Showing 621 - 640 results of 903 for search '"microbiome"', query time: 0.07s Refine Results
  1. 621

    Amelioration of metabolic disorders by a mushroom-derived polyphenols correlates with the reduction of Ruminococcaceae in gut of DIO mice by Li Sun, Li Bao, Dorji Phurbu, Shanshan Qiao, Shanshan Sun, Yangzom Perma, Hongwei Liu

    Published 2021-07-01
    “…Furthermore, we show that PAE produces taxonomic and predicted functional changes in the gut microbiome of DIO mice. A significant decrease in the family of Ruminococcaceae, especially the secondary bile acid-producing bacteria of Intestinimonas and Anaerotruncus, is detected in the gut microbiome of PAE-treate mice. …”
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    Article
  2. 622

    Characteristics of the intestinal tract microbiota in calves with various forms of acute catarrhal bronchopneumonia by N. Yu. Rodionova, E. V. Kulikov, E. D. Sotnikova, I. E. Prozorovskiy, Yu. A. Vatnikov, V. B. Rudenko, P. A. Rudenko

    Published 2024-09-01
    “…It has been shown that in calves with compensated acute catarrhal bronchopneumonia, the qualitative and quantitative composition of the intestinal microbiome does not differ from clinically healthy animals. …”
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  3. 623

    Decoding vascular aging: implications for atherosclerosis progression and clinical intervention by Silumbwe Ceaser Wankumbu, Xiao-Man Ji, Ming Xu

    Published 2024-08-01
    “…The promising therapeutic targets reviewed include the angiotensin (1–7)/MAS axis, the gut microbiome, histone deacetylases, DNA repair systems, noncoding RNAs, β3/dopamine adrenoceptors, senescence and inflammation checkpoints.…”
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  4. 624
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    Impact of maternal high‐fat diet on offspring gut microbiota during short‐term high‐fat diet exposure in mice by Henry A. Paz, Lasya Buddha, Ying Zhong, James D. Sikes, Umesh D. Wankhade

    Published 2024-11-01
    “…Abstract Alterations in the gut microbiome have been linked to obesity, with maternal high‐fat diet (HF) playing a role in shaping offspring microbiome composition. …”
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  8. 628

    The skin microbiota of preterm infants and impact of diaper change frequency. by Noelle E Younge, D Joshua Parris, Daniel Hatch, Angel Barnes, Debra H Brandon

    Published 2024-01-01
    “…Stool samples were collected from the diaper. The microbiome at each site was characterized by 16S rRNA gene sequencing. …”
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  9. 629

    The association between the dietary index for gut microbiota and metabolic dysfunction-associated fatty liver disease: a cross-sectional study by Yangyang Zheng, Jinhui Hou, Shiqi Guo, Jinghai Song

    Published 2025-01-01
    “…Abstract Background The relationship between the gut microbiome and metabolic dysfunction-associated fatty liver disease (MAFLD) has garnered increasing attention. …”
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  10. 630

    The Microbiota–Gut–Brain Axis: Key Mechanisms Driving Glymphopathy and Cerebral Small Vessel Disease by Che Mohd Nasril Che Mohd Nassir, Muhammad Danial Che Ramli, Mazira Mohamad Ghazali, Usman Jaffer, Hafizah Abdul Hamid, Muhammad Zulfadli Mehat, Zaw Myo Hein

    Published 2024-12-01
    “…The recent explosion of microbiome research has begun to detail its important role in neurological health, particularly concerning cerebral small vessel disease (CSVD), a disorder associated with cognitive decline and vascular dementia. …”
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    Article
  11. 631

    Age-Related Changes in Gut Health and Behavioral Biomarkers in a Beagle Dog Population by Anna Fernández-Pinteño, Rachel Pilla, Jan Suchodolski, Emmanuelle Apper, Celina Torre, Anna Salas-Mani, Xavier Manteca

    Published 2025-01-01
    “…The gut and the gut microbiome communicate with the nervous system through the gut–brain axis via neuroimmune and neuroendocrine mechanisms. …”
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  13. 633

    Effects of vegetarian diet-associated nutrients on gut microbiota and intestinal physiology by Wei Xiao, Qingsong Zhang, Leilei Yu, Fengwei Tian, Wei Chen, Qixiao Zhai

    Published 2022-03-01
    “…This review explores the characteristics of the gut microbiome formed by vegetarian diets and the effects of diet-associated nutrients on intestinal microbial abundance. …”
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  14. 634

    The Impact of Zinc Supplementation on the Course of Infections by Justyna Woźniak, Ewelina Kopczyńska, Piotr Kulej, Wiktor Biesiada, Justyna Weronika Kmieć, Anna-Mariia Chernysh, Aleksandra Dusińska, Jakub Waszczyński, Kamila Fuczyło, Karolina Stankevič

    Published 2025-02-01
    “…Furthermore, zinc supplementation improved gut microbiome composition, promoting beneficial bacteria and reducing pathogenic growth. …”
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  15. 635
  16. 636

    Causal Associations Between the Gut Microbiota and Hypertension‐Related Traits Through Mendelian Randomization: A Cross‐Sectional Cohort Study by Yunfan Tian, Mingxia Gu, Dazhong Chen, Quanbin Dong, Yifeng Wang, Wei Sun, Xiangqing Kong

    Published 2025-01-01
    “…ABSTRACT Previous studies have suggested a link between the gut microbiome and hypertension‐related traits like blood pressure. …”
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  17. 637

    Proteins from insects: A sustainable alternative for oral health within the one health concept and the planetary health diet by Marta Mazur, Maciej Jedliński, Irena Duś-Ilnicka, Artnora Ndokaj, Florence Carrouel, Livia Ottolenghi, Denis Bourgeois

    Published 2025-03-01
    “…This position paper analyzes the potential implications of integrating insect proteins into the diet, with a special focus on dental, periodontal, and oral microbiome health. By offering complete amino acid profiles, omega-3 fatty acids, and antimicrobial peptides, insect proteins may help address nutritional gaps and positively influence oral tissue regeneration and microbiome balance. …”
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  18. 638

    Acupuncture mediates the “gut–testis axis” to improve asthenozoospermia by Jianheng Hao, Jianheng Hao, Huichao Xu, Boya Chang, Jia Ren, Haijun Wang, Laixi Ji, Laixi Ji

    Published 2025-01-01
    “…The abundances of Bacteroidota, Firmicutes, Faecalibaculum, and Dubosiella were associated with sperm motility, as shown by a gut microbiome analysis. Serum metabolomics revealed that differentially expressed metabolites (DEMs), such as cytosine and N-oleyl-leucine, were closely related to sperm motility. …”
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