and negatively with obesity (p < 1e-16) and disorders linked to altered gut ecology (p < 1e-8). In a diet intervention study involving 1,124 individuals, improvements in dietary quality were linked to weight loss and increases in Blastocystis prevalence (p = 0.003) and abundance (p < 1e-7). Our findings suggest a potentially beneficial role for Blastocystis, which may help explain personalized host responses to diet and downstream disease etiopathogenesis.Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We performed a global-scale analysis on 56,989 metagenomes and showed that human Blastocystis exhibits distinct prevalence patterns linked to geography, lifestyle, and dietary habits. Blastocystis presence defined a specific bacterial signature and was positively associated with more favorable cardiometabolic profiles and negatively with obesity (p < 1e-16) and disorders linked to altered gut ecology (p < 1e-8). In a diet intervention study involving 1,124 individuals, improvements in dietary quality were linked to weight loss and increases in Blastocystis prevalence (p = 0.003) and abundance (p < 1e-7). Our findings suggest a potentially beneficial role for Blastocystis, which may help explain personalized host responses to diet and downstream disease etiopathogenesis. Diet impacts human health, influencing body adiposity and the risk of developing cardiometabolic diseases. The gut microbiome is a key player in the diet-health axis, but while its bacterial fraction is widely studied, the role of micro-eukaryotes, including Blastocystis, is underexplored. We performed a global-scale analysis on 56,989 metagenomes and showed that human Blastocystis exhibits distinct prevalence patterns linked to geography, lifestyle, and dietary habits. Blastocystis presence defined a specific bacterial signature and was positively associated with more favorable cardiometabolic profiles and negatively with obesity (p < 1e-16) and disorders linked to altered gut ecology (p < 1e-8). In a diet intervention study involving 1,124 individuals, improvements in dietary quality were linked to weight loss and increases in Blastocystis prevalence (p = 0.003) and abundance (p < 1e-7). Our findings suggest a potentially beneficial role for Blastocystis, which may help explain personalized host responses to diet and downstream disease etiopathogenesis. |
Author | Arrè, Alberto Cucca, Francesco Bakker, Elco Pitzalis, Maristella Wolf, Jonathan Ercolini, Danilo Kim, Hanseul Valles-Colomer, Mireia Masala, Marco Leeming, Emily R. Pala, Mauro Berry, Sarah E. Asnicar, Francesco Blanco-Míguez, Aitor Segata, Nicola Andreu-Sánchez, Sergio Busonero, Fabio McIver, Lauren J. Huttenhower, Curtis Maschio, Andrea Bermingham, Kate M. Fu, Jingyuan Davies, Richard Lobina, Monia Pasolli, Edoardo Manghi, Paolo Cacciò, Simone M. Spector, Tim D. Giordano, Francesca Hadjigeorgiou, George Nguyen, Long H. Fiorillo, Edoardo Chan, Andrew T. Zhernakova, Alexandra Piperni, Elisa Manara, Serena |
Author_xml | – sequence: 1 givenname: Elisa surname: Piperni fullname: Piperni, Elisa organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 2 givenname: Long H. surname: Nguyen fullname: Nguyen, Long H. organization: Clinical and Translational Epidemiology Unit, Massachusetts General Hospital, Boston, MA, USA – sequence: 3 givenname: Paolo surname: Manghi fullname: Manghi, Paolo organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 4 givenname: Hanseul surname: Kim fullname: Kim, Hanseul organization: Clinical and Translational Epidemiology Unit, Massachusetts General Hospital, Boston, MA, USA – sequence: 5 givenname: Edoardo surname: Pasolli fullname: Pasolli, Edoardo organization: Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy – sequence: 6 givenname: Sergio surname: Andreu-Sánchez fullname: Andreu-Sánchez, Sergio organization: Department of Genetics, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands – sequence: 7 givenname: Alberto surname: Arrè fullname: Arrè, Alberto organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 8 givenname: Kate M. surname: Bermingham fullname: Bermingham, Kate M. organization: Zoe Ltd, London, UK – sequence: 9 givenname: Aitor surname: Blanco-Míguez fullname: Blanco-Míguez, Aitor organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 10 givenname: Serena surname: Manara fullname: Manara, Serena organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 11 givenname: Mireia surname: Valles-Colomer fullname: Valles-Colomer, Mireia organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 12 givenname: Elco surname: Bakker fullname: Bakker, Elco organization: Zoe Ltd, London, UK – sequence: 13 givenname: Fabio surname: Busonero fullname: Busonero, Fabio organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 14 givenname: Richard surname: Davies fullname: Davies, Richard organization: Zoe Ltd, London, UK – sequence: 15 givenname: Edoardo surname: Fiorillo fullname: Fiorillo, Edoardo organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 16 givenname: Francesca surname: Giordano fullname: Giordano, Francesca organization: Zoe Ltd, London, UK – sequence: 17 givenname: George surname: Hadjigeorgiou fullname: Hadjigeorgiou, George organization: Zoe Ltd, London, UK – sequence: 18 givenname: Emily R. surname: Leeming fullname: Leeming, Emily R. organization: Department of Twins Research and Genetic Epidemiology, King’s College London, London, UK – sequence: 19 givenname: Monia surname: Lobina fullname: Lobina, Monia organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 20 givenname: Marco surname: Masala fullname: Masala, Marco organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 21 givenname: Andrea surname: Maschio fullname: Maschio, Andrea organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 22 givenname: Lauren J. surname: McIver fullname: McIver, Lauren J. organization: Harvard T.H. Chan School of Public Health, Boston, MA, USA – sequence: 23 givenname: Mauro surname: Pala fullname: Pala, Mauro organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 24 givenname: Maristella surname: Pitzalis fullname: Pitzalis, Maristella organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 25 givenname: Jonathan surname: Wolf fullname: Wolf, Jonathan organization: Zoe Ltd, London, UK – sequence: 26 givenname: Jingyuan surname: Fu fullname: Fu, Jingyuan organization: Department of Genetics, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands – sequence: 27 givenname: Alexandra surname: Zhernakova fullname: Zhernakova, Alexandra organization: Department of Genetics, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands – sequence: 28 givenname: Simone M. surname: Cacciò fullname: Cacciò, Simone M. organization: Department of Infectious Diseases, Istituto Superiore Di Sanità, Rome, Italy – sequence: 29 givenname: Francesco surname: Cucca fullname: Cucca, Francesco organization: Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche (CNR), Monserrato, Cagliari, Italy – sequence: 30 givenname: Sarah E. surname: Berry fullname: Berry, Sarah E. organization: Department of Nutritional Sciences, King’s College London, London, UK – sequence: 31 givenname: Danilo surname: Ercolini fullname: Ercolini, Danilo organization: Department of Agricultural Sciences, University of Naples Federico II, Portici, Italy – sequence: 32 givenname: Andrew T. surname: Chan fullname: Chan, Andrew T. organization: Clinical and Translational Epidemiology Unit, Massachusetts General Hospital, Boston, MA, USA – sequence: 33 givenname: Curtis surname: Huttenhower fullname: Huttenhower, Curtis organization: Harvard T.H. Chan School of Public Health, Boston, MA, USA – sequence: 34 givenname: Tim D. surname: Spector fullname: Spector, Tim D. organization: Department of Twins Research and Genetic Epidemiology, King’s College London, London, UK – sequence: 35 givenname: Nicola orcidid: 0000-0002-1583-5794 surname: Segata fullname: Segata, Nicola email: nicola.segata@unitn.it organization: Department CIBIO, University of Trento, Trento, Italy – sequence: 36 givenname: Francesco surname: Asnicar fullname: Asnicar, Francesco email: f.asnicar@unitn.it organization: Department CIBIO, University of Trento, Trento, Italy |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/38981480$$D View this record in MEDLINE/PubMed |
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Keywords | diet and microbiome integrative metagenomics metagenomics microbiome meta-analysis transkingdom microbiome analysis micro-eukaryote cardiometabolic health human gut microbiome Blastocystis hominis |
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SubjectTerms | Adult Blastocystis - metabolism Blastocystis hominis Blastocystis Infections cardiometabolic health Cardiovascular Diseases - prevention & control Diet diet and microbiome Female Gastrointestinal Microbiome human gut microbiome Humans integrative metagenomics Intestines - microbiology Intestines - parasitology Male Metagenome metagenomics micro-eukaryote microbiome meta-analysis Middle Aged Obesity transkingdom microbiome analysis |
Title | Intestinal Blastocystis is linked to healthier diets and more favorable cardiometabolic outcomes in 56,989 individuals from 32 countries |
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