Showing 961 - 980 results of 1,240 for search '"microbiome"', query time: 0.06s Refine Results
  1. 961

    Tributyrin Supplementation Protects Immune Responses and Vasculature and Reduces Oxidative Stress in the Proximal Colon of Mice Exposed to Chronic-Binge Ethanol Feeding by B. Glueck, Y. Han, G. A. M. Cresci

    Published 2018-01-01
    “…Ethanol metabolism triggers oxidative stress, altered immune function, and gut dysbiosis. The gut microbiome is known to contribute to the maintenance of intestinal homeostasis, and disturbances are associated with pathology. …”
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    Article
  2. 962

    Role of intestinal probiotics in the modulation of lipid metabolism: implications for therapeutic treatments by Xiaoran Song, Yanan Liu, Xin Zhang, Peifang Weng, Ruilin Zhang, Zufang Wu

    Published 2023-09-01
    “…However, the relationship between probiotics and abnormal lipid metabolism is still unclear, and the mechanism of action has been become a focus of microbiome research. Therefore, taking intestinal probiotics as the starting point, this article combs the relationship between probiotics and lipid metabolism. …”
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  3. 963

    Antibiotic Residues in Animal Products from Some African Countries and Their Possible Impact on Human Health by Oluwaseun Mary Oladeji, Liziwe Lizbeth Mugivhisa, Joshua Oluwole Olowoyo

    Published 2025-01-01
    “…Noncompliance with withdrawal periods and maximum residue limits for antibiotics used in food-producing animals may lead to negative outcomes such as allergic reactions, teratogenicity, carcinogenicity, microbiome alterations, and, most notably, antibiotic resistance. …”
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  4. 964

    Gut microbiota profiles of sympatric snub-nosed monkeys and macaques in Qinghai-Tibetan Plateau show influence of phylogeny over diet by Chen Zhang, Yang Yu, Ling Yue, Yi Chen, Yixin Chen, Yang Liu, Cheng Guo, Qianqian Su, Zuofu Xiang

    Published 2025-01-01
    “…Results showed that within the same geographical environment, Macaca mulatta and Rhinopithecus bieti exhibited a gut microbiome composition similar to that of Tibetan people, influenced by genetic evolution of host, while significantly differing from other distantly related animals. …”
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    Article
  5. 965

    Convergent evolution of oxidized sugar metabolism in commensal and pathogenic microbes in the inflamed gut by Sophia Levy, Angela K. Jiang, Maggie R. Grant, Gabriela Arp, Glory Minabou Ndjite, Xiaofang Jiang, Brantley Hall

    Published 2025-01-01
    “…Abstract Inflammation-associated perturbations of the gut microbiome are well characterized, but poorly understood. …”
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    Article
  6. 966

    Dermatological Manifestations and Sebum Composition in Parkinson’s Disease by Meshi Paz, Peter Lio

    Published 2025-01-01
    “…Research explored the clinical relevance of altered lipid profiles, volatile organic compound (VOC) contributions, and microbiome dysbiosis in those with PD. Results Individuals with PD exhibit excess sebum production characterized by altered lipid profiles, including elevated short-chain fatty acids (SCFAs) and disruptions in sphingolipid metabolism. …”
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    Article
  7. 967

    Oral microbiota: the overlooked catalyst in cancer initiation and progression by Xinlin Wang, Xinlin Wang, Xin He, Xin He, Bin Zhong

    Published 2025-01-01
    “…Furthermore, tumor occurrence and development are closely related to the oral microbiome. Specific bacteria, such as Fusobacterium nucleatum (F. nucleatum), Porphyromonas gingivalis (P. gingivalis), Streptococcus, Streptomyces, Prevotella, and Fibrophagy gingivalis, play critical roles in cancer development. …”
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  8. 968

    Comparison of Endometrial Microbiota Results Between Patients with Unexplained Infertility and Fertile Patients through 16s rRNA Sequencing by Gonca Ozten Dere, Cagman Tan, Sezcan Mumusoglu, Pinar Zarakolu, Gurkan Bozdag

    Published 2023-12-01
    “…RESULTS: Lactobacillus species represented the majority of the microbiome profile in both groups. The median percentage of the endometrial Lactobacillus between infertile patients and fertile patients was not statistically significant (p=0.9). …”
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    Article
  9. 969

    Intestinal microbiota dysbiosis contributes to the liver damage in subchronic arsenic-exposed mice by Dong Ling, Luo Peng, Zhang Aihua

    Published 2024-10-01
    “…Herein, C57BL/6 mice are exposed to arsenic (1, 2, or <sc>4 mg/kg)</sc> for 12 weeks, after which fecal microbiota transplantation (FMT) study is conducted to confirm the roles of the intestinal microbiome in pathology. Treatment with arsenic results in pathological and histological changes in the liver, such as inflammatory cell infiltration and decreased levels of TP and CHE but increased levels of ALP, GGT, TBA, AST, and ALT. …”
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  10. 970
  11. 971

    Metabolic changes before and after weaning in Dezhou donkey foals in relation to gut microbiota by Qiwen Yang, Qiwen Yang, Haibing Liu, Halima Jafari, Bing Liu, Zhaofei Wang, Jiangtian Su, Fuwen Wang, Ge Yang, Minhao Sun, Jie Cheng, Boying Dong, Min Li, Mingjian Gen, Jie Yu

    Published 2024-01-01
    “…To summarize, this study provides theoretical data for the changes in the intestinal microbiome and serum metabolism during the entire weaning period of donkey foals.…”
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  12. 972
  13. 973

    The Effect of Sleep Disruption on Cardiometabolic Health by SeokHyun Hong, Da-Been Lee, Dae-Wui Yoon, Seung-Lim Yoo, Jinkwan Kim

    Published 2025-01-01
    “…The underlying mechanisms are multifaceted, involving the disruption of circadian clock genes, alterations in glucose and lipid metabolism, the activation of inflammatory pathways, and the modulation of the gut microbiome. Sleep loss affects key metabolic regulators, including AMPK signaling and disrupts the secretion of metabolic hormones such as leptin and ghrelin. …”
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    Article
  14. 974

    Gut Microbiota-Immune System Crosstalk and Pancreatic Disorders by D. Pagliari, A. Saviano, E. E. Newton, M. L. Serricchio, A. A. Dal Lago, A. Gasbarrini, R. Cianci

    Published 2018-01-01
    “…The analysis of specific alterations in the microbiome profile may permit to develop novel tools for the early detection of several pancreatic disorders, utilizing samples, such as blood, saliva, and stools. …”
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    Article
  15. 975

    Study on intestinal microbial communities of three different cattle populations on Qinghai-Tibet Plateau. by Quji Suolang, Zhuzha Basang, Wangmu Silang, Cangjue Nima, Qiwen Yang, Wa Da

    Published 2025-01-01
    “…Our study presents a new perspective on the role of the microbiome in the hybridization and enhancement of Tibetan cattle.…”
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    Article
  16. 976

    Cervical mucus in linked human Cervix and Vagina Chips modulates vaginal dysbiosis by Ola Gutzeit, Aakanksha Gulati, Zohreh Izadifar, Anna Stejskalova, Hassan Rhbiny, Justin Cotton, Bogdan Budnik, Sanjid Shahriar, Girija Goyal, Abidemi Junaid, Donald E. Ingber

    Published 2025-01-01
    “…By integrating human Cervix and Vagina Chips, we demonstrated that cervical mucus significantly reduces inflammation and epithelial damage caused by a dysbiotic microbiome commonly associated with BV. Proteomic analysis of the Vagina Chip, following exposure to mucus from the Cervix Chip, revealed differentially abundant proteins, suggesting potential biomarkers and therapeutic targets for BV management. …”
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  17. 977
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  19. 979

    Treatment of irritable bowel syndrome: the past, present and future by V. T. Ivashkin, Ye. A. Poluektova, O. S. Lyashenko, D. V. Reykhart

    Published 2015-03-01
    “…Considering new data on IBS pathogenesis (disorder of intestinal microbiome, functional and structural remodeling of proteins of cell membrane at the level of synapses of spinal cord posterior horns), prescription of probiotics and peripheral opioid receptors agonists is proven as well. …”
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    Article
  20. 980

    Similar Strains of Coagulase-Negative Staphylococci Found in the Gastrointestinal Tract and Bloodstream of Bacteremic Neonates by Jennifer O. Adeghate, Emese Juhász, Miklós Á. Iván, Júlia Pongrácz, Katalin Kristóf

    Published 2020-01-01
    “…Efforts have been made to determine whether the neonatal gut microbiome possesses potential for causing bloodstream infections in newborns via microbial translocation from the gastrointestinal tract. …”
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