The Gut Microbiota Affects Corticosterone Production in the Murine Small Intestine
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T. Hudcovic | P. Hermanová | J. Pácha | V. Dvořáček | P. Ergang | M. Vodička | K. Vagnerová | M. Jágr | D. Šrůtková
[1] R. Moretti,et al. You Talking to Me? Says the Enteric Nervous System (ENS) to the Microbe. How Intestinal Microbes Interact with the ENS , 2020, Journal of clinical medicine.
[2] M. Teixeira,et al. Colonization by Enterobacteriaceae is crucial for acute inflammatory responses in murine small intestine via regulation of corticosterone production , 2020, Gut microbes.
[3] T. Hudcovic,et al. Interactions Between Gut Microbiota and Acute Restraint Stress in Peripheral Structures of the Hypothalamic–Pituitary–Adrenal Axis and the Intestine of Male Mice , 2019, Front. Immunol..
[4] Kieran Rea,et al. The Microbiota-Gut-Brain Axis. , 2019, Physiological reviews.
[5] Asma Ahmed,et al. Extra-Adrenal Glucocorticoid Synthesis in the Intestinal Mucosa: Between Immune Homeostasis and Immune Escape , 2019, Front. Immunol..
[6] Jae Hyun Kim,et al. Measurement of serum steroid profiles by HPLC-tandem mass spectrometry. , 2019, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[7] T. Brunner,et al. Local synthesis of immunosuppressive glucocorticoids in the intestinal epithelium regulates anti-viral immune responses. , 2018, Cellular immunology.
[8] Nuno A. Fonseca,et al. Tumors induce de novo steroid biosynthesis in T cells to evade immunity , 2018, Nature Communications.
[9] A. Mikulecká,et al. Microbiota affects the expression of genes involved in HPA axis regulation and local metabolism of glucocorticoids in chronic psychosocial stress , 2018, Brain, Behavior, and Immunity.
[10] P. Vandenabeele,et al. Glucocorticoid receptor dimers control intestinal STAT1 and TNF-induced inflammation in mice , 2018, The Journal of clinical investigation.
[11] G. Liebisch,et al. Quantification of steroid hormones in human serum by liquid chromatography-high resolution tandem mass spectrometry. , 2017, Journal of chromatography. A.
[12] Martin Moravec,et al. Inflammation regulates 11β-hydroxysteroid dehydrogenase type 1 differentially in specific compartments of the gut mucosal immune system , 2017, Steroids.
[13] T. Dinan,et al. Targeting the Microbiota-Gut-Brain Axis: Prebiotics Have Anxiolytic and Antidepressant-like Effects and Reverse the Impact of Chronic Stress in Mice , 2017, Biological Psychiatry.
[14] C. Weber,et al. Neutrophils as protagonists and targets in chronic inflammation , 2017 .
[15] Chapman,et al. Explorer 11-hydroxysteroid dehydrogenase-1 deficiency alters the gut microbiome response to western diet , 2016 .
[16] P. Elustondo,et al. Mitochondrial cholesterol import. , 2017, Biochimica et biophysica acta. Molecular and cell biology of lipids.
[17] B. Walker,et al. 11-Hydroxysteroid Dehydrogenase type 1 is expressed in neutrophils and restrains an inflammatory response in male mice , 2016 .
[18] J. Cyster,et al. Peyer's patches: organizing B‐cell responses at the intestinal frontier , 2016, Immunological reviews.
[19] Se Jin Park,et al. Expression of 11β-hydroxysteroid dehydrogenase 1 and 2 in patients with chronic rhinosinusitis and their possible contribution to local glucocorticoid activation in sinus mucosa. , 2014, The Journal of allergy and clinical immunology.
[20] J. Auwerx,et al. Intestinal steroidogenesis controls PPARγ expression in the colon and is impaired during ulcerative colitis , 2014, Gut.
[21] M. Bissonnette,et al. TU-100 (Daikenchuto) and Ginger Ameliorate Anti-CD3 Antibody Induced T Cell-Mediated Murine Enteritis: Microbe-Independent Effects Involving Akt and NF-κB Suppression , 2014, PloS one.
[22] S. Rabot,et al. Absence of the gut microbiota enhances anxiety-like behavior and neuroendocrine response to acute stress in rats , 2014, Psychoneuroendocrinology.
[23] B. Chung,et al. Tumor Necrosis Factor Suppresses NR5A2 Activity and Intestinal Glucocorticoid Synthesis to Sustain Chronic Colitis , 2014, Science Signaling.
[24] C. Zouboulis,et al. Steroidogenesis in the skin: Implications for local immune functions , 2013, The Journal of Steroid Biochemistry and Molecular Biology.
[25] P. Scully,et al. The microbiome-gut-brain axis during early life regulates the hippocampal serotonergic system in a sex-dependent manner , 2013, Molecular Psychiatry.
[26] P. Chambon,et al. Homeostasis in Intestinal Epithelium Is Orchestrated by the Circadian Clock and Microbiota Cues Transduced by TLRs , 2013, Cell.
[27] E. Gelfand,et al. Steroidogenic enzyme Cyp11a1 regulates Type 2 CD8+ T cell skewing in allergic lung disease , 2013, Proceedings of the National Academy of Sciences.
[28] V. Théodorou,et al. Prevention of gut leakiness by a probiotic treatment leads to attenuated HPA response to an acute psychological stress in rats , 2012, Psychoneuroendocrinology.
[29] I. Mikšík,et al. Upregulation of 11β-hydroxysteroid dehydrogenase 1 in lymphoid organs during inflammation in the rat , 2011, The Journal of Steroid Biochemistry and Molecular Biology.
[30] W. Miller,et al. The molecular biology, biochemistry, and physiology of human steroidogenesis and its disorders. , 2011, Endocrine reviews.
[31] E. Walker,et al. Localization, age- and site-dependent expression, and regulation of 11β-hydroxysteroid dehydrogenase type 1 in skin. , 2011, The Journal of investigative dermatology.
[32] T. Brunner,et al. TNF suppresses acute intestinal inflammation by inducing local glucocorticoid synthesis , 2010, The Journal of experimental medicine.
[33] T. Brunner,et al. Lipopolysaccharide induces intestinal glucocorticoid synthesis in a TNFα‐dependent manner , 2010, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[34] P. Igaz,et al. Steroid biosynthesis inhibitors in the therapy of hypercortisolism: theory and practice. , 2008, Current medicinal chemistry.
[35] G. Bánhegyi,et al. Metyrapone prevents cortisone-induced preadipocyte differentiation by depleting luminal NADPH of the endoplasmic reticulum. , 2008, Biochemical pharmacology.
[36] J. Pácha,et al. 11β‐hydroxysteroid dehydrogenase 1 and 2 expression in colon from patients with ulcerative colitis , 2007 .
[37] A. Atanasov,et al. Differential regulation of glucocorticoid synthesis in murine intestinal epithelial versus adrenocortical cell lines. , 2007, Endocrinology.
[38] I. Mikšík,et al. Intestinal inflammation modulates expression of 11beta-hydroxysteroid dehydrogenase in murine gut. , 2006, The Journal of endocrinology.
[39] T. Brunner,et al. The nuclear receptor LRH-1 critically regulates extra-adrenal glucocorticoid synthesis in the intestine , 2006, The Journal of experimental medicine.
[40] R. Daynes,et al. The Expression of 11β-Hydroxysteroid Dehydrogenase Type I by Lymphocytes Provides a Novel Means for Intracrine Regulation of Glucocorticoid Activities1 , 2005, The Journal of Immunology.
[41] T. Brunner,et al. Intestinal Epithelial Cells Synthesize Glucocorticoids and Regulate T Cell Activation , 2004, The Journal of experimental medicine.
[42] Y. Chida,et al. Postnatal microbial colonization programs the hypothalamic–pituitary–adrenal system for stress response in mice , 2004, The Journal of physiology.
[43] J. Pácha,et al. Colitis up‐regulates local glucocorticoid activation and down‐regulates inactivation in colonic tissue , 2004, Scandinavian journal of gastroenterology.
[44] Bart van der Burg,et al. Glucocorticoid-induced increase in lymphocytic FKBP51 messenger ribonucleic acid expression: a potential marker for glucocorticoid sensitivity, potency, and bioavailability. , 2003, The Journal of clinical endocrinology and metabolism.
[45] R. Sapolsky,et al. How do glucocorticoids influence stress responses? Integrating permissive, suppressive, stimulatory, and preparative actions. , 2000, Endocrine reviews.
[46] M. W. Khalil,et al. Metyrapone is a competitive inhibitor of 11β-hydroxysteroid dehydrogenase type 1 reductase , 1997, The Journal of Steroid Biochemistry and Molecular Biology.
[47] J. Simard,et al. Occurrence of cytochrome P450c17 mRNA and dehydroepiandrosterone biosynthesis in the rat gastrointestinal tract , 1995, Molecular and Cellular Endocrinology.
[48] P. Stewart,et al. Epithelial cell localization of type 2 11 beta-hydroxysteroid dehydrogenase in rat and human colon. , 1994, Endocrinology.