Academic literature on the topic 'Intestine microbiota'

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Journal articles on the topic "Intestine microbiota"

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Ma, Wenyao, Zhe Han, Xinlei Liu, et al. "Distinct Effects of Lactiplantibacillus plantarum HNU082 on Microbial Single-Nucleotide Variants in Large Intestine and Small Intestine." Microorganisms 13, no. 4 (2025): 731. https://doi.org/10.3390/microorganisms13040731.

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The intestinal tract extends several times the length of bodies, with varying environmental conditions across different segments (small intestinal and large intestinal), thereby harboring distinct gut microbiota. Most studies focused on the quantitative responses of gut microbiota upon probiotics entering the gut, without an in-depth analysis of how the genetic change in local gut microbiota. Therefore, in this experiment, C57BL/6J male mice were once administered Lactiplantibacillus plantarum HNU082 (Lp082). Then, the mice were euthanized on the 1st, 3rd, and 7th days after gavage, and the co
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Shang, Yongquan, Huaming Zhong, Gang Liu, et al. "Characteristics of Microbiota in Different Segments of the Digestive Tract of Lycodon rufozonatus." Animals 13, no. 4 (2023): 731. http://dx.doi.org/10.3390/ani13040731.

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The gastrointestinal tract of animals contains microbiota, forming a complex microecosystem. Gut microbes and their metabolites can regulate the development of host innate and adaptive immune systems. Animal immune systems maintain intestinal symbiotic microbiota homeostasis. However, relatively few studies have been published on reptiles, particularly snakes, and even fewer studies on different parts of the digestive tracts of these animals. Herein, we used 16S rRNA gene sequencing to investigate the microbial community composition and adaptability in the stomach and small and large intestine
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Wang, Shumeng, Junyi Luo, Hailong Wang, et al. "Extracellular Vesicles: A Crucial Player in the Intestinal Microenvironment and Beyond." International Journal of Molecular Sciences 25, no. 6 (2024): 3478. http://dx.doi.org/10.3390/ijms25063478.

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The intestinal ecological environment plays a crucial role in nutrient absorption and overall well-being. In recent years, research has focused on the effects of extracellular vesicles (EVs) in both physiological and pathological conditions of the intestine. The intestine does not only consume EVs from exogenous foods, but also those from other endogenous tissues and cells, and even from the gut microbiota. The alteration of conditions in the intestine and the intestinal microbiota subsequently gives rise to changes in other organs and systems, including the central nervous system (CNS), namel
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Wang, Xinzhou, Peng Zhang, and Xin Zhang. "Probiotics Regulate Gut Microbiota: An Effective Method to Improve Immunity." Molecules 26, no. 19 (2021): 6076. http://dx.doi.org/10.3390/molecules26196076.

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Probiotics are beneficial active microorganisms that colonize the human intestines and change the composition of the flora in particular parts of the host. Recently, the use of probiotics to regulate intestinal flora to improve host immunity has received widespread attention. Recent evidence has shown that probiotics play significant roles in gut microbiota composition, which can inhibit the colonization of pathogenic bacteria in the intestine, help the host build a healthy intestinal mucosa protective layer, and enhance the host immune system. Based on the close relationship between the gut m
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Ruigrok, Renate A. A. A., Valerie Collij, Paula Sureda, et al. "The Composition and Metabolic Potential of the Human Small Intestinal Microbiota Within the Context of Inflammatory Bowel Disease." Journal of Crohn's and Colitis 15, no. 8 (2021): 1326–38. http://dx.doi.org/10.1093/ecco-jcc/jjab020.

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Abstract Background and Aims The human gastrointestinal tract harbours distinct microbial communities essential for health. Little is known about small intestinal communities, despite the small intestine playing a fundamental role in nutrient absorption and host-microbe immune homeostasis. We aimed to explore the small intestine microbial composition and metabolic potential, in the context of inflammatory bowel disease [IBD]. Methods Metagenomes derived from faecal samples and extensive phenotypes were collected from 57 individuals with an ileostomy or ileoanal pouch, and compared with 1178 ge
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Kaibysheva, V. O., M. E. Zharova, K. Yu Filimendikova, and E. L. Nikonov. "Diseases Associated with Disturbed Intestinal Microbiota." Doctor.Ru 20, no. 4 (2021): 40–45. http://dx.doi.org/10.31550/1727-2378-2021-20-4-40-45.

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Objective of the Review: To discuss changes in intestinal microbiota in various diseases. Key Points. Microbial intestinal imbalance plays an important role in pathogenesis and/or progression of a number of diseases, namely of Clostridium difficile-associated disorders, intestinal inflammations, obesity, colorectal cancer, autistic disorders and other. Moreover, therapies involving faecal microbiota transplantation, use of pro- and prebiotics, metabiotics proved efficient in management of some of the above disorders. Conclusion. So far, some mechanisms have been explored which explain possible
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GIURGIU, Gheorghe, and Manole COJOCARU. "Natural Neuroimunomodulation in Coronavirus Infection." Annals of the Academy of Romanian Scientists Series on Biological Sciences 9, no. 2 (2020): 80–87. http://dx.doi.org/10.56082/annalsarscibio.2020.2.80.

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Dysbiosis of the nasopharyngeal microbiome attracts dysbiosis of the intestinal microbiome and activation of the intestinal microbiome-brain axis. If the first sign of the disease is quickly intervened with the modulation of the activity of the microbiome, implicitly of the immune system (neuroimmunomodulation), the appearance of the disease is eliminated. There is the microbiome: buccal, nasal, intestinal, cardiac, cutaneous and even the microbiome in the brain with which Covid-19 interacts. When the evolution is complicated, it is necessary to intervene with drug treatment to support the aff
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Li, Lin-Yi, Jie Zhou, Cun-Hao Mao, et al. "Exploration of the Effects of Agarwood Extract on the Inflammtory Microbiota in the Oral-Gut Axis." Science Journal of Public Health 12, no. 3 (2024): 79–82. http://dx.doi.org/10.11648/j.sjph.20241203.13.

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Agarwood, as a precious medicinal material with distinctive characteristics from Hainan, has been shown in recent studies to possess significant anti-inflammatory and antibacterial properties. With the rapid growth in public recognition of health concepts, oral health has garnered increased attention. The main focus of this study is the impact of agarwood extracts on the oral-gut axis microbiota. The relationship between the oral and gut microbiota is closely intertwined, where oral microbiota can directly colonize the intestine via saliva and other means, altering the original microbial compo
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Kwon, Jungnam, Dong Han Yeom, Moon Yong Lee, and Yong Sung Kim. "Role of the Small Intestinal Microbiota in Gastrointestinal Disorders." Korean Journal of Helicobacter and Upper Gastrointestinal Research 24, no. 4 (2024): 339–45. https://doi.org/10.7704/kjhugr.2024.0059.

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The small intestinal microbiota plays a crucial role in maintaining the health and pathogenesis of various gastrointestinal disorders. Despite extensive research on gut microbiota, studies focusing on the small intestine are limited owing to methodological challenges. This review discusses the taxonomic composition, microbial load, and diversity of normal small intestinal microbiota. Additionally, it highlights the role of small intestinal microbiota in gastrointestinal disorders, such as functional dyspepsia, small intestinal bacterial overgrowth, and nonsteroidal anti-inflammatory drug-induc
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Dedikova, Olga V., Irina N. Zakharova, Anastasiya E. Kuchina, Irina V. Berezhnaya, and Narine G. Sugian. "Formation of the infant's intestinal microbiota depending on the delivery method: long-term consequences and correction options: A review." Pediatrics. Consilium Medicum, no. 1 (June 6, 2023): 25–29. http://dx.doi.org/10.26442/26586630.2023.1.202092.

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Many studies have been devoted to human microbiome. It has been shown that the microbiome has a significant effect on almost all the vital functions of the host organism. The article addresses the role of various factors in newborns' intestinal microbiota formation. The main emphasis was on the delivery method since the intestinal microbiota of children born via vaginal delivery differs from those born by cesarean section. The microbiota of the mother's intestine and vagina greatly influences the formation of the intestinal microbiome. The delivery method affects not only the formation of the
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Dissertations / Theses on the topic "Intestine microbiota"

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Lima, Glaucia Carielo. "Efeito dos oligossacarídeos FOS e GOS na microbiota intestinal e no pH do conteúdo cecal de ratas Wistar em desenvolvimento." [s.n.], 2010. http://repositorio.unicamp.br/jspui/handle/REPOSIP/255060.

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Orientador: Mário Roberto Maróstica Junior<br>Dissertação (mestrado) - Universidade Estadual de Campinas, Faculdade de Engenharia de Alimentos<br>Made available in DSpace on 2018-08-17T20:43:01Z (GMT). No. of bitstreams: 1 Lima_GlauciaCarielo_M.pdf: 794328 bytes, checksum: 905ed92bfa1f9e04a2c521c1c5e898b7 (MD5) Previous issue date: 2010<br>Resumo: Muitos estudos tem demonstrado que o consumo acumulado de galactooligossacarídeo (GOS) e frutooligossacarídeo (FOS) pode trazer benefícios significativos para a saúde, relacionados com a sua resistência à digestão, sendo utilizados como substrato p
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PAULINO, Barbara Costa. "Consequências do uso de soro de leite de cabra sobre parâmetros bioquímicos, morfologia e microbiota fecal de ratas e filhotes jovens alimentados com dieta ocidentalizada desde a vida perinatal." Universidade Federal de Pernambuco, 2016. https://repositorio.ufpe.br/handle/123456789/18453.

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Submitted by Fabio Sobreira Campos da Costa (fabio.sobreira@ufpe.br) on 2017-03-29T14:52:20Z No. of bitstreams: 2 license_rdf: 1232 bytes, checksum: 66e71c371cc565284e70f40736c94386 (MD5) Dissertação_BARBARA COSTA PAULINO_Agosto2016.OFICIAL.pdf: 2162827 bytes, checksum: e76b8cfadd5a941840853d352a5bc159 (MD5)<br>Made available in DSpace on 2017-03-29T14:52:20Z (GMT). No. of bitstreams: 2 license_rdf: 1232 bytes, checksum: 66e71c371cc565284e70f40736c94386 (MD5) Dissertação_BARBARA COSTA PAULINO_Agosto2016.OFICIAL.pdf: 2162827 bytes, checksum: e76b8cfadd5a941840853d352a5bc159 (MD5) Previo
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Johnson, Andrew M. F. "The characterisation of intestinal dendritic cells and the control of immune responses towards the microbiota." Thesis, University of Oxford, 2011. http://ora.ox.ac.uk/objects/uuid:14284c3c-1aa4-4125-ad31-e74ded4e75bc.

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Dendritic cells (DCs) are regulators of the immune response and are thought to be critical in maintaining tolerance towards the intestinal microbiota. Recent data have identified distinct subsets of DCs with specific functional properties. The objective of this thesis was to further define CD103⁺ and CX3CR1⁺ DCs in the intestine and to determine how DCs and regulatory T (Treg) cell responses are influenced by the microbiota. Using multicolour flow cytometry, we identified two CD103⁺ DC subsets with differential aldehyde dehydgrogenase (ALDH) activity and two populations of CX3CR1⁺ cells. In th
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Milard, Marine. "Effets métaboliques des lipides polaires laitiers : mécanismes associés à la régulation de la barrière intestinale et effets spécifiques de la sphingomyéline in vitro." Thesis, Lyon, 2019. http://www.theses.fr/2019LYSE1007.

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Les lipides polaires (LP) laitiers (~2% des lipides du lait) présentent un potentiel bioactif élevé, notamment lié à leur richesse en sphingomyéline (SM, ~25% des LP). Nos hypothèses sont que les LP laitiers peuvent exercer certains de leurs effets bénéfiques par l'intermédiaire de la SM, notamment sur l'intégrité de la barrière intestinale et le microbiote, ce qui pourrait contribuer à réduire l'inflammation métabolique. Nous avons testé à long terme in vivo l'impact de régimes hyperlipidiques (HF) supplémentés en LP laitiers. In vitro, nous avons étudié l'effet des LP laitiers et de la SM (l
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Baraille, Marylou. "Changes in the large intestinal microbial ecosystem, epithelial integrity and inflammation in horses with age : how to promote healthy ageing through diet ?" Electronic Thesis or Diss., Bourgogne Franche-Comté, 2024. http://www.theses.fr/2024UBFCK091.

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Les chevaux vivent plus longtemps qu’avant. Le vieillissement entraîne des changements dans l’organisme pouvant causer des pathologies. L’alimentation est un levier majeur pour favoriser un vieillissement en bonne santé. Pour proposer des recommandations nutritionnelles promouvant le vieillissement sain, il était important d’étudier les changements de l’écosystème microbien du gros intestin avec l’âge et leurs impacts sur l’épithélium du gros intestin et l’inflammation. Nos résultats ont montré que les communautés bactériennes des chevaux âgés étaient réarrangées par rapport à celles des cheva
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Silva, Inês Santos. "EarlyMYCO - Exposição precoce a micotoxinas e o seu impacto na microbiotica intestinal." Master's thesis, Universidade de Évora, 2021. http://hdl.handle.net/10174/30902.

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O microbioma intestinal no início da vida é fundamental para desencadear as defesas imunológicas mas as aflatoxinas ingeridas pelas mães podem passar para o leite materno e influenciar a microbiota. Neste trabalho estudou-se o impacto da exposição materna à aflatoxina B1 (AFB1), na microbiota no início da vida, através da exposição de ratinhos fêmea durante a gravidez e lactação. Estas foram alimentadas com pellets de gelatina contendo 400 μg/kg de AFB1 ou apenas com o veículo (grupo controlo). As fezes dos descendentes foram colhidas imediatamente após o desmame e o DNA extraído e purificado.
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Levy, Jonathan. "Étude du rôle de l’autophagie dans la cancérogenèse intestinale." Thesis, Paris 11, 2014. http://www.theses.fr/2014PA11T049/document.

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Considéré comme un cancer de l'âge mûr, l'incidence du cancer colorectal ne cesse d'augmenter avec l'allongement de la vie. Dans la majorité des cas, le cancer colique est associé à une mutation du gène suppresseur de tumeur Apc, contrôlant l’activation de la signalisation Wnt/β-caténine. Afin, d'identifier de nouveaux acteurs de la tumorigenèse colique, notre laboratoire a développé des modèles murins de mutation du gène Apc qui ont pour avantage de mimer la pathologie humaine (Colnot et al, 2004 ; Andreu et al, 2005). La création de ces modèles a permis à l’équipe de démontrer i) qu’une acti
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Engevik, Melinda A. "Ion Transport and the Gut Microbiota." University of Cincinnati / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1397466973.

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Zhu, Yuanbo. "Intestinal epithelial cell-derived IL‐15 determines local maintenance and maturation of intraepithelial lymphocytes in the intestine." Kyoto University, 2020. http://hdl.handle.net/2433/253170.

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Rothe, Monique. "Response of intestinal Escherichia coli to dietary factors in the mouse intestine." Phd thesis, Universität Potsdam, 2013. http://opus.kobv.de/ubp/volltexte/2013/6638/.

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Diet is a major force influencing the intestinal microbiota. This is obvious from drastic changes in microbiota composition after a dietary alteration. Due to the complexity of the commensal microbiota and the high inter-individual variability, little is known about the bacterial response at the cellular level. The objective of this work was to identify mechanisms that enable gut bacteria to adapt to dietary factors. For this purpose, germ-free mice monoassociated with the commensal Escherichia coli K-12 strain MG1655 were fed three different diets over three weeks: a diet rich in starch, a di
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Books on the topic "Intestine microbiota"

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Olds, William. Health and the gut: The emerging role of intestinal microbiota in disease and therapeutics. Apple Academic Press, 2015.

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Dixit, Sameer M., and Kasipathy Kailasapathy. Antagonistic activity and interaction of probiotic bacteria with intestinal microbiota. Nova Science Publishers, 2012.

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Blachier, François. Metabolism of Alimentary Compounds by the Intestinal Microbiota and Health. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-26322-4.

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N.Y.) Nestlé Nutrition Workshop (79th 2013 New York. Nutrition, gut microbiota and immunity: Therapeutic targets for IBD. Edited by Lewis James D. editor, Ruemmele Frank M. editor, Wu Gary D. editor, and Nestlé Nutrition Institute. Karger, 2014.

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Cusimano, Frank Anthony. Engineered bacteria for the modulation of intestinal physiology, inflammation, and behavior along the microbiome-gut-brain axis. [publisher not identified], 2019.

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Berihanova, Rumisa, and Inessa Minenko. Complex non-drug correction of menopausal disorders in patients with metabolic syndrome. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1599004.

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The monograph is devoted to the complex non-drug correction of menopausal disorders in patients with metabolic syndrome in the period of menopausal transition. Modern ideas about menopausal and metabolic syndromes are presented, a review of modern approaches to their treatment is carried out. &#x0D; A complex personalized system of non-drug correction of functional disorders in patients with metabolic syndrome and menopausal syndrome of mild and moderate severity in the period of menopausal transition is presented, including preformed therapeutic factors (vibrotherapy, chromotherapy, aeroionot
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Fidaleo, Marco, Franco Scaldaferri, Andrea Quagliariello, and Fausto Andreola, eds. The Role of Microbiota in the Onset and Development of Intestine and Liver Diseases and Cancer: Molecular and Cell Mechanisms. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-88974-805-1.

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Olds, William. Health and the Gut. Taylor & Francis Group, 2021.

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La microbiota intestinal. Catarata, 2017.

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Elewaut, Dirk, Heleen Cypers, Matthew L. Stoll, and Charles O. Elson. Extra-articular manifestations: inflammatory bowel disease. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780198734444.003.0017.

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A significant overlap exists between spondyloarthritis (SpA) and inflammatory bowel disease (IBD), particularly in the IL-23/IL-17 pathway. Shared immunologic mechanisms include aberrant innate immune responses, an excess of Th1/Th17-mediated immunity, and inadequate immune regulation. Many genetic factors associated with IBD are involved in host–pathogen interactions and intestinal barrier function, and the intestinal microbiota do appear to play an important role in disease development. Hence the current hypothesis for IBD pathogenesis is that it stems from a dysregulated immune response to
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Book chapters on the topic "Intestine microbiota"

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Macfarlane, Sandra, John H. Cummings, and George T. Macfarlane. "Bacterial Colonisation of Surfaces in the Large Intestine." In Colonic Microbiota, Nutrition and Health. Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-017-1079-4_5.

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Blachier, François. "Metabolism of Dietary Substrates by Intestinal Bacteria and Consequences for the Host Intestine." In Metabolism of Alimentary Compounds by the Intestinal Microbiota and Health. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-26322-4_3.

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Blachier, François. "Physiological and Metabolic Functions of the Intestinal Epithelium: From the Small to the Large Intestine." In Metabolism of Alimentary Compounds by the Intestinal Microbiota and Health. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-26322-4_1.

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Blachier, François. "Intestine Offers Board and Lodging for Intestinal Microbes on a Short- or Long-Term Stay." In Metabolism of Alimentary Compounds by the Intestinal Microbiota and Health. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-26322-4_2.

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Koren, Omry, and Ruth E. Ley. "The Human Intestinal Microbiota and Microbiome." In Yamada' s Textbook of Gastroenterology. John Wiley & Sons, Ltd, 2015. http://dx.doi.org/10.1002/9781118512074.ch32.

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Zheng, Xing, Siqi Lin, Zhifeng Gu, and Zhenhua Ma. "The Intestine Microbiota Community and Enzyme Activity in Trachinotus ovatus After Short-Time Antibiotic Bath Administration." In Ontogenetic development of pompano Trachinotus ovatus. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1712-7_16.

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Ragbetli, Murat Cetin, and Seda Keskin. "A Current Review on Diabetes Mellitus Induced Gut Microbiota and Histological Changes." In Current Multidisciplinary Approach to Diabetes Mellitus Occurrence Mechanism. Nobel Tip Kitabevleri, 2023. http://dx.doi.org/10.69860/nobel.9786053359104.2.

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Recent studies have highlighted the intricate relationship between diabetes mellitus (DM) and alterations in gut microbiota composition, as well as associated histological changes. Dysbiosis, characterized by an imbalance in microbial communities, has been observed in diabetic individuals, with decreased microbial diversity and altered abundance of specific taxa such as Firmicutes and Bacteroidetes. These changes are implicated in promoting systemic inflammation, insulin resistance, and metabolic dysfunction. Concurrently, diabetic conditions influence gut barrier integrity and mucosal immunit
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Posocco, David, Oxana Dmitrieva, and Sergei I. Grivennikov. "Microbiome Implications in Intestinal Tumorigenesis." In Intestinal Tumorigenesis. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-19986-3_7.

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Claesson, Marcus J., Ian B. Jeffery, and Paul W. O’Toole. "Intestinal Microbiota and Aging." In Encyclopedia of Metagenomics. Springer US, 2015. http://dx.doi.org/10.1007/978-1-4899-7475-4_95.

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Conway, Patricia L. "Development of Intestinal Microbiota." In Gastrointestinal Microbiology. Springer US, 1997. http://dx.doi.org/10.1007/978-1-4757-0322-1_1.

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Conference papers on the topic "Intestine microbiota"

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Menezes, Carlos Alexandre Gomes Passarinho, Rafaela Ribeiro Benedito, Daniel Rubens Freitas Facundo, et al. "Analysis of the intestinal microbiota and its relationship with neuropathologies." In XIV Congresso Paulista de Neurologia. Zeppelini Editorial e Comunicação, 2023. http://dx.doi.org/10.5327/1516-3180.141s1.458.

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Introduction: The human intestinal microbiota corresponds to the ecosystem of colonizing microorganisms of the intestine that has an important role of protection to the organism. In addition, it has a direct relationship with the nervous system, known as the bowel-brain axis. Changes in the intestinal microbiota have been associated with several neuropathologies, and disbiosis repair has been shown to improve specific symptoms of some diseases. Objectives: This study aims to analyze the neurological implications caused by intestinal microbiota in humans. Methods: Review of integrative literatu
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Andrade, Dariana Rodrigues, Letícia Mendes de Lima, Luis Henrique Goes Hamati Rosa, and Edvaldo Cardoso. "Brain-gut-microbiota axis in motor disorders." In XIII Congresso Paulista de Neurologia. Zeppelini Editorial e Comunicação, 2021. http://dx.doi.org/10.5327/1516-3180.401.

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Introduction: There seems to be a strong relationship and influence on the brain-gut- microbiota axis in the control and prevention of several diseases, including degenerative diseases that are related to motor disorders. Objectives: To analyze the relationship between movement disorders and the intestinal microbiota. Methods: Integrative review performed at PUBMED, using the descriptors Movement disorder and intestinal microbiota, in the last five years and having as inclusion criteria complete texts in English. Results: The literature suggests that the intestinal microbiota regulates the act
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Bogdan, Victoria. "Caracteristicile microbiotei în diferite segmente ale tubului digestiv: particularitățile de colonizare și semnificația pentru sănătate." In "Fiziologia şi sănătatea", congresul fiziologilor. Bulletin of the Academy of Sciences of Moldova. Medical Sciences, 2025. https://doi.org/10.52692/cfzl2024.12.

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Diverse microbial communities colonize distinct segments of the gastrointestinal tract, influencing human health and pathology. The concentration and composition of the microbiota vary in different parts of the body and digestive tract: 20% in the oral cavity, 15-16% in the oropharynx, 40% in the esophagogastroduodenal region and intestines, 18-20% on the skin, and 2-10% in the urogenital tract. Bacterial colonization is dictated by environmental conditions (aerobic/anaerobic, pH), with most intestinal bacteria being anaerobic, but some segments, such as the cecum, can have high densities of a
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Stojanović, Bojan, Blagoje Stojković, Vesna Davidović, Aleksandra Ivetić, Vladimir Dosković, and Ivana Grujičić. "THE FUNCTIONAL CHARACTERISTICS OF DIETARY FIBER IN GROWING PIG NUTRITION." In 3rd International Symposium on Biotechnology. University of Kragujevac, Faculty of Agronomy in Čačak, 2025. https://doi.org/10.46793/sbt30.28bs.

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The non-starch polysaccharides (NSPs) stimulate the lactic acid producing bacteria, lower the intestinal luminal pH, lead to fewer cases of diarrhea and improve gut health. The short-chain fatty acids as products of bacterial fiber fermentation are used as a source of energy, and also stimulate the proliferation and growth of intestinal cells. The fermentable carbohydrates in the large intestine are available to the existing bacteria as an energy source and shift N excretion from the urine to the feces. The addition of exogenous NSP-degrading enzymes improves nutrient digestibility and growth
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McCabe, Laura. "Targeting the Intestine to Prevent Glucocorticoid Induced Osteoporosis." In The 1st International Electronic Conference on Nutrients - Nutritional and Microbiota Effects on Chronic Disease. MDPI, 2020. http://dx.doi.org/10.3390/iecn2020-06979.

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Hentschel, V., H. Hongxhia Li, T. Seufferlein, and M. Armacki. "Intestine-specific targeting of TNK1 kinase ameliorates colitis by constraining microbiota composition." In Viszeralmedizin 2023 77. Jahrestagung der DGVS mit Sektion Endoskopie Herbsttagung der Deutschen Gesellschaft für Allgemein- und Viszeralchirurgie mit den Arbeitsgemeinschaften der DGAV und Jahrestagung der CACP. Georg Thieme Verlag, 2023. http://dx.doi.org/10.1055/s-0043-1771730.

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Marova, Svetlana, Natalia Shaporova, and Olga Dudina. "Effect of obesity and overweight on the intestine microbiota in patients with asthma." In ERS International Congress 2018 abstracts. European Respiratory Society, 2018. http://dx.doi.org/10.1183/13993003.congress-2018.pa1102.

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Lopes, Lorena Vieira, VINÍCIUS GRZECHOEZINSKI AUDINO, and GABRIEL STECHECHEN WIER. "EIXO INTESTINO-PULMÃO E O PAPEL DA MICROBIOTA INTESTINAL NA RESPOSTA À INFECÇÃO POR SARS-COV-2." In II Congresso Brasileiro de Imunologia On-line. Revista Multidisciplinar em Saúde, 2022. http://dx.doi.org/10.51161/ii-conbrai/6286.

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Introdução: A microbiota intestinal está relacionada à modulação do sistema imunológico, influenciando no processo inflamatório e na resposta a infecções. No curso da COVID-19, uma resposta exacerbada, na conhecida “tempestade de citocinas”, gera hiperinflamação e é fator determinante da gravidade da doença. Objetivo: Analisar os efeitos da microbiota intestinal na regulação da resposta imunológica à infecção por SARS-CoV-2 e seus mecanismos. Metodologia: Realizou-se revisão da literatura, a partir de publicações indexadas na plataforma PubMed. Foram utilizados os descritores “COVID-19”, “micr
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Costa, Mayra Garcia Maia, and Janaina Sobreira Rocha. "MODULAÇÃO DA MICROBIOTA INTESTINAL COMO ESTRATÉGIA DE RESPOSTA IMUNOLÓGICA À COVID-19." In I Congresso Nacional de Microbiologia Clínica On-Line. Revista Multidisciplinar em Saúde, 2021. http://dx.doi.org/10.51161/rems/1192.

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Introdução: O intestino é o maior órgão que estabelece uma interface com o ambiente externo e é também uma barreira dinâmica que abriga uma complexa comunidade microbiana. Estima-se que o intestino de um indivíduo adulto contenha aproximadamente 1014 micro-organismos (10 vezes mais células do que todo o corpo humano). O intestino pode ser considerado também um dos mais importantes órgãos relacionados a resposta imunológica e tem recebido destaque na relação com a Covid-19, doença causada pela espécie SARS CoV2. Dentre os sintomas causados pela Covid-19, está a disbiose que resulta na supressão
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Brenna, J. Thomas. "The gut microbiome and dietary fatty acids." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/rvcu7594.

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The dramatic increase in microbiome studies in the last 20 years, facilitated by high speed sequencing, has transformed our understanding of biology. Nutrition influences the easily measured distribution of organisms, and the more difficultly measured overall physiology of the microbiome. Fatty acid nutrition and its influence on the various gut microbiomes poses specific challenges for interpretation of experimental studies. Most microbiome science employs rodents as models. In rodents, fatty acids survive to the cecum and lower gut, while in healthy humans fatty acids are completely absorbed
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Reports on the topic "Intestine microbiota"

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Asalde Ramos, Rubén Eduardo, and Pedro Jorge Chimoy Effio. El eje microbiota-intestino-cerebro en la enfermedad de Parkinson. Siicsalud.com, 2024. http://dx.doi.org/10.21840/siic/174373.

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yu, luyou, jinping yang, xi meng, and yanhua lin. Effectiveness of the gut microbiota-bile acid pathway (BAS) in the treatment of Type 2 diabetes: A protocol for systematic review and meta analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, 2022. http://dx.doi.org/10.37766/inplasy2022.7.0117.

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Review question / Objective: To systematically evaluate the efficacy of the intestinal microbiome - bile acid pathway (BAS) in the treatment of T2DM. Condition being studied: Bile acids (BAs), an important component of bile, are also metabolites derived from cholesterol and promote intestinal absorption and transportation of dietary lipids . Studies have shown that bile acid receptor agonists can promote glP-1 secretion and improve glucose metabolism in preclinical mouse models of obesity and insulin resistance , which may become a new therapeutic target for Type 2 diabetes. However, no system
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Li, Run, Feng Luo, Yi Wang, Ji Hu, Lingling Tang, and Xiaoxiu Ye. The effects of different feeding patterns on intestinal microbiota of infants. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, 2022. http://dx.doi.org/10.37766/inplasy2022.2.0122.

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Kushak, Rafail. Analysis of Small Intestinal Microbiome in Children with Autism. Defense Technical Information Center, 2013. http://dx.doi.org/10.21236/ada575715.

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José Sánchez-Rumí, Manuel, and Verónica Lloréns-Rico. Estudiando las funciones de la microbiota intestinal: presente y futuro de la metatranscriptómica. Sociedad Española de Bioquímica y Biología Molecular, 2024. http://dx.doi.org/10.18567/sebbmrev_220.202406.dc003.

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Kushak, Rafail. Analysis of the Small Intestinal Microbiome of Children With Autism. Defense Technical Information Center, 2013. http://dx.doi.org/10.21236/ada584963.

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Yildirimer, Christina. Intestinal Microbiota Diversity of Pre-Smolt Steelhead (Oncorhynchus mykiss) Across Six Oregon and Washington Hatcheries. Portland State University Library, 2000. http://dx.doi.org/10.15760/etd.5593.

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yu, luyou, jinping yang, xi meng, and yanhua ling. Efficacy and safety of acupuncture combined with probiotics in the treatment of type 2 diabetes mellitus with intestinal microbiota disorder: A protocol for systematic review and meta analysis. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, 2022. http://dx.doi.org/10.37766/inplasy2022.9.0001.

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Review question / Objective: Efficacy and safety of acupuncture combined with probiotics in the treatment of type 2 diabetes mellitus with intestinal microbiota disorder: A protocol for systematic review and meta analysis. Eligibility criteria: 1.The literatures of type 2 diabetes patients were included without restriction on gender, age, race, disease course and blood glucose control of the subjects. 2. The relevant literatures included in human intestinal flora do not strictly restrict the test methods and key indicators of fecal specimens. 3. Relevant literatures with no statistically signi
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Jansman, A. J. M., D. Schokker, R. Gerritsen, F. de Bree, M. M. Hulst, and M. A. Smits. Effects of a high level of dietary zinc as model intervention on intestinal microbiota and mucosal gene expression in piglets. Wageningen Livestock Research, 2016. http://dx.doi.org/10.18174/401707.

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Jansman, A. J. M., D. Schokker, R. Gerritsen, et al. Effects of a high level of dietary zinc over different post weaning periods on intestinal microbiota and mucosal gene expression in piglets. Wageningen Livestock Research, 2016. http://dx.doi.org/10.18174/401706.

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