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「環境変化が呼吸器の微生物バランスを崩す可能性」の検索結果

2,004 件中 10 件を表示 (3869 ms) · ⭐ 保存した論文

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(environmental change OR climate change OR pollution OR air quality) AND (respiratory tract[MeSH] OR lung OR airway) AND (microbiota[MeSH] OR microbiome OR dysbiosis OR microbial balance)

💡 環境変化を広義に解釈し、呼吸器系と微生物叢のバランス崩壊(dysbiosis)を組み合わせたクエリ

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🔍 PubMed の検索結果

  • The human microbiome in disease and pathology.

    Jim Manos · APMIS : acta pathologica, microbiologica, et immunologica Scandinavica · 2022

    This narrative review seeks to examine the relationships between bacterial microbiomes and infectious disease. This is achieved by detailing how different human host microbiomes develop and function, from the earliest infant acquisitions of maternal and environmental species through to the full development of microbiomes by adulthood. Communication between bacterial species or communities of speci…

    📄 PubMed で読む (PMID: 35393656)
  • Microbes, metabolites, and the gut-lung axis.

    Anh Thu Dang, Benjamin J Marsland · Mucosal immunology · 2019

    The microbiota plays an essential role in the education, development, and function of the immune system, both locally and systemically. Emerging experimental and epidemiological evidence highlights a crucial cross-talk between the intestinal microbiota and the lungs, termed the 'gut-lung axis'. Changes in the constituents of the gut microbiome, through either diet, disease or medical interventions…

    📄 PubMed で読む (PMID: 30976087)
  • The Bidirectional Gut-Lung Axis in Chronic Obstructive Pulmonary Disease.

    Lei Wang, Yang Cai, Johan Garssen 他 · American journal of respiratory and critical care medicine · 2023

    Epidemiological studies indicate that chronic obstructive pulmonary disease (COPD) is associated with the incidence of changes in intestinal health. Cigarette smoking, as one of the major causes of COPD, can have an impact on the gastrointestinal system and promotes intestinal diseases. This points to the existence of gut-lung interactions, but an overview of the underlying mechanisms of the bidir…

    📄 PubMed で読む (PMID: 36883945)
  • Emerging pathogenic links between microbiota and the gut-lung axis.

    Kurtis F Budden, Shaan L Gellatly, David L A Wood 他 · Nature reviews. Microbiology · 2017

    The microbiota is vital for the development of the immune system and homeostasis. Changes in microbial composition and function, termed dysbiosis, in the respiratory tract and the gut have recently been linked to alterations in immune responses and to disease development in the lungs. In this Opinion article, we review the microbial species that are usually found in healthy gastrointestinal and re…

    📄 PubMed で読む (PMID: 27694885)
  • Role of lung and gut microbiota on lung cancer pathogenesis.

    Yue Zhao, Yuxia Liu, Shuang Li 他 · Journal of cancer research and clinical oncology · 2021

    Lung cancer is the leading cause of cancer-related deaths worldwide (Ferlay et al., Int J Cancer 136:E359-386, 2015). In addition, lung cancer is associated with the highest mortality among all cancer types (Wu et al., Exp Ther Med 16:3004-3010, 2018). Previous studies report that microbiota play an important role in lung cancer. Notably, changes in lung and gut microbiota, are associated with pro…

    📄 PubMed で読む (PMID: 34018055)
  • Lung-brain axis.

    Ousman Bajinka, Lucette Simbilyabo, Yurong Tan 他 · Critical reviews in microbiology · 2022

    The appreciation of human microbiome is gaining strong grounds in biomedical research. In addition to gut-brain axis, is the lung-brain axis, which is hypothesised to link pulmonary microbes to neurodegenerative disorders and behavioural changes. There is a need for analysis based on emerging studies to map out the prospects for lung-brain axis. In this review, relevant English literature and rese…

    📄 PubMed で読む (PMID: 34348558)
  • Dysbiosis of the gut and lung microbiome has a role in asthma.

    Karin Hufnagl, Isabella Pali-Schöll, Franziska Roth-Walter 他 · Seminars in immunopathology · 2020

    Worldwide 300 million children and adults are affected by asthma. The development of asthma is influenced by environmental and other exogenous factors synergizing with genetic predisposition, and shaping the lung microbiome especially during birth and in very early life. The healthy lung microbial composition is characterized by a prevalence of bacteria belonging to the phyla Bacteroidetes, Actino…

    📄 PubMed で読む (PMID: 32072252)
  • Gut microbiota metabolism of dietary fiber influences allergic airway disease and hematopoiesis.

    Aurélien Trompette, Eva S Gollwitzer, Koshika Yadava 他 · Nature medicine · 2014

    Metabolites from intestinal microbiota are key determinants of host-microbe mutualism and, consequently, the health or disease of the intestinal tract. However, whether such host-microbe crosstalk influences inflammation in peripheral tissues, such as the lung, is poorly understood. We found that dietary fermentable fiber content changed the composition of the gut and lung microbiota, in particula…

    📄 PubMed で読む (PMID: 24390308)
  • Gut microbiota-derived acetate attenuates lung injury induced by influenza infection via protecting airway tight junctions.

    Lei Hu, Li Sun, Chun Yang 他 · Journal of translational medicine · 2024

    Gut microbiota (GM) have been implicated as important regulators of gastrointestinal symptom which is commonly occurred along with respiratory influenza A virus (IAV) infection, suggesting the involvement of the gut-to-lung axis in a host's response to IAV. IAV primarily destroys airway epithelium tight junctions (TJs) and consequently causes acute respiratory disease syndrome. It is known that GM…

    📄 PubMed で読む (PMID: 38879538)
  • Beyond the Brain: Exploring the multi-organ axes in Parkinson's disease pathogenesis.

    Tingting Liu, Haojie Wu, Jianshe Wei 他 · Journal of advanced research · 2026

    Parkinson's Disease (PD), a complex neurodegenerative disorder, is increasingly recognized as a systemic condition involving multi-organ interactions. Emerging evidence highlights roles of organ-brain axes (lung-, liver-, heart-, muscle-, bone-, and gut-brain) in PD pathogenesis. These axes communicate via neural, circulatory, endocrine, and inflammatory pathways, collectively driving neurodegener…

    📄 PubMed で読む (PMID: 40383292)