Bile acids alter male fertility through G‐protein‐coupled bile acid receptor 1 signaling pathways in mice
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G. Marceau | S. Houten | K. Schoonjans | J. Lobaccaro | S. Baron | A. Pommier | D. Volle | A. Véga | Emmanuelle Martinot | Marine Baptissart | A. D. Haze | Silvère Baron
[1] T. Tordjmann,et al. The receptor TGR5 protects the liver from bile acid overload during liver regeneration in mice , 2013, Hepatology.
[2] J. Lobaccaro,et al. Bile acids: from digestion to cancers. , 2013, Biochimie.
[3] S. Minhas,et al. Male Infertility⋆ , 2012 .
[4] J. Gilleron,et al. Connexin 43 a check-point component of cell proliferation implicated in a wide range of human testis diseases , 2012, Cellular and Molecular Life Sciences.
[5] B. Silvestrini,et al. A peptide derived from laminin-γ3 reversibly impairs spermatogenesis in rats , 2012, Nature Communications.
[6] D. Sibley,et al. The Blood-Testis Barrier and Its Implications for Male Contraception , 2012, Pharmacological Reviews.
[7] M. Nagano,et al. The efficiency of male fertility restoration is dependent on the recovery kinetics of spermatogonial stem cells after cytotoxic treatment with busulfan in mice. , 2012, Human reproduction.
[8] J. Auwerx,et al. TGR5 activation inhibits atherosclerosis by reducing macrophage inflammation and lipid loading. , 2011, Cell metabolism.
[9] M. Rao,et al. Role of β-Catenin in Post-Meiotic Male Germ Cell Differentiation , 2011, PloS one.
[10] P. Mathur,et al. Interactions of laminin β3 fragment with β1-integrin receptor , 2011, Spermatogenesis.
[11] T. Mostafa,et al. Semen and hormonal parameters in men with chronic hepatitis C infection. , 2011, Fertility and sterility.
[12] Xu Zhou,et al. Comparison of semen quality and outcome of assisted reproductive techniques in Chinese men with and without hepatitis B. , 2011, Asian journal of andrology.
[13] B. Stieger,et al. Hepatic Transport Mechanisms of Cholyl-l-Lysyl-Fluorescein , 2010, Journal of Pharmacology and Experimental Therapeutics.
[14] M. S. Alam,et al. Di(n‐butyl) Phthalate Induces Vimentin Filaments Disruption in Rat Sertoli Cells: A Possible Relation with Spermatogenic Cell Apoptosis , 2010, Anatomia, histologia, embryologia.
[15] J. Richburg,et al. Mono-(2-Ethylhexyl) Phthalate-Induced Disruption of Junctional Complexes in the Seminiferous Epithelium of the Rodent Testis Is Mediated by MMP21 , 2010, Biology of reproduction.
[16] J. Auwerx,et al. The orphan nuclear receptor small heterodimer partner mediates male infertility induced by diethylstilbestrol in mice. , 2009, The Journal of clinical investigation.
[17] P. Cooke,et al. Claudin 5 Expression in Mouse Seminiferous Epithelium Is Dependent upon the Transcription Factor Ets Variant 5 and Contributes to Blood-Testis Barrier Function1 , 2009, Biology of reproduction.
[18] B. Staels,et al. Role of bile acids and bile acid receptors in metabolic regulation. , 2009, Physiological reviews.
[19] Johan Auwerx,et al. Targeting bile-acid signalling for metabolic diseases , 2008, Nature Reviews Drug Discovery.
[20] A. Moorman,et al. Msx1 and Msx2 are functional interacting partners of T-box factors in the regulation of Connexin43. , 2008, Cardiovascular research.
[21] A. Lenzi,et al. Male hypogonadism in cirrhosis and after liver transplantation , 2008, Journal of endocrinological investigation.
[22] J. Auwerx,et al. Novel potent and selective bile acid derivatives as TGR5 agonists: biological screening, structure-activity relationships, and molecular modeling studies. , 2008, Journal of medicinal chemistry.
[23] C. Cheng,et al. Cross-talk between tight and anchoring junctions-lesson from the testis. , 2008, Advances in experimental medicine and biology.
[24] M. Benahmed,et al. Multiple roles of the nuclear receptors for oxysterols liver X receptor to maintain male fertility. , 2007, Molecular endocrinology.
[25] J. Auwerx,et al. The small heterodimer partner is a gonadal gatekeeper of sexual maturation in male mice. , 2007, Genes & development.
[26] Wen Xie,et al. International Union of Pharmacology. LXII. The NR1H and NR1I Receptors: Constitutive Androstane Receptor, Pregnene X Receptor, Farnesoid X Receptor α, Farnesoid X Receptor β, Liver X Receptor α, Liver X Receptor β, and Vitamin D Receptor , 2006, Pharmacological Reviews.
[27] J. Auwerx,et al. Endocrine functions of bile acids , 2006, The EMBO journal.
[28] J. Auwerx,et al. Bile acids induce energy expenditure by promoting intracellular thyroid hormone activation , 2006, Nature.
[29] Wen Xie,et al. International Union of Pharmacology. LXII. The NR1H and NR1I receptors: constitutive androstane receptor, pregnene X receptor, farnesoid X receptor alpha, farnesoid X receptor beta, liver X receptor alpha, liver X receptor beta, and vitamin D receptor. , 2006, Pharmacological reviews.
[30] S. Ferdinandusse,et al. Developmental Changes of Bile Acid Composition and Conjugation in L- and D-Bifunctional Protein Single and Double Knockout Mice* , 2005, Journal of Biological Chemistry.
[31] D Stewart Irvine,et al. How strong is the evidence of a link between environmental chemicals and adverse effects on human reproductive health? , 2004, BMJ : British Medical Journal.
[32] P. Vreken,et al. Rapid analysis of conjugated bile acids in plasma using electrospray tandem mass spectrometry: Application for selective screening of peroxisomal disorders , 1999, Journal of Inherited Metabolic Disease.
[33] C. Niederberger,et al. Male infertility. , 2006, Reviews in urology.
[34] M. Kirby,et al. Tbx2 Represses Expression of Connexin43 in Osteoblastic-like Cells , 2004, Calcified Tissue International.
[35] Jack C. Yu,et al. Negative transcriptional regulation of connexin 43 by Tbx2 in rat immature coronal sutures and ROS 17/2.8 cells in culture. , 2003, The Cleft palate-craniofacial journal : official publication of the American Cleft Palate-Craniofacial Association.
[36] Masataka Harada,et al. A G Protein-coupled Receptor Responsive to Bile Acids* , 2003, The Journal of Biological Chemistry.
[37] Takao Nakamura,et al. Identification of membrane-type receptor for bile acids (M-BAR). , 2002, Biochemical and biophysical research communications.
[38] A. Jungwirth,et al. EAU guidelines on male infertility. , 2002, European urology.
[39] N. Skakkebaek,et al. Testicular dysgenesis syndrome: an increasingly common developmental disorder with environmental aspects , 2001, Human reproduction.
[40] M. Makishima,et al. Identification of a nuclear receptor for bile acids. , 1999, Science.
[41] F. Bengtsson,et al. Quantitative studies of testicular atrophy following portacaval shunt in rats , 1998, Hepatology.
[42] P. Balladur,et al. Effect of liver transplantation on sex-hormone disorders in male patients with alcohol-induced or post-viral hepatitis advanced liver disease. , 1994, Journal of hepatology.