Showing 821 - 840 results of 903 for search '"microbiome"', query time: 0.08s Refine Results
  1. 821

    The Influence of Gastric Microbiota and Probiotics in <i>Helicobacter pylori</i> Infection and Associated Diseases by Jagriti Verma, Md Tanveer Anwar, Bodo Linz, Steffen Backert, Suneesh Kumar Pachathundikandi

    Published 2024-12-01
    “…The role of microbiota in human health and disease is becoming increasingly clear as a result of modern microbiome studies in recent decades. The gastrointestinal tract is the major habitat for microbiota in the human body. …”
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    Article
  2. 822

    Flavones enrich rhizosphere Pseudomonas to enhance nitrogen utilization and secondary root growth in Populus by Jiadong Wu, Sijia Liu, Haoyu Zhang, Sisi Chen, Jingna Si, Lin Liu, Yue Wang, Shuxian Tan, Yuxin Du, Zhelun Jin, Jianbo Xie, Deqiang Zhang

    Published 2025-02-01
    “…The importance of root microbiome variation driving plant functional traits is increasingly recognized, but the genetic mechanisms governing this variation are less studied. …”
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  3. 823

    Ketogenic diet in psychiatry: application in treating depression among athletes by Paulina Kumięga, Zuzanna Kudas, Nikola Perchel, Aleksandra Litwin, Karolina Krzywicka, Paweł Nowocin, Piotr Wasiński, Natalia Dąbrowska, Martyna Koszyk, Dawid Kulczyński

    Published 2025-01-01
    “…Moreover, KD’s modulation of the gut-brain axis introduces an additional pathway for improving mental health by fostering a diverse gut microbiome and reducing systemic inflammation. For athletes, KD offers dual benefits: alleviating depressive symptoms while supporting cognitive function and recovery. …”
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    Article
  4. 824

    Effects of аntimicrobials on <i>Pseudomonas aeruginosa</i> biofilm formation by U. M. Nemchenko, K. O. Sitnikova, N. L. Belkova, E. V. Grigorova, N. M. Voropaeva, M. V. Sukhоreva, E. S. Sukhareva, E. D. Savilov

    Published 2022-09-01
    “…We studied 20 strains of P. aeruginosa collected during 2018–2021 by specialists from the Laboratory of Microbiome and Microecology of the Scientific Centre for Family Health and Human Reproduction Problems. …”
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    Article
  5. 825

    Transmission of synthetic seed bacterial communities to radish seedlings: impact on microbiota assembly and plant phenotype by Simonin, Marie, Préveaux, Anne, Marais, Coralie, Garin, Tiffany, Arnault, Gontran, Sarniguet, Alain, Barret, Matthieu

    Published 2023-10-01
    “…These results confirm that the plant core microbiome includes pathogenic and not only commensal or mutualistic taxa. …”
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    Article
  6. 826

    Food-Induced Adverse Reactions: A Review of Physiological Food Quality Control, Mucosal Defense Mechanisms, and Gastrointestinal Physiology by Dongdong Guo, Chang Liu, Hongkang Zhu, Yuliang Cheng, Xiang Huo, Yahui Guo, He Qian

    Published 2025-01-01
    “…Although many microbes are lethal in the absence of antimicrobial defenses, diseases related to microbiome dysregulation, such as inflammatory bowel disease, have significantly increased. …”
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    Article
  7. 827

    Secondary hyperoxaluria: Cause and consequence of chronic kidney disease by Loreto Mariscal de Gante, Laura Salanova, Mariel Valdivia Mazeyra, Rosario Serrano Pardo, Borja Quiroga

    Published 2025-01-01
    “…Different immunomodulatory drugs, microbiome modifiers and SGLT2 inhibitors could constitute new therapeutic targets. …”
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    Article
  8. 828

    Akkermansia muciniphila-directed polyphenol chlorogenic acid intervention for obesity in mice by Xiaoxiang Gao, Chenbo Yue, Ruocen Tian, Leilei Yu, Fengwei Tian, Jianxin Zhao, Wei Chen, Qixiao Zhai

    Published 2024-01-01
    “…Furthermore, we found that CGA did not directly promote A. muciniphila growth or mucin secretion. Microbiome and metabolomics revealed that the increased abundance of A. muciniphila resulted from the inhibition of CGA on Desulfovibrio and Alistipes and the influence of docosahexaenoic acid, β-hydroxybutyrate, and N-acetyl-lactosamine. …”
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    Article
  9. 829

    Profiles and natural drivers of antibiotic resistome in multiple environmental media in penguin-colonized area in Antarctica by Yongpeng Zhang, Bo Zhang, Imtiaz Ahmed, Hanshu Zhang, Yiliang He

    Published 2025-01-01
    “…., MGEs and penguins) in shaping environmental antibiotic resistome in polar areas, improving our understanding of the evolution of environmental microbiome.…”
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  10. 830
  11. 831

    Neolithic introgression of IL23R-related protection against chronic inflammatory bowel diseases in modern EuropeansResearch in context by Ben Krause-Kyora, Nicolas Antonio da Silva, Elif Kaplan, Daniel Kolbe, Inken Wohlers, Hauke Busch, David Ellinghaus, Amke Caliebe, Efe Sezgin, Almut Nebel, Stefan Schreiber, Sabine Schade-Lindig, Joachim Wahl, Carola Berszin, Michael Francken, Irina Görner, Kerstin Schierhold, Joachim Pechtl, Gisela Grupe, Johannes Müller

    Published 2025-03-01
    “…Therefore, the protective A-allele may have increased survival by reducing intestinal inflammation and microbiome dysbiosis. The adaptively evolved function of the variant likely contributes to the high efficacy and low side-effects of modern IL-23 neutralisation therapies for chronic inflammatory diseases. …”
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    Article
  12. 832

    Dissecting Causal Relationships Between Antihypertensive Drug, Gut Microbiota, and Type 2 Diabetes Mellitus and Its Complications: A Mendelian Randomization Study by He Zheng, Shiping Wu, Wenbin Wang, Weida Qiu, Yingqing Feng

    Published 2025-01-01
    “…ABSTRACT Limited research has investigated the impact of antihypertensive medications on type 2 diabetes mellitus (T2DM) and whether gut microbiome (GM) mediates this association. Thus, we conducted a two‐sample Mendelian randomization (MR) analysis to estimate the potential impact of various antihypertensive drug target genes on T2DM and its complications. …”
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    Article
  13. 833

    Effects of environmental bisphenol S exposure on male rat reproductive health and gut-blood-testicular axis integrity by Biran Zhu, Zequan Zhang, Ying Xie, Min Huang, Yu Chen, Yong Yang, Xiongjie Shi, Jian Han, Lihua Yang, Min Zhao

    Published 2025-01-01
    “…Collectively, these findings indicate that BPS impair the intestinal health, disrupt gut microbiome, and ultimately lead to reproductive dysfunction through the gut-blood-testicular axis.…”
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  14. 834

    Effects of repeated intragastric administrations with heat-inactivated Mycobacterium aurum DSM 33539 on the stress-induced aggravation of dextran sulfate sodium (DSS) colitis in C5... by Dominik Langgartner, Anna-Lena J. Weiss, Mattia Amoroso, John D. Sterrett, Christopher A. Lowry, Christopher A. Lowry, Christopher A. Lowry, Christopher A. Lowry, Christopher A. Lowry, Stefan O. Reber, Stefan O. Reber

    Published 2025-01-01
    “…The results of the present study show that repeated i.g. administrations of M. aurum DSM 33539 have stabilizing effects on the composition of the gut microbiome, indicated by the findings that M. aurum DSM 33539 prevented CSC-induced increases in the relative abundances of the colitogenic phyla Desulfobacterota and Deferribacterota. …”
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    Article
  15. 835

    Protocol for faecal microbiota transplantation in irritable bowel syndrome: the MISCEAT study – a randomised, double-blind cross-over study using mixed microbiota from healthy dono... by Lenka Kramna, Ondrej Cinek, Jakub Hurych, Jiri Vejmelka, Lucie Hlinakova, Vladyslav Larionov, Michal Kulich, Pavel Kohout

    Published 2022-06-01
    “…Secondary outcomes are IBS-SSS at 2 weeks after the intervention and 32 weeks compared with placebo and changes in the number of loose stools, Bristol stool scale, abdominal pain and bloating, anthropometric parameters, psychological evaluation and the gut microbiome composition.Ethics and dissemination The study was approved by the Ethics Committee of Thomayer University Hospital, Czechia (G-18-26); study results will be published in peer-reviewed journals and presented at international conferences and patient group meetings.Trial registration number NCT04899869.…”
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    Article
  16. 836

    Comparison of diet and exercise on cardiometabolic factors in young adults with overweight/obesity: multiomics analysis and gut microbiota prediction, a randomized controlled trial by Zongyu Lin, Tianze Li, Fenglian Huang, Miao Wu, Lewei Zhu, Yueqin Zhou, Ying‐An Ming, Zhijun Lu, Wei Peng, Fei Gao, Yanna Zhu

    Published 2025-01-01
    “…These benefits may drive by gut microbiome–metabolite–host interactions. Moreover, the predictability of gut microbiota composition supports making targeted decisions in selecting interventions. …”
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    Article
  17. 837

    FMT reduces systemic inflammatory response in severe acute pancreatitis by increasing the abundance of intestinal Bifidobacteria and fecal bacteria by Yanning Mao, Yandong Huang, Weiwei Zhang, Huiping Liang, Fengming Liu, Qi Luo, Chunqin Xu, Yi Qin, Jiawen Liu, Shaobo Tang, Huaying Liu, Xiaolong Ge

    Published 2024-12-01
    “…In this study, fecal samples from healthy, control, and FMT-treated groups were analyzed using 16S rRNA sequencing to assess microbiome abundance and diversity. Composition and functional prediction analyses were conducted to explore the mechanisms underlying FMT in SAP. …”
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  18. 838

    Unveiling the Microbial Symphony of Amasi: A Targeted Metagenomic 16S rRNA, ITS, and Metabolites Insights Using Bovine and Caprine Milk by Betty Olusola Ajibade, Titilayo Adenike Ajayeoba, Saheed Sabiu, Konstantin V. Moiseenko, Sizwe Vincent Mbona, Errol D. Cason, Tatyana V. Fedorova, Oluwatosin Ademola Ijabadeniyi

    Published 2024-12-01
    “…Comparatively, ACM showed more microbial diversity than AGM, though there were relative similarities in their microbiome composition. PICRUSt analysis revealed significant metabolites in the two Amasi samples. …”
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  19. 839

    Amniotic fluid microbiota and metabolism with non-syndromic congenital heart defects: a multi-omics analysis by Wenli Xu, Lu Li, Hong Kang, Meixian Wang, Yanqun Liu, Guicun Wang, Ping Yu, Juan Liang, Zhen Liu

    Published 2025-02-01
    “…The amniotic fluid microbiome from the CHDs group exhibited significantly higher Shannon and Simpson indices compared to the control group. …”
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    Article
  20. 840