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「腸内細菌が痛風発症に関わるメカニズム」の検索結果

258 件中 10 件を表示 (4345 ms) · ⭐ 保存した論文

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("Gastrointestinal Microbiome"[MeSH] OR "gut microbiota" OR "intestinal microbiome" OR "gut bacteria") AND ("Gout"[MeSH] OR "hyperuricemia"[MeSH]) AND (mechanism OR pathogenesis OR pathophysiology)

💡 腸内細菌叢と痛風の関連メカニズムに焦点を当て、MeSH用語と同義語を組み合わせました

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  • A widely distributed gene cluster compensates for uricase loss in hominids.

    Yuanyuan Liu, J Bryce Jarman, Yen S Low 他 · Cell · 2023

    Approximately 15% of US adults have circulating levels of uric acid above its solubility limit, which is causally linked to the disease gout. In most mammals, uric acid elimination is facilitated by the enzyme uricase. However, human uricase is a pseudogene, having been inactivated early in hominid evolution. Though it has long been known that uric acid is eliminated in the gut, the role of the gu…

    📄 PubMed で読む (PMID: 37541197)
  • The Gut Microbiome in Hyperuricemia and Gout.

    Robert Terkeltaub, Dylan Dodd · Arthritis & rheumatology (Hoboken, N.J.) · 2025

    Humans develop hyperuricemia via decreased urate elimination and excess urate production, consequently promoting monosodium urate crystal deposition and incident gout. Normally, approximately two-thirds of urate elimination is renal. However, chronic kidney disease (CKD) and other causes of decreased renal urate elimination drive hyperuricemia in most with gout. This places more demand on eliminat…

    📄 PubMed で読む (PMID: 39829115)
  • Punicalagin attenuates hyperuricemia via restoring hyperuricemia-induced renal and intestinal dysfunctions.

    Qing-Qing Han, Qi-Dong Ren, Xu Guo 他 · Journal of advanced research · 2025

    It is estimated that 90% of hyperuricemia cases are attributed to the inability to excrete uric acid (UA). The two main organs in charge of excreting UA are the kidney (70%) and intestine (30%). Previous studies have reported that punicalagin (PU) could protect against kidney and intestinal damages, which makes it a potential candidate for alleviating hyperuricemia. However, the effects and deeper…

    📄 PubMed で読む (PMID: 38609050)
  • Alistipes indistinctus-derived hippuric acid promotes intestinal urate excretion to alleviate hyperuricemia.

    Ying-Xi Xu, Lu-Di Liu, Jiang-Yuan Zhu 他 · Cell host & microbe · 2024

    Hyperuricemia induces inflammatory arthritis and accelerates the progression of renal and cardiovascular diseases. Gut microbiota has been linked to the development of hyperuricemia through unclear mechanisms. Here, we show that the abundance and centrality of Alistipes indistinctus are depleted in subjects with hyperuricemia. Integrative metagenomic and metabolomic analysis identified hippuric ac…

    📄 PubMed で読む (PMID: 38412863)
  • Metagenomic analysis revealed the potential role of gut microbiome in gout.

    Yongliang Chu, Silong Sun, Yufen Huang 他 · NPJ biofilms and microbiomes · 2021

    Emerging evidence indicates an association between gut microbiome and arthritis diseases including gout. However, how and which gut bacteria affect host urate degradation and inflammation in gout remains unclear. Here we performed a metagenome analysis on 307 fecal samples from 102 gout patients and 86 healthy controls. Gout metagenomes significantly differed from those of healthy controls. The re…

    📄 PubMed で読む (PMID: 34373464)
  • Elucidating the role of gut microbiota dysbiosis in hyperuricemia and gout: Insights and therapeutic strategies.

    Abhay Kumar Singh, Siva Sundara Kumar Durairajan, Ashok Iyaswamy 他 · World journal of gastroenterology · 2024

    Hyperuricemia (HUA) is a condition associated with a high concentration of uric acid (UA) in the bloodstream and can cause gout and chronic kidney disease. The gut microbiota of patients with gout and HUA is significantly altered compared to that of healthy people. This article focused on the complex interconnection between alterations in the gut microbiota and the development of this disorder. So…

    📄 PubMed で読む (PMID: 39494101)
  • Gut microbiota dysbiosis in hyperuricaemia promotes renal injury through the activation of NLRP3 inflammasome.

    Xinghong Zhou, Shuai Ji, Liqian Chen 他 · Microbiome · 2024

    The prevalence of hyperuricaemia (HUA), a metabolic disorder characterized by elevated levels of uric acid, is on the rise and is frequently associated with renal injury. Gut microbiota and gut-derived uremic toxins are critical mediators in the gut-kidney axis that can cause damage to kidney function. Gut dysbiosis has been implicated in various kidney diseases. However, the role and underlying m…

    📄 PubMed で読む (PMID: 38907332)
  • Limosilactobacillus fermentum JL-3 isolated from "Jiangshui" ameliorates hyperuricemia by degrading uric acid.

    Ying Wu, Ze Ye, Pengya Feng 他 · Gut microbes · 2021

    Recent studies into the beneficial effects of fermented foods have shown that this class of foods are effective in managing hyperuricemia and gout. In this study, the uric acid (UA) degradation ability of Limosilactobacillus fermentum JL-3 strain, isolated from "Jiangshui" (a fermented Chinese food), was investigated. In vitro results showed that JL-3 strain exhibited high degradation capacity and…

    📄 PubMed で読む (PMID: 33764849)
  • Factors modulating the inflammatory response in acute gouty arthritis.

    Maartje C Cleophas, Tania O Crişan, Leo A B Joosten 他 · Current opinion in rheumatology · 2017

    Gout is a common debilitating form of arthritis and despite our extensive knowledge on the pathogenesis its prevalence is still rising quickly. In the current review, we provide a concise overview of recent discoveries in factors tuning the inflammatory response to soluble uric acid and monosodium urate crystals. It appears that soluble uric acid has a much larger role to play than just being a ri…

    📄 PubMed で読む (PMID: 27941389)
  • Triphala ameliorates hyperuricemia-associated nephropathy by modulating the gut microbiota-glycerophospholipid-TLR4 axis.

    Cong Liu, Huan Zhang, Huihui Zhang 他 · Phytomedicine : international journal of phytotherapy and phytopharmacology · 2026

    Hyperuricemia (HUA) is a metabolic disorder with an escalating global prevalence, and its progression to HUA-associated nephropathy represents an important contributor to chronic kidney injury. Emerging evidence highlights a bidirectional relationship between uric acid and lipid metabolism, with dyslipidemia contributing to the pathological progression of HUA-related complications. Triphala (TRP),…

    📄 PubMed で読む (PMID: 42600364)