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「ヒ素と腸内細菌が糖代謝に影響する可能性」の検索結果

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(arsenic[MeSH] OR arsenic) AND ("gastrointestinal microbiome"[MeSH] OR "gut microbiota" OR "intestinal microbiota" OR "gut microbiome") AND ("glucose metabolism"[MeSH] OR "carbohydrate metabolism"[MeSH] OR "glucose homeostasis" OR "insulin resistance")

💡 ヒ素、腸内細菌、糖代謝の3要素をMeSH用語と類義語で組み合わせ、相互作用を検索できるようにしました

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  • Genomic Analysis of the Extremely Halophilic Archaeon Halobacterium noricense CBA1132 Isolated from Solar Salt That Is an Essential Material for Fermented Foods.

    Seul Ki Lim, Joon Yong Kim, Hye Seon Song 他 · Journal of microbiology and biotechnology · 2016

    The extremely halophilic archaeon Halobacterium noricense is a member of the genus Halobacterium. Strain CBA1132 (= KCCM 43183, JCM 31150) was isolated from solar salt. The genome of strain CBA1132 assembled with 4 contigs, including three rRNA genes, 44 tRNA genes, and 3,208 open reading frames. Strain CBA1132 had nine putative CRISPRs and the genome contained genes encoding metal resistance dete…

    📄 PubMed で読む (PMID: 27160574)
  • Home is Where the Heterogeneity Is: Housing Facility-level Differences in the Gut Microbiome and Metabolic Phenotype Confound Arsenic Effects on Glucose Homeostasis in Male Mice.

    Judy Malas, Lidan Zhao, Michael Landeche 他 · bioRxiv : the preprint server for biology · 2026

    Inorganic arsenic (iAs) exposure is linked to impaired glucose homeostasis and type 2 diabetes, yet the magnitude and direction of reported effects vary substantially across studies and populations. The gut microbiome is both a target and a mediator of arsenic toxicity, suggesting that pre-exposure community composition may modulate the development of metabolic dysfunction. To test this, we conduc…

    📄 PubMed で読む (PMID: 42620089)
  • Host-microbiota interplay in arsenic metabolism: Implications on host glucose homeostasis.

    Dinakaran Vasudevan, Buvaneswari Gajendhran, Krishnan Swaminathan 他 · Chemico-biological interactions · 2025

    Arsenic (As), a naturally occurring element with unique properties, has been recognized as the largest mass poisoning in the world by the World Health Organization (WHO). Approximately 200 million people worldwide are exposed to toxic levels of arsenic due to natural and anthropogenic activities. This widespread exposure necessitates a deeper understanding of microbe-arsenic interactions and their…

    📄 PubMed で読む (PMID: 39674445)
  • Inter- and Transgenerational Effects of Paternal Exposure to Inorganic Arsenic.

    Yingyun Gong, Yanfeng Xue, Xin Li 他 · Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2021

    The rise of metabolic disorders in modern times is mainly attributed to the environment. However, heritable effects of environmental chemicals on mammalian offsprings' metabolic health are unclear. Inorganic arsenic (iAs) is the top chemical on the Agency for Toxic Substances and Disease Registry priority list of hazardous substances. Here, we assess cross-generational effects of iAs in an exclusi…

    📄 PubMed で読む (PMID: 33854880)
  • Temporal dynamics of bromoform metabolite formation and microbial responses during in vitro rumen fermentation with Asparagopsis taxiformis.

    W Muizelaar, J J Sloth, A Fromberg 他 · Animal : an international journal of animal bioscience · 2026

    This study investigated the temporal dynamics of bromoform (CHBr3) dehalogenation from Asparagopsis taxiformis and its effects on fermentation characteristics and microbial composition in an in vitro batch culture system, generating data relevant to the safety and efficacy assessment of A. taxiformis as a methane (CH4) inhibitor. Per treatment, six bottles were incubated with individual rumen flui…

    📄 PubMed で読む (PMID: 42364275)