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PUBMED FOR HANDHELDS

Journal Abstract Search


415 related items for PubMed ID: 20601425

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  • 2. Colonic gene expression in conventional and germ-free mice with a focus on the butyrate receptor GPR109A and the butyrate transporter SLC5A8.
    Cresci GA, Thangaraju M, Mellinger JD, Liu K, Ganapathy V.
    J Gastrointest Surg; 2010 Mar; 14(3):449-61. PubMed ID: 20033346
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  • 8. Transport by SLC5A8 with subsequent inhibition of histone deacetylase 1 (HDAC1) and HDAC3 underlies the antitumor activity of 3-bromopyruvate.
    Thangaraju M, Karunakaran SK, Itagaki S, Gopal E, Elangovan S, Prasad PD, Ganapathy V.
    Cancer; 2009 Oct 15; 115(20):4655-66. PubMed ID: 19637353
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  • 9. Deacetylase activity is required for STAT5-dependent GM-CSF functional activity in macrophages and differentiation to dendritic cells.
    Sebastián C, Serra M, Yeramian A, Serrat N, Lloberas J, Celada A.
    J Immunol; 2008 May 01; 180(9):5898-906. PubMed ID: 18424709
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  • 10. Metabolites produced by commensal bacteria promote peripheral regulatory T-cell generation.
    Arpaia N, Campbell C, Fan X, Dikiy S, van der Veeken J, deRoos P, Liu H, Cross JR, Pfeffer K, Coffer PJ, Rudensky AY.
    Nature; 2013 Dec 19; 504(7480):451-5. PubMed ID: 24226773
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  • 12. Butyrate directly decreases human gut lamina propria CD4 T cell function through histone deacetylase (HDAC) inhibition and GPR43 signaling.
    Kibbie JJ, Dillon SM, Thompson TA, Purba CM, McCarter MD, Wilson CC.
    Immunobiology; 2021 Sep 19; 226(5):152126. PubMed ID: 34365090
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  • 13. Butyrate and Class I Histone Deacetylase Inhibitors Promote Differentiation of Neonatal Porcine Islet Cells into Beta Cells.
    Zhang Y, Lei Y, Honarpisheh M, Kemter E, Wolf E, Seissler J.
    Cells; 2021 Nov 19; 10(11):. PubMed ID: 34831471
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  • 14. Histone-deacetylase-inhibitory effects of periodontopathic-bacterial metabolites induce human gingival epithelial Ca9-22 cell death.
    Uemichi K, Mikami Y, Watanabe T, Shinozuka K, Tonogi M, Tsuda H.
    Odontology; 2023 Jul 19; 111(3):658-667. PubMed ID: 36482237
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  • 15. Butyrate and propionate protect against diet-induced obesity and regulate gut hormones via free fatty acid receptor 3-independent mechanisms.
    Lin HV, Frassetto A, Kowalik EJ, Nawrocki AR, Lu MM, Kosinski JR, Hubert JA, Szeto D, Yao X, Forrest G, Marsh DJ.
    PLoS One; 2012 Jul 19; 7(4):e35240. PubMed ID: 22506074
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  • 16. Bacterial short-chain fatty acid metabolites modulate the inflammatory response against infectious bacteria.
    Corrêa RO, Vieira A, Sernaglia EM, Lancellotti M, Vieira AT, Avila-Campos MJ, Rodrigues HG, Vinolo MAR.
    Cell Microbiol; 2017 Jul 19; 19(7):. PubMed ID: 28070968
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  • 17. Butyrate and propionate inhibit antigen-specific CD8+ T cell activation by suppressing IL-12 production by antigen-presenting cells.
    Nastasi C, Fredholm S, Willerslev-Olsen A, Hansen M, Bonefeld CM, Geisler C, Andersen MH, Ødum N, Woetmann A.
    Sci Rep; 2017 Nov 06; 7(1):14516. PubMed ID: 29109552
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  • 18. Butyrate and propionate induced activated or non-activated neutrophil apoptosis via HDAC inhibitor activity but without activating GPR-41/GPR-43 pathways.
    Aoyama M, Kotani J, Usami M.
    Nutrition; 2010 Jun 06; 26(6):653-61. PubMed ID: 20004081
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  • 19. Short-chain fatty acids enhance adipocyte differentiation in the stromal vascular fraction of porcine adipose tissue.
    Li G, Yao W, Jiang H.
    J Nutr; 2014 Dec 06; 144(12):1887-95. PubMed ID: 25320182
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  • 20. Activation of Gpr109a, receptor for niacin and the commensal metabolite butyrate, suppresses colonic inflammation and carcinogenesis.
    Singh N, Gurav A, Sivaprakasam S, Brady E, Padia R, Shi H, Thangaraju M, Prasad PD, Manicassamy S, Munn DH, Lee JR, Offermanns S, Ganapathy V.
    Immunity; 2014 Jan 16; 40(1):128-39. PubMed ID: 24412617
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