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「腸内の「三つ巴」が免疫バランスを左右する」の検索結果

1,493 件中 10 件を表示 (5710 ms) · ⭐ 保存した論文

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(gut microbiota OR intestinal microbiome OR gut flora) AND (immune balance OR immune homeostasis OR immunomodulation) AND (tripartite OR three-way interaction OR host-microbe interaction)

💡 「三つ巴」を宿主・微生物・免疫系の三者相互作用として解釈し、腸内細菌叢と免疫バランスの関連を中心にクエリを構築しました

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🔍 PubMed の検索結果

  • Succinate metabolism and its regulation of host-microbe interactions.

    Yi-Han Wei, Xi Ma, Jiang-Chao Zhao 他 · Gut microbes · 2023

    Succinate is a circulating metabolite, and the relationship between abnormal changes in the physiological concentration of succinate and inflammatory diseases caused by the overreaction of certain immune cells has become a research focus. Recent investigations have shown that succinate produced by the gut microbiota has the potential to regulate host homeostasis and treat diseases such as inflamma…

    📄 PubMed で読む (PMID: 36946592)
  • The Microbiota-Gut-Brain Axis.

    John F Cryan, Kenneth J O'Riordan, Caitlin S M Cowan 他 · Physiological reviews · 2019

    The importance of the gut-brain axis in maintaining homeostasis has long been appreciated. However, the past 15 yr have seen the emergence of the microbiota (the trillions of microorganisms within and on our bodies) as one of the key regulators of gut-brain function and has led to the appreciation of the importance of a distinct microbiota-gut-brain axis. This axis is gaining ever more traction in…

    📄 PubMed で読む (PMID: 31460832)
  • Introduction to the human gut microbiota.

    Elizabeth Thursby, Nathalie Juge · The Biochemical journal · 2017

    The human gastrointestinal (GI) tract harbours a complex and dynamic population of microorganisms, the gut microbiota, which exert a marked influence on the host during homeostasis and disease. Multiple factors contribute to the establishment of the human gut microbiota during infancy. Diet is considered as one of the main drivers in shaping the gut microbiota across the life time. Intestinal bact…

    📄 PubMed で読む (PMID: 28512250)
  • The microbiome and human cancer.

    Gregory D Sepich-Poore, Laurence Zitvogel, Ravid Straussman 他 · Science (New York, N.Y.) · 2021

    Microbial roles in cancer formation, diagnosis, prognosis, and treatment have been disputed for centuries. Recent studies have provocatively claimed that bacteria, viruses, and/or fungi are pervasive among cancers, key actors in cancer immunotherapy, and engineerable to treat metastases. Despite these findings, the number of microbes known to directly cause carcinogenesis remains small. Critically…

    📄 PubMed で読む (PMID: 33766858)
  • Gut microbiota, metabolites and host immunity.

    Michelle G Rooks, Wendy S Garrett · Nature reviews. Immunology · 2016

    The microbiota - the collection of microorganisms that live within and on all mammals - provides crucial signals for the development and function of the immune system. Increased availability of technologies that profile microbial communities is facilitating the entry of many immunologists into the evolving field of host-microbiota studies. The microbial communities, their metabolites and component…

    📄 PubMed で読む (PMID: 27231050)
  • Interaction between microbiota and immunity in health and disease.

    Danping Zheng, Timur Liwinski, Eran Elinav 他 · Cell research · 2020

    The interplay between the commensal microbiota and the mammalian immune system development and function includes multifold interactions in homeostasis and disease. The microbiome plays critical roles in the training and development of major components of the host's innate and adaptive immune system, while the immune system orchestrates the maintenance of key features of host-microbe symbiosis. In …

    📄 PubMed で読む (PMID: 32433595)
  • Gut-liver axis: barriers and functional circuits.

    Oliver Pabst, Mathias W Hornef, Frank G Schaap 他 · Nature reviews. Gastroenterology & hepatology · 2023

    The gut and the liver are characterized by mutual interactions between both organs, the microbiome, diet and other environmental factors. The sum of these interactions is conceptualized as the gut-liver axis. In this Review we discuss the gut-liver axis, concentrating on the barriers formed by the enterohepatic tissues to restrict gut-derived microorganisms, microbial stimuli and dietary constitue…

    📄 PubMed で読む (PMID: 37085614)
  • Gut Microbiota in Cancer Immune Response and Immunotherapy.

    Cheng-Bei Zhou, Yi-Lu Zhou, Jing-Yuan Fang 他 · Trends in cancer · 2021

    The gastrointestinal tract (GIT) is the largest immune organ and maintains systemic immune homeostasis in the presence of bacterial challenge. Immune elimination and immune escape are hallmarks of cancer, both of which can be partly bacteria dependent in shaping immunity by mediating host immunomodulation. In addition, host immunity regulates the microbiome by altering bacteria-associated signalin…

    📄 PubMed で読む (PMID: 33674230)
  • Host-microbiota interaction in intestinal stem cell homeostasis.

    Haiqin Wu, Chunlong Mu, Laipeng Xu 他 · Gut microbes · 2024

    Intestinal stem cells (ISCs) play a pivotal role in gut physiology by governing intestinal epithelium renewal through the precise regulation of proliferation and differentiation. The gut microbiota interacts closely with the epithelium through myriad of actions, including immune and metabolic interactions, which translate into tight connections between microbial activity and ISC function. Given th…

    📄 PubMed で読む (PMID: 38757687)
  • The pros, cons, and many unknowns of probiotics.

    Jotham Suez, Niv Zmora, Eran Segal 他 · Nature medicine · 2019

    Consumption of over-the-counter probiotics for promotion of health and well-being has increased worldwide in recent years. However, although probiotic use has been greatly popularized among the general public, there are conflicting clinical results for many probiotic strains and formulations. Emerging insights from microbiome research enable an assessment of gut colonization by probiotics, strain-…

    📄 PubMed で読む (PMID: 31061539)